J. H. Grabber, S. Quideau, J. Ralph, T. B. Lam, K. Iiyama et al., Implications for ?-ether cleavage by thioacidolysis An approach to the estimation of ferulic acid bridges in unfractioned cell walls of wheat internodes LigninÀferulate crosslinks in grasses: Active incorporation of ferulate polysaccharide esters into ryegrass lignins Roles of structural phenyl propanoids in forage cell wall digestion Cell wall lignification and degradability, Phytochemistry Phytochemistry Carbohydr. Res. J. Sci. Food Agric In Forage Cell Wall Structure and Digestibility, vol.43, issue.6456, pp.1189-1194, 1993.

J. M. Besle, M. Baucher, M. A. Bernard, B. Vailhe, J. M. Chabbert et al., Cell wall degradability of transgenic tobacco stems in relation to their chemical extraction and lignin quality Down-regulation of cinnamyl alcohol dehydrogenase in transgenic alfalfa (Medicago sativa L.) and the effect on lignin composition and digestibility, J. Agric. Food Chem. Plant Mol. Biol, vol.44, issue.398, pp.1164-1169, 1996.

J. P. Joseleau, Y. Barri-ere, C. Lapierre, L. Jouanin, V. Mechin et al., Down-regulation of the AtCCR1 gene in Arabidopsis thaliana: Effects on phenotype, lignins and cell wall degradability, Planta, vol.217, issue.9, pp.218-228, 2003.

B. Pollet and C. Lapierre, Relationship of cell wall composition to in vitro cell wall digestibility of maize inbred line stems, Impact of lignin composition on cell wall degradability in an Arabidopsis mutant, pp.574-580, 2000.

J. H. Grabber, R. D. Hatfield, J. Ralph, F. C. Lu, J. Ralph et al., Apoplastic pH and monolignol addition rate effects on lignin formation and cell wall degradability in maize Detection and determination of p-coumaroylated units in lignins Modified procedure to determine acid-insoluble lignin in wood and pulp The Determination of Lignin, 33À61. (15) Goering, H. K.; Van Soest, P. J. Forage Fiber Analysis: Apparatus, Reagents, Procedures, and some applications. USDA ARS Agricultural Handbook 379; U.S. Government Printing Office, pp.922-928, 1970.

R. Hatfield and A. Chaptman, -Coumaroylation of Lignin, Journal of Agricultural and Food Chemistry, vol.57, issue.10, pp.4243-4249, 2009.
DOI : 10.1021/jf900360z

URL : https://hal.archives-ouvertes.fr/insu-01468235

R. Hatfield, J. Marita, K. Frost, J. Grabber, J. Ralph et al., Grass lignin acylation: p-coumaroyl transferase activity and cell wall characteristics of C3 and C4 grasses, Planta, vol.46, issue.6, pp.1253-1267, 2009.
DOI : 10.1007/s00425-009-0900-z

R. Hatfield, J. Ralph, and J. Grabber, Cell wall cross-linking by ferulates and diferulates in grasses, Journal of the Science of Food and Agriculture, vol.275, issue.3, pp.403-407, 1999.
DOI : 10.1002/(SICI)1097-0010(19990301)79:3<403::AID-JSFA263>3.0.CO;2-0

H. Jung and M. Casler, Maize stem tissues: cell wall concentration and composition during development, Crop Science, vol.49, issue.6, pp.1793-1800, 2006.
DOI : 10.2135/cropsci2006.02.0086er

H. Jung and M. Casler, Maize Stem Tissues, Crop Science, vol.46, issue.4, pp.1801-1809, 2006.
DOI : 10.2135/cropsci2006.02-0086

H. Jung and D. Deetz, Cell Wall Lignification and Degradability. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.315-346, 1993.
DOI : 10.2134/1993.foragecellwall.c13

H. Jung and F. Engels, Alfalfa Stem Tissues, Crop Science, vol.42, issue.2, pp.524-534, 2002.
DOI : 10.2135/cropsci2002.0524

H. Jung, Maize stem tissues: ferulate deposition in developing internode cell walls, Phytochemistry, vol.63, issue.5, pp.543-549, 2003.
DOI : 10.1016/S0031-9422(03)00221-8

H. Jung and D. Buxton, Forage quality variation among maize inbreds: Relationships of cell-wall composition and in-vitro degradability for stem internodes, Journal of the Science of Food and Agriculture, vol.34, issue.3, pp.313-322, 1994.
DOI : 10.1002/jsfa.2740660308

H. Jung, W. Ni, C. Chapple, and K. Meyer, Impact of lignin composition on cell-wall degradability in anArabidopsis mutant, Journal of the Science of Food and Agriculture, vol.3, issue.6, pp.922-928, 1999.
DOI : 10.1002/(SICI)1097-0010(19990501)79:6<922::AID-JSFA307>3.0.CO;2-9

T. Lam, K. Iiyama, and B. Stone, Hot alkali-labile linkages in the walls of the forage grass Phalaris aquatica and Lolium perenne and their relation to in vitro wall digestibility, Phytochemistry, vol.64, issue.2, pp.603-607, 2003.
DOI : 10.1016/S0031-9422(03)00301-7

C. Lapierre, B. Monties, and R. C. , Preparative Thioacidolysis of Spruce Lignin: Isolation and Identification of Main Monomeric Products, Holzforschung, vol.40, issue.1, pp.47-50, 1986.
DOI : 10.1515/hfsg.1986.40.1.47

N. Lewis and E. Yamamoto, Lignin: Occurrence, Biogenesis and Biodegradation, Annual Review of Plant Physiology and Plant Molecular Biology, vol.41, issue.1, pp.455-496, 1990.
DOI : 10.1146/annurev.pp.41.060190.002323

F. Lu and R. J. , -Coumaroylated Units in Lignins, Journal of Agricultural and Food Chemistry, vol.47, issue.5, 1988.
DOI : 10.1021/jf981140j

URL : https://hal.archives-ouvertes.fr/hal-00908450

V. Mechin, O. Argillier, V. Menanteau, Y. Barriere, I. Mila et al., Relationship of cell wall composition toin vitro cell wall digestibility of maize inbred line stems, Journal of the Science of Food and Agriculture, vol.79, issue.5, pp.574-580, 2000.
DOI : 10.1002/(SICI)1097-0010(200004)80:5<574::AID-JSFA575>3.0.CO;2-R

V. Mechin, S. Baumberger, B. Pollet, and C. Lapierre, Peroxidase activity can dictate the in vitro lignin dehydrogenative polymer structure, Peroxidase activity can dictate the in vitro lignin dehydrogenative polymer structure, pp.571-579, 2007.
DOI : 10.1016/j.phytochem.2006.11.024

T. Morrison, H. Jung, D. Buxton, and R. Hatfield, Cell-Wall Composition of Maize Internodes of Varying Maturity, Crop Science, vol.38, issue.2, pp.455-460, 1998.
DOI : 10.2135/cropsci1998.0011183X003800020031x

T. Morrison, J. Kessler, and D. Burton, Maize Internode Elongation Patterns, Crop Science, vol.34, issue.4, pp.1055-1060, 1994.
DOI : 10.2135/cropsci1994.0011183X003400040040x

J. Pedersen, K. Vogel, and D. Funnell, Impact of Reduced Lignin on Plant Fitness, Crop Science, vol.45, issue.3, pp.812-819, 2005.
DOI : 10.2135/cropsci2004.0155

S. Quideau and R. J. , Lignin???ferulate cross-links in grasses. Part 4.1???3 Incorporation of 5???5-coupled dehydrodiferulate into synthetic lignin, Journal of the Chemical Society, Perkin Transactions 1, vol.1, issue.16, pp.2351-2358, 1997.
DOI : 10.1039/a701808h

J. Ralph, Hydroxycinnamates in lignification, Phytochemistry Reviews, vol.229, issue.5, pp.65-83, 2010.
DOI : 10.1007/s11101-009-9141-9

H. Jung, D. Samac, and G. Sarath, Modifying crops to increase cell wall digestibility, Plant Science, vol.185, issue.186, pp.65-77
DOI : 10.1016/j.plantsci.2011.10.014

D. Buxton and J. Russell, Lignin Constituents and Cell-Wall Digestibility of Grass and Legume Stems, Crop Science, vol.28, issue.3, pp.553-558, 1988.
DOI : 10.2135/cropsci1988.0011183X002800030026x

K. Vogel and H. Jung, Genetic Modification of Herbaceous Plants for Feed and Fuel, Critical Reviews in Plant Sciences, vol.20, issue.1, pp.15-49, 2001.
DOI : 10.1080/20013591099173

O. Argillier, Y. Barrière, M. Lila, F. Jeanneteau, K. Gelinet et al., Genotypic variation in phenolic components of cell-walls in relation to the digestibility of maize stalks, Agronomie, vol.16, issue.2
DOI : 10.1051/agro:19960206

URL : https://hal.archives-ouvertes.fr/hal-00885781

M. Casler and H. Jung, Relationships of fibre, lignin, and phenolics to in vitro fibre digestibility in three perennial grasses, Animal Feed Science and Technology, vol.125, issue.1-2, pp.151-161, 2006.
DOI : 10.1016/j.anifeedsci.2005.05.015

H. Jung, W. Ni, C. Chapple, and K. Meyer, Impact of lignin composition on cell-wall degradability in anArabidopsis mutant, Journal of the Science of Food and Agriculture, vol.3, issue.6, pp.922-928, 1999.
DOI : 10.1002/(SICI)1097-0010(19990501)79:6<922::AID-JSFA307>3.0.CO;2-9

