E. M. Lord, R. , and S. D. , The mechanisms of pollination and fertilization in plants, Annu. Rev. Cell Dev. Biol, vol.18, pp.81-105, 2002.

M. A. Johnson and E. M. Lord, Extracellular guidance cues and intracellular signaling pathways that direct pollen tube growth, The Pollen Tube: A cellular and molecular perspective, R. Malho, vol.3, pp.223-242, 2006.

J. C. Mollet, C. Faugeron, and H. Morvan, Cell adhesion, separation and guidance in compatible plant reproduction. In Plant Cell separation and adhesion, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00698519

&. Z. Roberts and . Gonzalez-carranza, Annu. Plant Rev, vol.25, pp.69-90

A. Geitmann, Mechanical modeling and structural analysis of the primary plant cell wall, Curr. Opin. Plant Biol, vol.13, pp.693-699, 2010.

H. V. Scheller and P. Ulvskov, Annu. Rev. Plant Biol, vol.61, pp.263-289, 2010.

. Hayashi and R. Kaida, Functions of xyloglucan in Plant cells, Mol. Plant, vol.4, pp.17-24, 2010.

F. Dardelle, A. Lehner, Y. Ramdani, M. Bardor, P. Lerouge et al., Biochemical and immunocytological characterizations of Arabidopsis pollen tube cell wall, Plant Physiol, vol.153, pp.1563-1576, 2010.
URL : https://hal.archives-ouvertes.fr/hal-01805112

W. S. York, V. S. Kumar-kolli, R. Orlando, P. Albersheim, and A. G. Darvill, The structures of arabinoxyloglucans produced by solanaceous plants, Carbohydr. Res, vol.285, pp.99-128, 1996.

I. M. Sims, S. L. Munro, G. Currie, D. Craik, and A. Bacic, Structural characterisation of xyloglucan secreted by suspension-cultured cells of Nicotiana plumbaginifolia, Carbohydr. Res, vol.293, pp.147-172, 1996.

Z. Jia, Q. Qin, A. G. Darvill, and W. S. York, Structure of the xyloglucan produced by suspension-cultured tomato cells, Carbohydr. Res, vol.338, pp.1197-1208, 2003.

M. Hoffman, Z. Jia, M. J. Pena, M. Cash, A. Harper et al.,

W. S. York, Structural analysis of xyloglucans in the primary cell walls of plants in the subclass Asteridae, Carbohydr. Res, vol.340, pp.1826-1840, 2005.

. Angiosperm-phylogeny-group, An update of the Angiosperm Phylogeny Group for the orders and families of flowering plants: APGII, Bot. J. Linn. Soc, vol.141, pp.399-436, 2003.

D. Bem, L. E. Vincentz, and M. G. , Evolution of xyloglucan-related genes in green plants, BMC Evol. Biol, vol.10, p.341, 2010.

Z. A. Popper and M. G. Tuohy, Beyond the green: understanding the evolutionary puzzle of plant and algal cell walls, Plant Physiol, vol.153, pp.373-383, 2010.

J. L. Brewbaker and B. H. Kwack, The essential role of calcium ion in pollen germination and pollen tube growth, Am. J. Bot, vol.50, pp.859-865, 1963.

S. E. Marcus, Y. Verhertbruggen, C. Herve, J. J. Ordaz-ortiz, V. Farkas et al., Pectic homogalacturonan masks abundant sets of xyloglucan epitopes in plant cell walls, BMC Plant Biol, vol.8, p.60, 2008.

J. Puhlmann, E. Bucheli, M. J. Swain, N. Dunning, P. Albersheim et al., Generation of monoclonal antibodies against plant cell wall polysaccharides. I. Characterization of a monoclonal antibody to a terminal ?-(1,2)linked fucosyl-containing epitope, Plant Physiol, vol.104, pp.699-710, 1994.

R. Balestrini, M. G. Hahn, A. Faccio, K. Mendgen, and P. Bonfante, , 1996.

, Differential localization of carbohydrate epitopes in plant cell walls in the presence and absence of arbuscular mycorrhizal fungi, Plant Physiol, vol.111, pp.203-213

O. Lerouxel, T. S. Choo, M. Séveno, B. Usadel, L. Faye et al., Rapid structural phenotyping of plant cell wall mutants by enzymatic oligosaccharide fingerprinting, Plant Physiol, vol.130, pp.1754-1763, 2002.

N. Obel, V. Erben, T. Schwarz, S. Kuhnel, A. Fodor et al., Microanalysis of plant cell wall polysaccharides, Mol. Plant, vol.2, pp.922-932, 2009.

S. C. Fry, W. S. York, P. Albersheim, A. Darvill, T. Hayashi et al.,

Y. Kato, L. E. Pérez, and G. A. Maclachlan, An unambiguous nomenclature for xyloglucan-derived oligosaccharides, Physiol. Plant, vol.89, pp.1-3, 1993.