J. Grabber, D. Mertens, H. Kim, C. Funk, F. Lu et al., Cell wall fermentation kinetics are impacted more by lignin content and ferulate cross-linking than by lignin composition, Journal of the Science of Food and Agriculture, vol.624, issue.1
DOI : 10.1002/jsfa.3418

M. Bernard-vailhé, A. Cornu, D. Robert, M. Maillot, and J. Besle, Cell Wall Degradability of Transgenic Tobacco Stems in Relation to Their Chemical Extraction and Lignin Quality, Journal of Agricultural and Food Chemistry, vol.44, issue.4, pp.1164-1169, 1996.
DOI : 10.1021/jf950481j

J. Botterman, Down-regulation of cinnamyl alcohol dehydrogenase in transgenic alfalfa 15

V. Méchin, O. Argillier, V. Menanteau, Y. Barrière, I. Mila et al., Relationship of cell wall composition to in vitro cell wall digestibility of maize inbred line stems

H. Jung and D. Buxton, Forage quality variation among maize inbreds: Relationships of cell-wall composition and in-vitro degradability for stem internodes, Journal of the Science of Food and Agriculture, vol.34, issue.3, pp.313-322, 1994.
DOI : 10.1002/jsfa.2740660308

J. Wilson and D. Mertens, Cell Wall Accessibility and Cell Structure Limitations to Microbial Digestion of Forage, Crop Science, vol.35, issue.1, pp.251-259, 1995.
DOI : 10.2135/cropsci1995.0011183X003500010046x

M. Chabannes, K. Ruel, A. Yoshinaga, B. Chabbert, A. Jauneau et al., In situ analysis of lignins in transgenic tobacco reveals a differential impact of individual transformations on the spatial patterns of lignin deposition at the cellular and subcellular levels, The Plant Journal, vol.9, issue.3, pp.271-282, 2001.
DOI : 10.1046/j.1365-313X.2001.01159.x

H. David, B. Chabbert, and S. Hawkins, Caffeoyl coenzyme A O-methyltransferase downregulation is associated with modifications in lignin and cell-wall architecture in flax secondary xylem, Plant Physiol. Biochem, vol.47, pp.9-19, 2009.

W. Vermerris, D. Sherman, and L. Mcintyre, Phenotypic plasticity in cell walls of maize brown midrib mutants is limited by lignin composition, Journal of Experimental Botany, vol.61, issue.9, pp.61-2479, 2010.
DOI : 10.1093/jxb/erq093

J. Wilson and R. Hatfield, Structural and chemical changes of cell wall types during stem development: consequences for fibre degradation by rumen microflora, Australian Journal of Agricultural Research, vol.48, issue.2, pp.165-180, 1997.
DOI : 10.1071/A96051

E. Boon, P. Struik, F. Engels, and J. Cone, Stem characteristics of two forage maize (Zea mays L.) cultivars varying in whole plant digestibility. IV. Changes during the growing season in anatomy and chemical composition in relation to fermentation characteristics of a lower internode, NJAS-Wagen J. Life Sc. 2012, pp.13-23
DOI : 10.1016/j.njas.2011.05.001

F. Engels and J. Schuurmans, Relationship between structural development of cell walls and degradation of tissues in maize stems, Journal of the Science of Food and Agriculture, vol.39, issue.1, pp.45-51, 1992.
DOI : 10.1002/jsfa.2740590107

J. Wilson, D. Mertens, and R. Hatfield, Isolates of cell types from sorghum stems: Digestion, cell wall and anatomical characteristics, Journal of the Science of Food and Agriculture, vol.39, issue.4, pp.407-417, 1993.
DOI : 10.1002/jsfa.2740630406

V. Méchin, O. Argillier, F. Rocher, Y. Hebert, I. Mila et al., In Search of a Maize Ideotype for Cell Wall Enzymatic Degradability Using Histological and Biochemical Lignin Characterization, Journal of Agricultural and Food Chemistry, vol.53, issue.15, pp.5872-5881, 2005.
DOI : 10.1021/jf050722f

H. Jung and M. Casler, Maize Stem Tissues, Crop Science, vol.46, issue.4, pp.1801-1809, 2006.
DOI : 10.2135/cropsci2006.02-0086

G. Sarath, B. Dien, A. Saathoff, K. Vogel, R. Mitchell et al., Ethanol yields and cell wall properties in divergently bred switchgrass genotypes, Bioresource Technology, vol.102, issue.20, pp.9579-9585, 2011.
DOI : 10.1016/j.biortech.2011.07.086

R. Roth, A. Boudet, and R. Pontlezica, Lignification and cinnamyl alcohol dehydrogenase activity in developing stems of tomato and poplar: a spatial and kinetic study through tissue 2, Journal of Experimental Botany, vol.48, issue.2, pp.247-254, 1997.
DOI : 10.1093/jxb/48.2.247

R. Zhong, A. Ripperger, and Z. Ye, Ectopic Deposition of Lignin in the Pith of Stems of Two Arabidopsis Mutants, Plant Physiology, vol.123, issue.1, pp.59-69, 2000.
DOI : 10.1104/pp.123.1.59

Y. Guo, U. Halfter, M. Ishitani, and J. Zhu, Molecular Characterization of Functional Domains in the Protein Kinase SOS2 That Is Required for Plant Salt Tolerance, THE PLANT CELL ONLINE, vol.13, issue.6, pp.1383-1399, 2001.
DOI : 10.1105/tpc.13.6.1383

R. Sibout, A. Eudes, G. Mouille, B. Pollet, C. Lapierre et al., CINNAMYL ALCOHOL DEHYDROGENASE-C and -D Are the Primary Genes Involved in Lignin Biosynthesis in the Floral Stem of Arabidopsis, THE PLANT CELL ONLINE, vol.17, issue.7, pp.2059-2076, 2005.
DOI : 10.1105/tpc.105.030767

L. Ding, D. Hofius, M. Hajirezaei, A. Fernie, F. Boernke et al., Functional analysis of the essential bifunctional tobacco enzyme 3-dehydroquinate dehydratase/shikimate dehydrogenase in transgenic tobacco plants, Journal of Experimental Botany, vol.58, issue.8, pp.2053-2067, 2007.
DOI : 10.1093/jxb/erm059

C. Bomal, F. Bedon, S. Caron, S. Mansfield, C. Levasseur et al., Involvement of Pinus taeda MYB1 and MYB8 in phenylpropanoid metabolism and secondary cell wall biogenesis: a comparative in planta analysis, Journal of Experimental Botany, vol.59, issue.14, pp.3925-3939, 2008.
DOI : 10.1093/jxb/ern234

B. Tamasloukht, Characterization of a cinnamoyl-CoA reductase 1 (CCR1) mutant in maize: effects on lignification, fibre development, and global gene expression, Journal of Experimental Botany, vol.62, issue.11, pp.3837-3848, 2011.
DOI : 10.1093/jxb/err077

URL : https://hal.archives-ouvertes.fr/hal-01004556

K. Zhang, M. Bhuiya, J. Pazo, Y. Miao, H. Kim et al., An Engineered Monolignol 4-O-Methyltransferase Depresses Lignin Biosynthesis and Confers Novel Metabolic Capability in Arabidopsis, The Plant Cell, vol.24, issue.7, pp.3135-3152, 2012.
DOI : 10.1105/tpc.112.101287

A. Chesson, G. Provan, W. Russell, L. Scobbie, B. Chabbert et al., Characterisation of Lignin from Parenchyma and Sclerenchyma Cell Walls of the Maize Internode, Journal of the Science of Food and Agriculture, vol.73, issue.1, pp.10-16, 1997.
DOI : 10.1002/(SICI)1097-0010(199701)73:1<10::AID-JSFA697>3.0.CO;2-E

J. Barros-rios, R. Santiago, R. Malvar, and J. Hg, Chemical composition and cell wall polysaccharide degradability of pith and rind tissues from mature maize internodes, Animal Feed Science and Technology, vol.172, issue.3-4
DOI : 10.1016/j.anifeedsci.2012.01.005

T. Asano, T. Masumura, H. Kusano, S. Kikuchi, A. Kurita et al., Construction of a specialized cDNA library from plant cells isolated by laser capture microdissection: toward comprehensive analysis of the genes expressed in the rice phloem, The Plant Journal, vol.202, issue.3
DOI : 10.1046/j.1365-313X.2002.01423.x

G. Angeles, J. Berrio-sierra, J. Joseleau, P. Lorimier, A. Lefebvre et al., Preparative laser capture microdissection and single-pot cell wall material preparation: a novel method for tissue-specific analysis, Planta, vol.16, issue.1, pp.228-232, 2006.
DOI : 10.1007/s00425-006-0285-1

URL : https://hal.archives-ouvertes.fr/inserm-00175851

J. Nakashima, F. Chen, L. Jackson, G. Shadle, and R. Dixon, ): effects on lignin composition in specific cell types, New Phytologist, vol.123, issue.3, pp.1675-1685, 2008.
DOI : 10.1111/j.1469-8137.2008.02502.x

J. Joseleau, Impact of CCR1 silencing on the assembly of lignified secondary walls in Arabidopsis thaliana, New Phytol, vol.184, pp.99-113, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00439985

R. Hatfield, J. Wilson, and D. Mertens, Composition of cell walls isolated from cell types of grain sorghum stems, Journal of the Science of Food and Agriculture, vol.45, issue.6, pp.891-899, 1999.
DOI : 10.1002/(SICI)1097-0010(19990501)79:6<891::AID-JSFA304>3.0.CO;2-#

B. Browning, Methods of Wood Chemistry. Vols. I and II, 1967.

D. Tolivia and J. Tolivia, Fasga: A new polychromatic method for simultaneous and differential staining of plant tissues, Journal of Microscopy, vol.91, issue.1, pp.113-117, 1987.
DOI : 10.1111/j.1365-2818.1987.tb02859.x

B. Nicolaï, Genotype effects on internal gas gradients in apple fruit, J. Exp. Bot, vol.61, pp.2745-2755, 2010.

D. Legland, F. Guillon, K. Kiêu, B. Bouchet, and M. Devaux, Stereological estimation of cell wall density of DR12 tomato mutant using three-dimensional confocal imaging, Annals of Botany, vol.105, issue.2
DOI : 10.1093/aob/mcp283

URL : https://hal.archives-ouvertes.fr/hal-01195433

D. Legland, M. Devaux, B. Bouchet, F. Guillon, and M. Lahaye, Cartography of cell morphology in tomato pericarp at the fruit scale, Journal of Microscopy, vol.98, issue.1, pp.78-93, 2012.
DOI : 10.1111/j.1365-2818.2012.03623.x

URL : https://hal.archives-ouvertes.fr/hal-01004169

C. Dence and S. Lin, 1992; Chapter The Determination of Lignin, Methods in Lignin Chemistry, pp.33-61

P. Soille, Morphological Image Analysis, 49) Johansen, D. Plant Micro Technique, 1940.

W. Wilcox, Preparation of decayed wood for microscopic examination; U.S. Forestry Service Research Note FPL-056, 1964.

M. Chen and J. Li, Brittle Culm1, which encodes a COBRA-like protein, affects the mechanical properties of rice plants, Plant Cell, vol.15, pp.2020-2031, 2003.

H. Jung and M. Casler, Maize stem tissues: cell wall concentration and composition during development, Crop Science, vol.49, issue.6, pp.1793-1800, 2006.
DOI : 10.2135/cropsci2006.02.0086er

K. Achyuthan, A. Achyuthan, P. Adams, S. Dirk, J. Harper et al., Supramolecular Self-Assembled Chaos: Polyphenolic Lignin???s Barrier to Cost-Effective Lignocellulosic Biofuels, Molecules, vol.15, issue.12, pp.8641-8688, 2010.
DOI : 10.3390/molecules15118641

D. Akin, Perspectives of Cell Wall Biodegradation?Session Synopsis. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.73-82, 1993.

O. Argillier and Y. Barriere, Taking feeding value into account for the registration of silage maize cultivars in official lists in Europe. Fourrages, pp.131-140, 1996.

O. Argillier, Y. Barriere, and Y. Hebert, Genetic variation and selection criterion for digestibility traits of forage maize, Euphytica, vol.33, issue.2, pp.175-184, 1995.
DOI : 10.1007/BF00027064

O. Argillier, Y. Barriere, M. Lila, F. Jeanneteau, K. Gelinet et al., Genotypic variation in phenolic components of cell-walls in relation to the digestibility of maize stalks, Agronomie, vol.16, issue.2, pp.123-130, 1996.
DOI : 10.1051/agro:19960206

URL : https://hal.archives-ouvertes.fr/hal-00885781

Y. Barriere and O. Argillier, Brown-midrib genes of maize: a review, Agronomie, vol.13, issue.10, pp.865-876, 1993.
DOI : 10.1051/agro:19931001

URL : https://hal.archives-ouvertes.fr/hal-00885517

Y. Barriere, A. Gallais, and H. Berthet, Utilisation du g??ne brown-midrib-3 pour l'am??lioration du ma??s fourrage. II. S??lection r??currente de populations, Agronomie, vol.8, issue.7, pp.625-631, 1988.
DOI : 10.1051/agro:19880707

Y. Barriere, C. Guillet, D. Goffner, and M. Pichon, Genetic variation and breeding strategies for improved cell wall digestibility in annual forage crops. A review, Animal Research, vol.52, issue.3, pp.193-228, 2003.
DOI : 10.1051/animres:2003018

URL : https://hal.archives-ouvertes.fr/hal-00889970

Y. Barriere, J. Ralph, V. Mechin, S. Guillaumie, J. Grabber et al., Genetic and molecular basis of grass cell wall biosynthesis and degradability. II. Lessons from brown-midrib mutants, Comptes Rendus Biologies, vol.327, issue.9-10, pp.847-860, 2004.
DOI : 10.1016/j.crvi.2004.05.010

Y. Barriere, R. Traineau, J. Emile, and Y. Hebert, Variation and covariation of silage maize digestibility estimated from digestion trials with sheep, Euphytica, vol.59, pp.61-72, 1991.

J. Barros-rios, R. Santiago, R. Malvar, and H. Jung, Chemical composition and cell wall polysaccharide degradability of pith and rind tissues from mature maize internodes, Animal Feed Science and Technology, vol.172, issue.3-4, pp.226-236, 2012.
DOI : 10.1016/j.anifeedsci.2012.01.005

T. Baskin, ANISOTROPIC EXPANSION OF THE PLANT CELL WALL, Annual Review of Cell and Developmental Biology, vol.21, issue.1, pp.203-222, 2005.
DOI : 10.1146/annurev.cellbio.20.082503.103053

M. Baucher, M. Bernard-vailhe, B. Chabbert, J. Besle, C. Opsomer et al., Down-regulation of cinnamyl alcohol dehydrogenase in transgenic alfalfa (Medicago sativa L.) and the effect on lignin composition and digestibility, Plant Molecular Biology, vol.39, issue.3, pp.437-447, 1999.
DOI : 10.1023/A:1006182925584

R. Baumont, J. Aufrère, and F. Meschy, La valeur alimentaire des fourrages : rôle des pratiques de culture, de récolte et de conservation. Fourrages, pp.153-173, 2009.

J. Beaugrand, D. Croner, P. Debeire, and B. Chabbert, Arabinoxylan and hydroxycinnamate content of wheat bran in relation to endoxylanase susceptibility, Journal of Cereal Science, vol.40, issue.3, pp.223-230, 2004.
DOI : 10.1016/j.jcs.2004.05.003

M. Bernard-vailhe, A. Cornu, D. Robert, M. Maillot, and J. Besle, Cell Wall Degradability of Transgenic Tobacco Stems in Relation to Their Chemical Extraction and Lignin Quality, Journal of Agricultural and Food Chemistry, vol.44, issue.4, pp.1164-1169, 1996.
DOI : 10.1021/jf950481j

S. Besombes and K. Mazeau, The cellulose/lignin assembly assessed by molecular modeling. Part 2: seeking for evidence of organization of lignin molecules at the interface with cellulose, Plant Physiology and Biochemistry, vol.43, issue.3, pp.277-286, 2005.
DOI : 10.1016/j.plaphy.2005.02.004

URL : https://hal.archives-ouvertes.fr/hal-00305962

N. Bonawitz and C. Chapple, The Genetics of Lignin Biosynthesis: Connecting Genotype to Phenotype, Annual Review of Genetics, vol.44, issue.1, pp.337-363, 2010.
DOI : 10.1146/annurev-genet-102209-163508

E. Boon, F. Engels, P. Struik, and J. Cone, Stem characteristics of two forage maize (Zea mays L.) cultivars varying in whole plant digestibility. II. Relation between in vitro rumen fermentation characteristics and anatomical and chemical features within a single internode, NJAS - Wageningen Journal of Life Sciences, vol.53, issue.1, pp.87-109, 2005.
DOI : 10.1016/S1573-5214(05)80012-0

E. Boon, P. Struik, F. Engels, and J. Cone, Stem characteristics of two forage maize (Zea mays L.) cultivars varying in whole plant digestibility. IV. Changes during the growing season in anatomy and chemical composition in relation to fermentation characteristics of a lower internode, NJAS - Wageningen Journal of Life Sciences, vol.59, issue.1-2, pp.13-23, 2012.
DOI : 10.1016/j.njas.2011.05.001

E. Boon, P. Struik, S. Tamminga, F. Engels, and J. Cone, Stem characteristics of two forage maize (Zea mays L.) cultivars varying in whole plant digestibility. III. Intra-stem variability in anatomy, chemical composition and in vitro rumen fermentation, NJAS - Wageningen Journal of Life Sciences, vol.56, issue.1-2, pp.101-122, 2008.
DOI : 10.1016/S1573-5214(08)80019-X

A. Boudet, A new view of lignification, Trends in Plant Science, vol.3, issue.2, pp.67-71, 1998.
DOI : 10.1016/S1360-1385(97)01176-X

A. Boudet, C. Lapierre, and J. Grimapettenati, Biochemistry and molecular biology of lignification, New Phytologist, vol.33, issue.2, pp.203-236, 1995.
DOI : 10.1105/tpc.6.10.1427

P. Bowes and P. Thomas, Ignition and extinction phenomena accompanying oxygen-dependent self-heating of porous bodies, Combustion and Flame, vol.10, issue.3, pp.221-230, 1966.
DOI : 10.1016/0010-2180(66)90078-2

C. Brett, Cellulose microfibrils in plants: Biosynthesis, deposition, and integration into the cell wall, International Review of Cytology -a Survey of Cell Biology, vol.199, pp.161-199, 2000.
DOI : 10.1016/S0074-7696(00)99004-1

C. Brett and K. Waldron, The molecular components of the wall In: Physiology and biochemistry of plant cell walls, pp.4-43, 1996.