Y. L. Bai and P. Lindhout, Domestication and breeding of tomatoes: what have we gained and what can we gain in the future?, Ann. Bot, vol.100, pp.1085-1094, 2007.

C. H. Orsi and S. D. Tanksley, Natural variation in an ABC transporter gene associated with seed size evolution in Tomato species, PLoS Genet, vol.5, p.1000347, 2009.

E. Zablackis, W. S. York, M. Pauly, S. Hantus, W. D. Reiter et al., Substitution of L-fucose by L-galactose in cell walls of Arabidopsis mur1, Science, vol.272, pp.1808-1810, 1996.

M. Pauly and H. V. Scheller, O-Acetylation of plant cell wall polysaccharides: identification and partial characterization of a rhamnogalacturonan O-acetyl-transferase from potato suspension-cultured cells, Planta, vol.210, pp.659-667, 2000.

C. H. Zou, Y. A. Knirel, J. H. Helbig, U. Zähringer, and C. S. Mintz, , 1999.

V. Anantharaman, A. , and L. , Novel eukaryotic enzymes modifying cellsurface biopolymers, Biol. Direct, vol.5, p.1, 2010.

O. Zaragoza, M. L. Rodrigues, M. De-jesus, S. Frases, E. Dadachova et al., The capsule of the fungal pathogen Cryptococcus neoformans, Adv. Appl, 2009.

. Microbiol, , vol.68, pp.133-216

G. Janbon, U. Himmelreich, F. Moyrand, L. Improvisi, and F. Dromer, Cas1p is a membrane protein necessary for the O-acetylation of the Cryptococcus neoformans capsular polysaccharide, Mol. Microbiol, vol.42, pp.453-469, 2001.

Y. Manabe, M. Nafisi, Y. Verhertbruggen, C. Orfila, S. Gille et al., , 2011.

, Loss-of-function mutation of REDUCED WALL ACETYLATION2 in Arabidopsis leads to reduced cell wall acetylation and increased resistance to Botrytis cinerea, Plant Physiol, vol.155, pp.1068-1078

S. Y. Park, G. Y. Jauh, J. C. Mollet, K. J. Eckard, E. A. Nothnagel et al.,

E. M. , A lipid transfer-like protein is necessary for lily pollen tube adhesion to an in vitro stylar matrix, Plant Cell, vol.12, pp.151-163, 2000.

A. M. Prado, R. Colaco, N. Moreno, A. C. Silva, and J. A. Feijo, Targeting of pollen tubes to ovules is dependent on nitric oxide (NO) signaling, Mol. Plant, vol.1, pp.703-714, 2008.

T. Dresselhaus and M. L. Marton, Micropylar pollen tube guidance and burst: adapted from defense mechanisms?, Curr. Opin. Plant Biol, vol.12, pp.773-780, 2009.

S. Okuda, H. Tsutsui, K. Shiina, S. Sprunck, H. Takeuchi et al., Defensin-like polypeptide LUREs are pollen tube attractants secreted from synergid cells, Nature, vol.458, pp.357-361, 2009.

S. A. Kessler, H. Shimosato-asano, N. F. Keinath, S. E. Wuest, G. Ingram et al.,

U. Grossniklaus, Conserved molecular components for pollen tube reception and fungal invasion, Science, vol.330, pp.968-971, 2010.

K. Chae and E. M. Lord, Pollen tube growth and guidance: roles of small, secreted proteins, Ann Bot, 2011.

L. Chevalier, S. Bernard, Y. Ramdani, R. Lamour, M. Bardor et al., Subcompartment localization of the side chain xyloglucan-synthesizing enzymes within Golgi stacks of tobacco suspension-cultured cells, Plant J, vol.64, pp.977-989, 2010.
URL : https://hal.archives-ouvertes.fr/hal-01848389

A. Muschitz, C. Faugeron, and H. Morvan, Response of cultured tomato cells subjected to excess zinc: role of cell wall in zinc compartmentation, Acta Physiol. Plant, vol.31, pp.1197-1204, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00697151

R. Errakhi, P. Meimoun, A. Lehner, V. Vidal, J. Briand et al., Anion channel activity is necessary to induce ethylene synthesis and programmed cell death in response to oxalic acid, J. Exp. Bot, vol.59, pp.3121-3129, 2008.
URL : https://hal.archives-ouvertes.fr/hal-01804881

A. J. Beattie, W. Barthlott, E. Elisabetsky, R. Farrel, and C. Kheng, Prance, I (2005) New Products and Industries from Biodiversity

R. Dans, R. Hassan, N. Scholes, and . Ash, , pp.271-295

J. D. Becker and . Feijó, How many genes are needed to make a pollen tube? Lessons from transcriptomics, Ann Bot, vol.100, pp.1117-1123, 2007.

T. Beghyn, R. Deprez-poulain, N. Willand, . Folleas, and . Deprez, Natural compounds: leads or ideas? Bioinspired molecules for drug discovery, Chem Biol Drug Des, vol.72, pp.3-15, 2008.