R. Brown, The Biosynthesis of Cellulose, Journal of Macromolecular Science, Part A, vol.151, issue.10, pp.1345-1373, 1996.
DOI : 10.1080/10601329608014912

R. Brown, Cellulose structure and biosynthesis: What is in store for the 21st century?, Journal of Polymer Science Part A: Polymer Chemistry, vol.36, issue.3, pp.487-495, 2004.
DOI : 10.1002/pola.10877

B. Browning, Methods of Wood Chemistry. Vols. I and II, 1967.

M. Bunzel, J. Ralph, C. Funk, and H. Steinhart, Structural elucidation of new ferulic acid-containing phenolic dimers and trimers isolated from maize bran, Tetrahedron Letters, vol.46, issue.35, pp.5845-5850, 2005.
DOI : 10.1016/j.tetlet.2005.06.140

M. Bunzel, J. Ralph, J. Marita, R. Hatfield, and H. Steinhart, Diferulates as structural components in soluble and insoluble cereal dietary fibre, Journal of the Science of Food and Agriculture, vol.79, issue.7, pp.653-660, 2001.
DOI : 10.1002/jsfa.861

D. Buxton and J. Russell, Lignin Constituents and Cell-Wall Digestibility of Grass and Legume Stems, Crop Science, vol.28, issue.3, pp.553-558, 1988.
DOI : 10.2135/cropsci1988.0011183X002800030026x

M. Cabane, J. Pireaux, E. Leger, E. Weber, P. Dizengremel et al., Condensed Lignins Are Synthesized in Poplar Leaves Exposed to Ozone, PLANT PHYSIOLOGY, vol.134, issue.2, pp.586-594, 2004.
DOI : 10.1104/pp.103.031765

O. Canbolat, Comparison of in vitro Gas Production, Organic Matter Digestibility, Relative Feed Value and Metabolizable Energy Contents of Some Cereal Forages, pp.571-577, 2012.

N. Carpita and D. Gibeaut, Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growth, The Plant Journal, vol.99, issue.1, pp.1-30, 1993.
DOI : 10.1016/S0008-6215(00)90807-3

M. Casler, Agricultural Fitness of Smooth Bromegrass Populations Selected for Divergent Fiber Concentration, Crop Science, vol.45, issue.1, pp.36-43, 2005.
DOI : 10.2135/cropsci2005.0036

M. Casler, D. Buxton, and K. Vogel, Genetic modification of lignin concentration affects fitness of perennial herbaceous plants, TAG Theoretical and Applied Genetics, vol.104, issue.1, pp.127-131, 2002.
DOI : 10.1007/s001220200015

M. Casler, H. Jung, and W. Coblentz, Clonal Selection for Lignin and Etherified Ferulates in Three Perennial Grasses, Crop Science, vol.48, issue.2, pp.424-433, 2008.
DOI : 10.2135/cropsci2007.04.0229

M. Casler and H. Jung, Selection and Evaluation of Smooth Bromegrass Clones with Divergent Lignin or Etherified Ferulic Acid Concentration, Crop Science, vol.39, issue.6, pp.1866-1873, 1999.
DOI : 10.2135/cropsci1999.3961866x

M. Casler and H. Jung, Relationships of fibre, lignin, and phenolics to in vitro fibre digestibility in three perennial grasses, Animal Feed Science and Technology, vol.125, issue.1-2, pp.151-161, 2006.
DOI : 10.1016/j.anifeedsci.2005.05.015

B. Chabbert, M. Tollier, B. Monties, Y. Barriere, and O. Argillier, Biological variability in lignification of maize: Expression of the brown midrib bm2 mutation, Journal of the Science of Food and Agriculture, vol.6, issue.4, pp.455-460, 1994.
DOI : 10.1002/jsfa.2740640410

B. Chabbert, M. Tollier, B. Monties, Y. Barriere, and O. Argillier, Biological variability in lignification of maize: Expression of the brown midrib bm3 mutation in three maize cultivars, Journal of the Science of Food and Agriculture, vol.79, issue.3, pp.349-355, 1994.
DOI : 10.1002/jsfa.2740640317

F. Chen and R. Dixon, Lignin modification improves fermentable sugar yields for biofuel production, Nature Biotechnology, vol.68, issue.7, pp.759-761, 2007.
DOI : 10.1038/nbt1316

L. Chen, C. Auh, F. Chen, X. Cheng, H. Aljoe et al., Lignin Deposition and Associated Changes in Anatomy, Enzyme Activity, Gene Expression, and Ruminal Degradability in Stems of Tall Fescue at Different Developmental Stages, Journal of Agricultural and Food Chemistry, vol.50, issue.20, pp.5558-5565, 2002.
DOI : 10.1021/jf020516x

J. Cherney, D. Cherney, D. Akin, and J. Axtell, Potential of Brown-Midrib, Low-Lignin Mutants for Improving Forage Quality, Advances in Agronomy, vol.46, pp.157-198, 1991.
DOI : 10.1016/S0065-2113(08)60580-5

A. Chesson, Mechanistic Models of Forage Cell Wall Degradation. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.347-376, 1993.

A. Chesson, G. Provan, W. Russell, L. Scobbie, B. Chabbert et al., Characterisation of Lignin from Parenchyma and Sclerenchyma Cell Walls of the Maize Internode, Journal of the Science of Food and Agriculture, vol.73, issue.1, pp.10-16, 1997.
DOI : 10.1002/(SICI)1097-0010(199701)73:1<10::AID-JSFA697>3.0.CO;2-E

P. Chomet, Transposon tagging with Mutator The maize handbook, pp.243-249, 1994.

D. Cosgrove, Growth of the plant cell wall, Nature Reviews Molecular Cell Biology, vol.96, issue.11, pp.850-861, 2005.
DOI : 10.1007/s004250000303

T. Culhaoglu, D. Zheng, V. Mechin, and S. Baumberger, Adaptation of the Carrez procedure for the purification of ferulic and p-coumaric acids released from lignocellulosic biomass prior to LC/MS analysis, Journal of Chromatography B, vol.879, issue.28, pp.3017-3022, 2011.
DOI : 10.1016/j.jchromb.2011.08.039

URL : https://hal.archives-ouvertes.fr/hal-01001250

N. Demont-caulet, C. Lapierre, L. Jouanin, S. Baumberger, and V. Mechin, Arabidopsis peroxidase-catalyzed copolymerization of coniferyl and sinapyl alcohols: Kinetics of an endwise process, Phytochemistry, vol.71, issue.14-15, pp.1673-1683, 2010.
DOI : 10.1016/j.phytochem.2010.06.011

URL : https://hal.archives-ouvertes.fr/hal-01203889

C. Dence and S. Lin, The Determination of Lignin, Methods in Lignin Chemistry, pp.33-61, 1992.
DOI : 10.1007/978-3-642-74065-7_3

M. Devaux, B. Bouchet, D. Legland, F. Guillon, and M. Lahaye, Macro-vision and grey level granulometry for quantification of tomato pericarp structure, Postharvest Biology and Technology, vol.47, issue.2, pp.199-209, 2008.
DOI : 10.1016/j.postharvbio.2007.06.017

L. Donaldson, Lignification and lignin topochemistry ??? an ultrastructural view, Phytochemistry, vol.57, issue.6, pp.859-873, 2001.
DOI : 10.1016/S0031-9422(01)00049-8

L. Donaldson, Lignification and lignin topochemistry ??? an ultrastructural view, Phytochemistry, vol.57, issue.6, pp.859-873, 2001.
DOI : 10.1016/S0031-9422(01)00049-8

N. Ehlke and M. Casler, Anatomical Characteristics of Smooth Bromegrass Clones Selected for In Vitro Dry Matter Digestibility1, Crop Science, vol.25, issue.3, pp.513-517, 1985.
DOI : 10.2135/cropsci1985.0011183X002500030019x

K. Eriksson, R. Blanchette, and P. Ander, Microbial and enzymatic degradation of wood and wood components, 1990.
DOI : 10.1007/978-3-642-46687-8

A. Fontaine, S. Bout, Y. Barriere, and W. Vermerris, L.) Inbred Lines and Its Impact on Digestibility:?? Analysis of Neutral Detergent Fiber Composition by Pyrolysis-Gas Chromatography-Mass Spectrometry, Journal of Agricultural and Food Chemistry, vol.51, issue.27, pp.8080-8087, 2003.
DOI : 10.1021/jf034321g

URL : https://hal.archives-ouvertes.fr/hal-01331154

C. Ford and R. Hartley, GC/MS characterisation of cyclodimers fromp-coumaric and ferulic acids by photodimerisation???a possible factor influencing cell wall biodegradability, Journal of the Science of Food and Agriculture, vol.52, issue.3, pp.301-310, 1989.
DOI : 10.1002/jsfa.2740460307

S. Fornale, X. Shi, C. Chai, A. Encina, S. Irar et al., ZmMYB31 directly represses maize lignin genes and redirects the phenylpropanoid metabolic flux, The Plant Journal, vol.28, issue.4, pp.633-644, 2010.
DOI : 10.1111/j.1365-313X.2010.04363.x

H. Fukuda, Tracheary Element Formation as a Model System of Cell Differentiation, International Review of Cytology-a Survey of Cell Biology, vol.136, pp.289-332, 1992.
DOI : 10.1016/S0074-7696(08)62055-0

R. Fukushima and R. Hatfield, Comparison of the Acetyl Bromide Spectrophotometric Method with Other Analytical Lignin Methods for Determining Lignin Concentration in Forage Samples, Journal of Agricultural and Food Chemistry, vol.52, issue.12, pp.3713-3720, 2004.
DOI : 10.1021/jf035497l

N. Gierlinger and M. Schwanninger, The potential of Raman microscopy and Raman imaging in plant research, Spectroscopy, vol.21, issue.2, pp.69-89, 2007.
DOI : 10.1155/2007/498206

H. Goering, V. Soest, and P. , Forage fiber analyses (apparatus, reagents, procedures, and some applications) USDA ARS Agricultural Handbook no. 379 US Government Printing Office, 1970.

J. Gou, S. Park, X. Yu, L. Miller, and C. Liu, Compositional characterization and imaging of ???wall-bound??? acylesters of Populus trichocarpa reveal differential accumulation of acyl molecules in normal and reactive woods, Planta, vol.13, issue.1, pp.15-24, 2008.
DOI : 10.1007/s00425-008-0799-9

T. Goujon, V. Ferret, I. Mila, B. Pollet, K. Ruel et al., Down-regulation of the AtCCR1 gene in Arabidopsis thaliana: effects on phenotype, lignins and cell wall degradability, Planta, vol.217, pp.218-228, 2003.

J. Grabber, How Do Lignin Composition, Structure, and Cross-Linking Affect Degradability? A Review of Cell Wall Model Studies, Crop Science, vol.45, issue.3, pp.820-831, 2005.
DOI : 10.2135/cropsci2004.0191

J. Grabber, R. Hatfield, and R. J. , Diferulate cross-links impede the enzymatic degradation of non-lignified maize walls, Journal of the Science of Food and Agriculture, vol.77, issue.2, pp.193-200, 1998.
DOI : 10.1002/(SICI)1097-0010(199806)77:2<193::AID-JSFA25>3.0.CO;2-A

J. Grabber, R. Hatfield, and R. J. , Apoplastic pH and Monolignol Addition Rate Effects on Lignin Formation and Cell Wall Degradability in Maize, Journal of Agricultural and Food Chemistry, vol.51, issue.17, pp.4984-4989, 2003.
DOI : 10.1021/jf030027c

J. Grabber, G. Jung, S. Abrams, and D. Howard, Digestion Kinetics of Parenchyma and Sclerenchyma Cell Walls Isolated from Orchardgrass and Switchgrass, Crop Science, vol.32, issue.3, pp.806-810, 1992.
DOI : 10.2135/cropsci1992.0011183X003200030046x

J. Grabber and F. Lu, Copolymerization of sinapyl p-coumarate with sinapyl alcohol: impact on syringyl lignin formation and fermentability of maize cell walls, Biotechnology for Fuels Chemicals Symposium Proceedings, p.72, 2010.

J. Grabber, D. Mertens, H. Kim, C. Funk, F. Lu et al., Cell wall fermentation kinetics are impacted more by lignin content and ferulate cross-linking than by lignin composition, Journal of the Science of Food and Agriculture, vol.624, issue.1, pp.122-129, 2009.
DOI : 10.1002/jsfa.3418

J. Grabber, S. Quideau, and R. J. , p-coumaroylated syringyl units in maize lignin: Implications for ??-ether cleavage by thioacidolysis, Phytochemistry, vol.43, issue.6, pp.1189-1194, 1996.
DOI : 10.1016/S0031-9422(96)00431-1

J. Grabber, J. Ralph, and R. Hatfield, Ferulate Cross-Links Limit the Enzymatic Degradation of Synthetically Lignified Primary Walls of Maize, Journal of Agricultural and Food Chemistry, vol.46, issue.7, pp.2609-2614, 1998.
DOI : 10.1021/jf9800099

J. Grabber, J. Ralph, R. Hatfield, S. Quideau, T. Kuster et al., Dehydrogenation Polymer???Cell Wall Complexes as a Model for Lignified Grass Walls, Journal of Agricultural and Food Chemistry, vol.44, issue.6, pp.1453-1459, 1996.
DOI : 10.1021/jf9502717

J. Grabber, P. Schatz, H. Kim, F. Lu, and R. J. , Identifying new lignin bioengineering targets: 1. Monolignol-substitute impacts on lignin formation and cell wall fermentability, BMC Plant Biology, vol.10, issue.1, p.114, 2010.
DOI : 10.1186/1471-2229-10-114

J. Gressel, Y. Vered, S. Barlev, O. Milstein, and H. Flowers, Partial suppression of cellulase action by artificial lignification of cellulose, Plant Science Letters, vol.32, issue.3, pp.349-353, 1983.
DOI : 10.1016/0304-4211(83)90042-1

G. Guerriero, J. Fugelstad, and V. Bulone, What Do We Really Know about Cellulose Biosynthesis in Higher Plants?, Journal of Integrative Plant Biology, vol.87, issue.2, pp.161-175, 2010.
DOI : 10.1111/j.1744-7909.2010.00935.x

F. Guines, B. Julier, C. Ecalle, and C. Huyghe, Among and within-cultivar variability for histological traits of lucerne (Medicago sativa L.) stem, Euphytica, vol.130, issue.2, pp.293-301, 2003.
DOI : 10.1023/A:1022885320517

C. Haigler and R. Brown, Transport of rosettes from the golgi apparatus to the plasma membrane in isolated mesophyll cells ofZinnia elegans during differentiation to tracheary elements in suspension culture, Protoplasma, vol.23, issue.4, pp.111-120, 1986.
DOI : 10.1007/BF01275709

R. Hartley, p-Coumaric and ferulic acid components of cell walls of ryegrass and their relationships with lignin and digestibility, Journal of the Science of Food and Agriculture, vol.46, issue.11, pp.1347-1354, 1972.
DOI : 10.1002/jsfa.2740231110

R. Hatfield and R. Fukushima, Can Lignin Be Accurately Measured?, Crop Science, vol.45, issue.3, pp.832-839, 2005.
DOI : 10.2135/cropsci2004.0238

R. Hatfield and A. Chaptman, -Coumaroylation of Lignin, Journal of Agricultural and Food Chemistry, vol.57, issue.10, pp.4243-4249, 2009.
DOI : 10.1021/jf900360z

URL : https://hal.archives-ouvertes.fr/insu-01468235

R. Hatfield, H. Jung, J. Ralph, D. Buxton, and P. Weimer, A comparison of the insoluble residues produced by the Klason lignin and acid detergent lignin procedures, Journal of the Science of Food and Agriculture, vol.21, issue.1, pp.51-58, 1994.
DOI : 10.1002/jsfa.2740650109

R. Hatfield and J. Marita, Enzymatic processes involved in the incorporation of hydroxycinnamates into grass cell walls, Phytochemistry Reviews, vol.212, issue.1, pp.35-45, 2010.
DOI : 10.1007/s11101-010-9165-1

R. Hatfield, J. Marita, and K. Frost, -coumaroyl transferase, and cell wall changes during the development of corn stems, Journal of the Science of Food and Agriculture, vol.97, issue.14, pp.2529-2537, 2008.
DOI : 10.1002/jsfa.3376

URL : https://hal.archives-ouvertes.fr/insu-01468235

R. Hatfield, J. Marita, K. Frost, J. Grabber, J. Ralph et al., Grass lignin acylation: p-coumaroyl transferase activity and cell wall characteristics of C3 and C4 grasses, Planta, vol.46, issue.6, pp.1253-1267, 2009.
DOI : 10.1007/s00425-009-0900-z

S. Heiss-blanquet, D. Zheng, L. Ferreira, N. Lapierre, C. Baumberger et al., Effect of pretreatment and enzymatic hydrolysis of wheat straw on cell wall composition, hydrophobicity and cellulase adsorption, Bioresource Technology, vol.102, issue.10, pp.5938-5946, 2011.
DOI : 10.1016/j.biortech.2011.03.011

URL : https://hal.archives-ouvertes.fr/hal-01003276

T. Ishii, Isolation and characterization of a diferuloyl arabinoxylan hexasaccharide from bamboo shoot cell-walls, Carbohydrate Research, vol.219, pp.15-22, 1991.
DOI : 10.1016/0008-6215(91)89039-I

T. Ishii, Structure and functions of feruloylated polysaccharides, Plant Science, vol.127, issue.2, pp.111-127, 1997.
DOI : 10.1016/S0168-9452(97)00130-1

L. Jackson, G. Shadle, R. Zhou, J. Nakashima, F. Chen et al., Improving Saccharification Efficiency of Alfalfa Stems Through Modification of the Terminal Stages of Monolignol Biosynthesis, BioEnergy Research, vol.97, issue.132, pp.180-192, 2008.
DOI : 10.1007/s12155-008-9020-z

G. Jacquet, Structure et réactivité des lignines de graminées et des acides phénoliques associés: développement des méthodologies d'investigation. Sous la direction de Lapierre Catherine -Thèse de doctorat de l'université d'Aix-Marseille III, Thèse doctorat : Biochimie, pp.3-0061200, 1997.

G. Jacquet, B. Pollet, and C. Lapierre, New ether-linked ferulic acid-coniferyl alcohol dimers identified in grass straws., Journal of Agricultural and Food Chemistry, vol.43, issue.10, pp.2746-2751, 1995.
DOI : 10.1021/jf00058a037

L. Jouanin, S. Berthet, C. Lapierre, E. Guiderdoni, O. Bouchabke-coussa et al., Production of Plants with Reduced Lignin Content Modifying crops to increase cell wall digestibility, Plant Science, vol.185, pp.65-77, 2010.

H. Jung and M. Casler, Maize stem tissues: cell wall concentration and composition during development, Crop Science, vol.49, issue.6, pp.1793-1800, 2006.
DOI : 10.2135/cropsci2006.02.0086er

H. Jung and M. Casler, Maize Stem Tissues, Crop Science, vol.46, issue.4, pp.1801-1809, 2006.
DOI : 10.2135/cropsci2006.02-0086

H. Jung and D. Deetz, Cell Wall Lignification and Degradability. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.315-346, 1993.

H. Jung and F. Engels, Alfalfa Stem Tissues, Crop Science, vol.42, issue.2, pp.524-534, 2002.
DOI : 10.2135/cropsci2002.0524

H. Jung, D. Mertens, and A. Payne, Correlation of Acid Detergent Lignin and Klason Lignin with Digestibility of Forage Dry Matter and Neutral Detergent Fiber, Journal of Dairy Science, vol.80, issue.8, pp.1622-1628, 1997.
DOI : 10.3168/jds.S0022-0302(97)76093-4

H. Jung and R. Phillips, Putative Seedling Ferulate Ester () Maize Mutant: Morphology, Biomass Yield, and Stover Cell Wall Composition and Rumen Degradability, Crop Science, vol.50, issue.1, pp.403-418, 2010.
DOI : 10.2135/cropsci2009.04.0191

H. Jung and K. Vogel, Influence of Lignin on Digestibility of Forage Cell Wall Material, Journal of Animal Science, vol.62, issue.6, pp.1703-1712, 1986.
DOI : 10.2527/jas1986.6261703x

H. Jung, Maize stem tissues: ferulate deposition in developing internode cell walls, Phytochemistry, vol.63, issue.5, pp.543-549, 2003.
DOI : 10.1016/S0031-9422(03)00221-8

H. Jung and D. Buxton, Forage quality variation among maize inbreds: Relationships of cell-wall composition and in-vitro degradability for stem internodes, Journal of the Science of Food and Agriculture, vol.34, issue.3, pp.313-322, 1994.
DOI : 10.1002/jsfa.2740660308

H. Jung, M. Jorgensen, J. Linn, and F. Engels, Impact of accessibility and chemical composition on cell wall polysaccharide degradability of maize and lucerne stems, Journal of the Science of Food and Agriculture, vol.36, issue.3, pp.419-427, 2000.
DOI : 10.1002/1097-0010(200002)80:3<419::AID-JSFA544>3.0.CO;2-I

H. Jung, W. Ni, C. Chapple, and K. Meyer, Impact of lignin composition on cell-wall degradability in anArabidopsis mutant, Journal of the Science of Food and Agriculture, vol.3, issue.6, pp.922-928, 1999.
DOI : 10.1002/(SICI)1097-0010(19990501)79:6<922::AID-JSFA307>3.0.CO;2-9

H. Jung and S. Shalitajones, Variation in the extractability of esterified p-coumaric and ferulic acids from forage cell walls, Journal of Agricultural and Food Chemistry, vol.38, issue.2, pp.397-402, 1990.
DOI : 10.1021/jf00092a012

L. Jurasek, Experimenting with Virtual Lignins, pp.276-293, 1998.
DOI : 10.1021/bk-1998-0697.ch019

J. Ke, D. Laskar, D. Singh, and S. Chen, In situ lignocellulosic unlocking mechanism for carbohydrate hydrolysis in termites: crucial lignin modification, Biotechnology for Biofuels, vol.4, issue.1, p.17, 2011.
DOI : 10.1016/S0960-8524(00)00180-2

F. Kittur, M. Lalgondar, H. Yu, D. Bevan, and A. Esen, Maize beta-Glucosidase-aggregating Factor Is a Polyspecific Jacalin-related Chimeric Lectin, and Its Lectin Domain Is Responsible for beta-Glucosidase Aggregation, Journal of Biological Chemistry, vol.282, issue.10, pp.7299-7311, 2007.
DOI : 10.1074/jbc.M607417200

T. Kondo, K. Mizuno, and T. Kato, -COUMARIC AND FERULIC ACIDS IN ITALIAN RYEGRASS, Canadian Journal of Plant Science, vol.70, issue.2, pp.495-499, 1990.
DOI : 10.4141/cjps90-058

URL : https://hal.archives-ouvertes.fr/hal-01358004

T. Kondo, T. Watanabe, T. Ohshita, and T. Kyuma, Physico-chemical characteristics of soluble lignin fractions released from forage grasses by ruminant digestion, Japan Agric. Res. Quart, vol.32, pp.187-195, 1998.

U. Kutschera and K. Nikas, The epidermal-growth-control theory of stem elongation: An old and a new perspective, Journal of Plant Physiology, vol.164, issue.11, pp.1395-1409, 2007.
DOI : 10.1016/j.jplph.2007.08.002

T. Lam, K. Iiyama, and B. Stone, Hot alkali-labile linkages in the walls of the forage grass Phalaris aquatica and Lolium perenne and their relation to in vitro wall digestibility, Phytochemistry, vol.64, issue.2, pp.603-607, 2003.
DOI : 10.1016/S0031-9422(03)00301-7

T. Lam, K. Iiyama, and B. Stone, Cinnamic acid bridges between cell wall polymers in wheat and. Phalaris internodes, Phytochemistry, vol.31, pp.1179-1183, 1992.

C. Lapierre, B. Monties, and R. C. , Preparative Thioacidolysis of Spruce Lignin: Isolation and Identification of Main Monomeric Products, Holzforschung, vol.40, issue.1, pp.47-50, 1986.
DOI : 10.1515/hfsg.1986.40.1.47

C. Lapierre, G. Pilate, B. Pollet, I. Mila, J. Leple et al., Signatures of cinnamyl alcohol dehydrogenase deficiency in poplar lignins, Phytochemistry, vol.65, issue.3, pp.313-321, 2004.
DOI : 10.1016/j.phytochem.2003.11.007

C. Lapierre, B. Pollet, and R. C. , New insights into the molecular architecture of hardwood lignins by chemical degradative methods, Research on Chemical Intermediates, vol.6, issue.3-5, pp.397-412, 1995.
DOI : 10.1007/BF03052266

C. Lapierre, M. Tollier, and B. Monties, Occurrence of additional monomeric units in the lignins from internodes of a brown-midrib mutant of maize bm3, Comptes Rendus De L, 1988.

M. Li, Y. Fan, R. Sun, and F. Xu, Characterization of extracted lignin of bamboo (Neosinocalamus affinis) pretreated with sodium Hydroxide/urea solution at low temperature, Bioresources, vol.5, pp.1762-1778, 2010.

C. Lloyd and J. Chan, Plant cell biology: Microtubules and the shape of plants to come, Nature Reviews Molecular Cell Biology, vol.5, issue.1, pp.13-22, 2004.
DOI : 10.1038/nrm1277

F. Lu and R. J. , -Coumaroylated Units in Lignins, Journal of Agricultural and Food Chemistry, vol.47, issue.5, 1988.
DOI : 10.1021/jf981140j

URL : https://hal.archives-ouvertes.fr/hal-00908450

J. Macadam and J. Grabber, Relationship of growth cessation with the formation of diferulate cross-links and p -coumaroylated lignins in tall fescue leaf blades, Planta, vol.215, issue.5, pp.785-793, 2002.
DOI : 10.1007/s00425-002-0812-7

F. Marga, M. Grandbois, D. Cosgrove, and T. Baskin, Cell wall extension results in the coordinate separation of parallel microfibrils: evidence from scanning electron microscopy and atomic force microscopy, The Plant Journal, vol.127, issue.2, pp.181-190, 2005.
DOI : 10.1111/j.1365-313X.2005.02447.x

V. Mechin, Etude de facteurs biochimique et génétiques explicatifs de la variabilité pour la valeur alimentaire du maïs fourrage. Sous la direction de Yves Barriere -Thèse de doctorat de l'institut national agronomique parois-grignon, Thèse doctorat, p.205, 2000.

V. Mechin, O. Argillier, Y. Barriere, and V. Menanteau, Genetic variation in stems of normal and brown-midrib 3 maize inbred lines. Towards similarity for in vitro digestibility and cell wall composition, Maydica, vol.43, pp.205-210, 1998.

V. Mechin, O. Argillier, V. Menanteau, Y. Barriere, I. Mila et al., Relationship of cell wall composition toin vitro cell wall digestibility of maize inbred line stems, Journal of the Science of Food and Agriculture, vol.79, issue.5, pp.574-580, 2000.
DOI : 10.1002/(SICI)1097-0010(200004)80:5<574::AID-JSFA575>3.0.CO;2-R

V. Mechin, S. Baumberger, B. Pollet, and C. Lapierre, Peroxidase activity can dictate the in vitro lignin dehydrogenative polymer structure, Peroxidase activity can dictate the in vitro lignin dehydrogenative polymer structure, pp.571-579, 2007.
DOI : 10.1016/j.phytochem.2006.11.024

K. Meyer, A. Kohler, and H. Kauss, Biosynthesis of ferulic acid esters of plant cell wall polysaccharides in endomembranes from parsley cells, FEBS Letters, vol.191, issue.1-2, pp.209-212, 1991.
DOI : 10.1016/0014-5793(91)81261-6

D. Milioni, P. Sado, N. Stacey, C. Domingo, K. Roberts et al., Differential expression of cell-wall-related genes during the formation of tracheary elements in the Zinnia mesophyll cell system, Plant Molecular Biology, vol.47, pp.221-238, 2001.
DOI : 10.1007/978-94-010-0668-2_14

R. Mitchell, P. Dupree, and P. Shewry, A Novel Bioinformatics Approach Identifies Candidate Genes for the Synthesis and Feruloylation of Arabinoxylan, PLANT PHYSIOLOGY, vol.144, issue.1, pp.43-53, 2007.
DOI : 10.1104/pp.106.094995

J. Morot-gaudry, Lignines (les). in Comptes Rendus de l'Académie d, pp.67-84, 2010.

T. Morrison, H. Jung, D. Buxton, and R. Hatfield, Cell-Wall Composition of Maize Internodes of Varying Maturity, Crop Science, vol.38, issue.2, pp.455-460, 1998.
DOI : 10.2135/cropsci1998.0011183X003800020031x

T. Morrison, J. Kessler, R. Hatfield, and D. Buxton, Activity of two lignin biosynthesis enzymes during development of a maize internode, Journal of the Science of Food and Agriculture, vol.59, issue.2, pp.133-139, 1994.
DOI : 10.1002/jsfa.2740650202

W. Morrison, D. Akin, D. Himmelsbach, and G. Gamble, Investigation of the ester- and ether-linked phenolic constituents of cell wall types of normal and brown midrib pearl millet using chemical isolation, microspectrophotometry and13C NMR spectroscopy, Journal of the Science of Food and Agriculture, vol.3, issue.3, pp.329-337, 1993.
DOI : 10.1002/jsfa.2740630311

S. Mueller, R. Brown, and J. , Evidence for an intramembrane component associated with a cellulose microfibril-synthesizing complex in higher plants, The Journal of Cell Biology, vol.84, issue.2, pp.315-326, 1980.
DOI : 10.1083/jcb.84.2.315

K. Myton and S. Fry, Intraprotoplasmic feruloylation of arabinoxylans in Festuca arundinacea cell cultures, Planta, vol.193, issue.3, pp.326-330, 1994.
DOI : 10.1007/BF00201809

R. Nair, K. Bastress, M. Ruegger, J. Denault, and C. Chapple, The Arabidopsis thaliana REDUCED EPIDERMAL FLUORESCENCE1 Gene Encodes an Aldehyde Dehydrogenase Involved in Ferulic Acid and Sinapic Acid Biosynthesis, THE PLANT CELL ONLINE, vol.16, issue.2, pp.544-554, 2004.
DOI : 10.1105/tpc.017509

J. Nakashima, F. Chen, L. Jackson, G. Shadle, and R. Dixon, ): effects on lignin composition in specific cell types, New Phytologist, vol.123, issue.3, pp.738-750, 2008.
DOI : 10.1111/j.1469-8137.2008.02502.x

E. Novo-uzal, A. Taboada, A. Rivera, G. Flores, R. Barcelo et al., Relationship between hydroxycinnamic acid content, lignin composition and digestibility of maize silages in sheep, Archives of Animal Nutrition, vol.73, issue.2, pp.108-122, 2011.
DOI : 10.1016/S0074-7696(08)61609-5

N. Obel, A. Porchia, and H. Scheller, Intracellular feruloylation of arabinoxylan in wheat: evidence for feruloyl-glucose as precursor, Planta, vol.216, pp.620-629, 2003.

H. Onnerud, L. Zhang, G. Gellerstedt, and G. Henriksson, Polymerization of Monolignols by Redox Shuttle-Mediated Enzymatic Oxidation: A New Model in Lignin Biosynthesis I, THE PLANT CELL ONLINE, vol.14, issue.8, pp.1953-1962, 2002.
DOI : 10.1105/tpc.001487

P. Papineau, A. Sire, M. Devaux, and S. Bansard, Système de prise d'image macroscopique Journées de la mesure et de la métrologie, pp.6-9, 2008.

J. Pedersen, K. Vogel, and D. Funnell, Impact of Reduced Lignin on Plant Fitness, Crop Science, vol.45, issue.3, pp.812-819, 2005.
DOI : 10.2135/cropsci2004.0155

F. Piston, C. Uauy, L. Fu, J. Langston, J. Labavitch et al., Down-regulation of four putative arabinoxylan feruloyl transferase genes from family PF02458 reduces ester-linked ferulate content in rice cell walls, Planta, vol.17, issue.86, pp.677-691, 2010.
DOI : 10.1007/s00425-009-1077-1

J. Ralph, Hydroxycinnamates in lignification, Phytochemistry Reviews, vol.229, issue.5, pp.65-83, 2010.
DOI : 10.1007/s11101-009-9141-9

J. Ralph, M. Bunzel, M. J. Hatfield, R. Lu, F. Kim et al., Peroxidase-dependent cross-linking reactions of p-hydroxycinnamates in plant cell walls, Phytochemistry Reviews, vol.64, issue.4, pp.79-96, 2004.
DOI : 10.1023/B:PHYT.0000047811.13837.fb

J. Ralph, J. Grabber, and R. Hatfield, Lignin-ferulate cross-links in grasses: active incorporation of ferulate polysaccharide esters into ryegrass lignins, Carbohydrate Research, vol.275, issue.1, pp.167-178, 1995.
DOI : 10.1016/0008-6215(95)00237-N

J. Ralph, R. Hatfield, J. Piquemal, N. Yahiaoui, M. Pean et al., NMR characterization of altered lignins extracted from tobacco plants down-regulated for lignification enzymes cinnamyl-alcohol dehydrogenase and cinnamoyl-CoA reductase, Proceedings of the National Academy of Sciences of the United States of America, pp.12803-12808, 1998.

J. Ralph, R. Hatfield, S. Quideau, R. Helm, J. Grabber et al., Pathway of p-Coumaric Acid Incorporation into Maize Lignin As Revealed by NMR, Journal of the American Chemical Society, vol.116, issue.21, pp.9448-9456, 1994.
DOI : 10.1021/ja00100a006

J. Ralph and R. Helm, Lignin/Hydroxycinnamic Acid/Polysaccharide Complexes: Synthetic Models for Regiochemical Characterization. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.201-246, 1993.

J. Ralph, C. Lapierre, J. Marita, H. Kim, F. Lu et al., Elucidation of new structures in lignins of CAD- and COMT-deficient plants by NMR, Phytochemistry, vol.57, issue.6, pp.993-1003, 2001.
DOI : 10.1016/S0031-9422(01)00109-1

J. Ralph, S. Quideau, J. Grabber, and R. Hatfield, Identification and synthesis of new ferulic acid dehydrodimers present in grass cell walls, Journal of the Chemical Society, Perkin Transactions 1, vol.1, issue.23, pp.3485-3498, 1994.
DOI : 10.1039/p19940003485

M. Reddy, F. Chen, G. Shadle, L. Jackson, H. Aljoe et al., Targeted downregulation of cytochrome P450 enzymes for forage quality improvement in alfalfa (Medicago sativa L, Proceedings of the National Academy of Sciences of the United States of America, pp.16573-16578, 2005.

C. Riboulet, B. Lefevre, D. Denoue, and Y. Barriere, Genetic variation in maize cell wall for lignin content, lignin structure, p-hydroxycinnamic acid content, and digestibility in set of 19 lines at silage harvest maturity, Maydica, vol.53, pp.11-19, 2008.

T. Ronsin, Use of NIR predictor of digestibility in a breeding program for silage maize. 15th Congr of Maize and Sorghum Section of EUCARPIA, pp.277-288, 1990.

K. Ruel, J. Berrio-sierra, M. Derikvand, B. Pollet, J. Thevenin et al., Impact of CCR1 silencing on the assembly of lignified secondary walls in Arabidopsis thaliana, New Phytologist, vol.17, issue.1, pp.99-113, 2009.
DOI : 10.1111/j.1469-8137.2009.02951.x

URL : https://hal.archives-ouvertes.fr/hal-00439985

K. Ruel, J. Berrio-sierra, M. Derikvand, B. Pollet, J. Thevenin et al., Impact of CCR1 silencing on the assembly of lignified secondary walls in Arabidopsis thaliana, New Phytologist, vol.17, issue.1, pp.99-113, 2009.
DOI : 10.1111/j.1469-8137.2009.02951.x

URL : https://hal.archives-ouvertes.fr/hal-00439985

Y. Sakihama, J. Mano, S. Sano, K. Asada, and H. Yamasaki, Reduction of Phenoxyl Radicals Mediated by Monodehydroascorbate Reductase, Biochemical and Biophysical Research Communications, vol.279, issue.3, pp.949-954, 2000.
DOI : 10.1006/bbrc.2000.4053

M. Santos, G. Nader, P. Robinson, D. Kiran, U. Krishnamoorthy et al., Impact of simulated field drying on in vitro gas production and voluntary dry matter intake of rice straw, Animal Feed Science and Technology, vol.159, issue.3-4, pp.96-104, 2010.
DOI : 10.1016/j.anifeedsci.2010.05.012

R. Santos, T. Treasure, R. Gonzalez, R. Phillips, J. Lee et al., Impact of hardwood species on production cost of second generation ethanol, Bioresource Technology, vol.117, pp.193-200, 2012.
DOI : 10.1016/j.biortech.2012.04.083

G. Sarath, D. Akin, R. Mitchell, and K. Vogel, Cell-Wall Composition and Accessibility to Hydrolytic Enzymes is Differentially Altered in Divergently Bred Switchgrass (Panicum virgatum L.) Genotypes, Applied Biochemistry and Biotechnology, vol.46, issue.124, pp.1-14, 2008.
DOI : 10.1007/s12010-008-8168-5

G. Sarath, K. Vogel, R. Mitchell, and L. Baird, Stem anatomy of switchgrass plants developed by divergent breeding cycles for tiller digestibility, Proc, 2005.

P. Schatz, J. Ralph, F. Lu, I. Guzei, and M. Bunzel, Synthesis and identification of 2,5-bis-(4-hydroxy-3-methoxyphenyl)-tetrahydrofuran-3,4-dicarboxylic acid, an unanticipated ferulate 8???8-coupling product acylating cereal plant cell walls, Org. Biomol. Chem., vol.7, issue.14, pp.2801-2806, 2006.
DOI : 10.1016/j.phytochem.2006.04.018

H. Scheller and P. Ulvskov, Hemicelluloses, Annual Review of Plant Biology, vol.61, issue.1, pp.263-289, 2010.
DOI : 10.1146/annurev-arplant-042809-112315

F. Schubiger, J. Lehmann, R. Daccord, Y. Arrigo, B. Jeangros et al., Nutritive value of grassland plants. 5. Digestibility of the organic matter, pp.275-279, 2001.

L. Scobbie, W. Russell, G. Provan, and A. Chesson, The newly extended maize internode: A model for the study of secondary cell wall formation and consequences for digestibility, Journal of the Science of Food and Agriculture, vol.179, issue.2, pp.217-225, 1993.
DOI : 10.1002/jsfa.2740610213

V. Sewalt, W. Glasser, J. Fontenot, and V. Allen, Lignin Impact on Fibre Degradation: 1???Quinone Methide Intermediates Formedfrom Lignin DuringIn VitroFermentation ofCorn Stover*, Journal of the Science of Food and Agriculture, vol.71, issue.2, pp.195-203, 1996.
DOI : 10.1002/(SICI)1097-0010(199606)71:2<195::AID-JSFA568>3.0.CO;2-#

C. Shi, G. Koch, M. Ouzunova, G. Wenzel, I. Zein et al., Comparison of maize brown-midrib isogenic lines by cellular UV-microspectrophotometry and comparative transcript profiling, Plant Molecular Biology, vol.124, issue.4-5, pp.697-714, 2006.
DOI : 10.1007/s11103-006-9049-3

C. Somerville, Cellulose Synthesis in Higher Plants, Annual Review of Cell and Developmental Biology, vol.22, issue.1, pp.53-78, 2006.
DOI : 10.1146/annurev.cellbio.22.022206.160206

R. Sterjiades, J. Dean, G. Gamble, D. Himmelsbach, and K. Eriksson, Extracellular laccases and peroxidases from sycamore maple (Acer pseudoplatanus) cell-suspension cultures, Planta, vol.190, issue.1, 0190.
DOI : 10.1007/BF00195678

P. Struik, Digestibility of plant fractions from different genotypes and the predictability of quality of forage maize in northwest, Europe. Netherlands Journal of Agricultural Science, vol.33, pp.56-59, 1985.

P. Struik and O. Dolstra, Some remarks on session III on nutritive value of forage maize, Proceedings of the 15th Congress of the Maize and Sorghum Section of EUCARPIA, pp.333-336, 1991.

K. Syrjanen and G. Brunow, Regioselectivity in lignin biosynthesis. The influence of dimerization and cross-coupling, Journal of the Chemical Society, Perkin Transactions 1, vol.1, issue.2, pp.183-187, 2000.
DOI : 10.1039/a907919j

A. Taboada, E. Novo-uzal, G. Flores, M. Loureda, R. Barcelo et al., Digestibility of silages in relation to their hydroxycinnamic acid content and lignin composition, Journal of the Science of Food and Agriculture, vol.123, issue.7, pp.1155-1162, 2010.
DOI : 10.1002/jsfa.3933

U. Takahama, T. Oniki, and H. Shimokawa, A Possible Mechanism for the Oxidation of Sinapyl Alcohol by Peroxidase-Dependent Reactions in the Apoplast: Enhancement of the Oxidation by Hydroxycinnamic Acids and Components of the Apoplast, Plant and Cell Physiology, vol.37, issue.4, pp.499-504, 1996.
DOI : 10.1093/oxfordjournals.pcp.a028972

H. Tang, The brown midrib 2 (bm2) gene of maize encodes methylenetetrahydrofolate reductase.-A thesis ubmitted to the graduate faculty in partial fulfillment of the requirements for the degree of MASTER OF SCIENCE-Iowa State University, These master : UMI: 1512238, p.69, 2011.

N. Taylor, Cellulose biosynthesis and deposition in higher plants, New Phytologist, vol.177, issue.2, pp.239-252, 2008.
DOI : 10.1105/tpc.12.7.1137

N. Terashima, K. Fukushima, L. He, and K. Takabe, Comprehensive Model of the Lignified Plant Cell Wall. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.247-270, 1993.

F. Van-parijs, K. Morreel, J. Ralph, W. Boerjan, and R. Merks, Modeling Lignin Polymerization. I. Simulation Model of Dehydrogenation Polymers, PLANT PHYSIOLOGY, vol.153, issue.3, pp.1332-1344, 2010.
DOI : 10.1104/pp.110.154468

R. Vanholme, K. Morreel, C. Darrah, P. Oyarce, J. Grabber et al., Metabolic engineering of novel lignin in biomass crops, New Phytologist, vol.285, issue.86, pp.1469-8137, 2012.
DOI : 10.1111/j.1469-8137.2012.04337.x

W. Vermerris and J. Boon, L.), Journal of Agricultural and Food Chemistry, vol.49, issue.2, pp.721-728, 2001.
DOI : 10.1021/jf000740r

W. Vermerris, D. Sherman, and L. Mcintyre, Phenotypic plasticity in cell walls of maize brown midrib mutants is limited by lignin composition, Journal of Experimental Botany, vol.61, issue.9, pp.2479-2490, 2010.
DOI : 10.1093/jxb/erq093

H. Wang, U. Avci, J. Nakashima, M. Hahn, F. Chen et al., Mutation of WRKY transcription factors initiates pith secondary wall formation and increases stem biomass in dicotyledonous plants, Proceedings of the National Academy of Sciences, vol.107, issue.51, pp.22338-22343, 2010.
DOI : 10.1073/pnas.1016436107

H. Wang, Y. Xue, Y. Chen, R. Li, and J. Wei, Lignin modification improves the biofuel production potential in transgenic Populus tomentosa, Industrial Crops and Products, vol.37, issue.1, pp.170-177, 2012.
DOI : 10.1016/j.indcrop.2011.12.014

G. Wende and S. Fry, 2-O-??-d-xylopyranosyl-(5-O-feruloyl)-l-arabinose, a widespread component of grass cell walls, Phytochemistry, vol.44, issue.6, pp.1019-1030, 1997.
DOI : 10.1016/S0031-9422(96)00649-8

R. Whetten and R. Sederoff, Genetic engineering of wood, Forest Ecology and Management, vol.43, issue.3-4, pp.301-316, 1991.
DOI : 10.1016/0378-1127(91)90133-G

S. Wi, A. Singh, K. Lee, and Y. Kim, The Pattern of Distribution of Pectin, Peroxidase and Lignin in the Middle Lamella of Secondary Xylem Fibres in Alfalfa (Medicago sativa), Annals of Botany, vol.95, issue.5, 2005.
DOI : 10.1093/aob/mci092

R. Wightman and S. Turner, Trafficking of the Plant Cellulose Synthase Complex, PLANT PHYSIOLOGY, vol.153, issue.2, pp.427-432, 2010.
DOI : 10.1104/pp.110.154666

W. Willats, L. Mccartney, W. Mackie, and J. Knox, Pectin: cell biology and prospects for functional analysis, Plant Molecular Biology, vol.47, pp.9-27, 2001.
DOI : 10.1007/978-94-010-0668-2_2

J. Wilson, Organization of Forage Plant Tissues. Forage Cell Wall Structure and Digestibility acsesspublicati, pp.1-32, 1993.

J. Wilson and R. Hatfield, Structural and chemical changes of cell wall types during stem development: consequences for fibre degradation by rumen microflora, Australian Journal of Agricultural Research, vol.48, issue.2, pp.165-180, 1997.
DOI : 10.1071/A96051

J. Wilson and D. Mertens, Cell Wall Accessibility and Cell Structure Limitations to Microbial Digestion of Forage, Crop Science, vol.35, issue.1, pp.251-259, 1995.
DOI : 10.2135/cropsci1995.0011183X003500010046x

S. Withers, F. Lu, H. Kim, Y. Zhu, J. Ralph et al., Identification of Grass-specific Enzyme That Acylates Monolignols with p-Coumarate, Journal of Biological Chemistry, vol.287, issue.11, pp.8347-8355, 2012.
DOI : 10.1074/jbc.M111.284497

D. Wolf, J. Coors, K. Albrecht, D. Undersander, and P. Carter, Agronomic Evaluations of Maize Genotypes Selected for Extreme Fiber Concentrations, Crop Science, vol.33, issue.6, pp.1359-1365, 1993.
DOI : 10.2135/cropsci1993.0011183X003300060047x

L. Wong-quai and M. Nöel, Assemblage et dégradation des parois de maïs : de la plante entière à l'échelle cellulaire. Sous la diraction de Goffner Déborah et Pichon Magalie, Thèse de doctorat de Sciences écologiques, vétérinaires, agronomiques et bioingénieries (SEVAB Thèse doctorat : Biosciences végétales : Toulouse III, p.312, 2011.

T. Yoshida-shimokawa, S. Yoshida, K. Kakegawa, and T. Ishii, Enzymic feruloylation of arabinoxylan-trisaccharide by feruloyl-CoA:arabinoxylan-trisaccharide O -hydroxycinnamoyl transferase from Oryza sativa, Planta, vol.212, issue.3, pp.470-474, 2001.
DOI : 10.1007/s004250000490

A. Zhang, F. Lu, R. Sun, and R. J. , Ferulate???coniferyl alcohol cross-coupled products formed by radical coupling reactions, Planta, vol.399, issue.5, pp.1099-1108, 2009.
DOI : 10.1007/s00425-009-0894-6

Y. Zhang, T. Culhaoglu, B. Pollet, C. Melin, D. Denoue et al., Impact of Lignin Structure and Cell Wall Reticulation on Maize Cell Wall Degradability, Journal of Agricultural and Food Chemistry, vol.59, issue.18, pp.10129-10135, 2011.
DOI : 10.1021/jf2028279

URL : https://hal.archives-ouvertes.fr/hal-01000978