L. Bessueille and V. Bulone, A survey of cellulose biosynthesis in higher plants, Plant Biotechnol, vol.25, pp.315-322, 2008.

J. D. Bewley, F. D. Hempel, . Mccormick, and . Zambryski, P (2000) Reproductive development, Biochemistry and molecular biology of plants, pp.988-1043

H. E. Blackwell and Y. Zhao, Chemical genetic approaches to plant biology, Plant Physiol, vol.133, pp.448-455, 2003.

L. C. Boavida, J. Becker, and . Feijó, The making of gametes in higher plants, Int J Dev Biol, vol.49, pp.595-614, 2005.

L. C. Boavida and S. Mccormick, Temperature as a determinant factor for increased and reproducible in vitro pollen germination in Arabidopsis thaliana, Plant J, vol.52, pp.570-582, 2007.

C. P. Bonin, I. Potter, G. Vanzin, and W. Reiter, The MUR1 gene of Arabidopsis thaliana encodes an isoform of GDP-Dmannose-4,6-dehydratase, catalyzing the first step in the de novo synthesis of GDPL-fucose, Proc Natl Acad Sci, vol.94, pp.2085-2090, 1997.

M. Bosch and P. Hepler, Pectin methylesterases and pectin dynamics in pollen tubes, Plant Cell, vol.17, pp.3219-3226, 2005.

M. Bosch, A. Cheung, and P. Hepler, Pectin methylesterase, a regulator of pollen tube growth, Plant Physiol, vol.138, pp.1334-1346, 2005.

F. Bou-daher, Actin cytoskeleton regulates pollen tube growth and tropism. Mémoire de thèse, Canada, pp.1-229, 2011.

F. Bou-daher and A. Geitmann, Actin is involved in pollen tube tropism through redefining the spatial targeting of secretory vesicles, 2011.

S. Bouton, E. Leboeuf, G. Mouille, M. Leydecker, J. Talbotec et al., QUASIMODO1 encodes a putative membrane-bound glycosyltransferase required for normal pectin synthesis and cell adhesion in Arabidopsis, Plant Cell, vol.14, pp.2577-2590, 2002.
DOI : 10.1105/tpc.004259

URL : http://www.plantcell.org/content/14/10/2577.full.pdf

L. Bown, S. Kusaba, F. Goubet, L. Codrai, A. G. Dale et al., The ectopically parting cells 1-2 (epc1-2) mutant exhibits an exaggerated response to abscisic acid, J Exp Bot, vol.58, pp.1813-1823, 2007.
DOI : 10.1093/jxb/erm040

URL : https://academic.oup.com/jxb/article-pdf/58/7/1813/1388184/erm040.pdf

D. F. Bradley and M. Wolf, Aggregation of dyes bound to polyanions, Proc Natl Acad Sci U S A, vol.45, pp.944-952, 1959.
DOI : 10.1073/pnas.45.7.944

URL : http://www.pnas.org/content/45/7/944.full.pdf

C. Brett and K. Waldron, Physiology and biochemistry of plant cell walls, pp.1-259, 1996.

C. T. Brett, Cellulose microfibrils in plants: biosynthesis, deposition, and integration into the cell wall, Int Rev Cytol, vol.199, pp.161-199, 2000.
DOI : 10.1016/s0074-7696(00)99004-1

J. L. Brewbacker and B. Kwack, The essential role of calcium ion in pollen germination and pollen tube growth, Am J Bot, vol.50, pp.859-865, 1963.

R. M. Brown, Cellulose Structure and Biosynthesis-What's in Store for the 21st Century?, J Polym Sci Pol Chem, vol.42, pp.487-495, 2004.
DOI : 10.1002/pola.10877

C. Brownlee, Role of the extracellular matrix in cell-cell signalling: paracrine paradigms, Curr Opin Plant Biol, vol.5, pp.396-401, 2002.

D. A. Brummell, . Camirand, and G. Maclachlan, A (1990) Differential distribution of xyloglucan glycosyl transferases in pea Golgi dictyosomes and secretory vesicles, J Cell Sci, vol.96, pp.705-710

C. Cabrera, J. C. Boland, A. Messiaen, J. Cambier, and P. Van-cutsem, Egg box conformation of oligogalacturonides: The time-dependent stabilization of the elicitor-active conformation increases its biological activity, Glycobiol, vol.18, pp.473-482, 2008.

K. H. Caffall and D. Mohnen, The structure, function, and biosynthesis of plant cell wall pectic polysaccharides, Carbohydr Res, vol.344, pp.1879-1900, 2009.

G. Cai and M. Cresti, Organelle motility in the pollen tube: a tale of 20 years, J Exp Bot, vol.60, pp.495-508, 2009.

G. Cai, C. Faleri, D. Casino, C. Emons, A. M. Cresti et al., Distribution of callose synthase, cellulose synthase, and sucrose synthase in tobacco pollen tube is controlled in dissimilar ways by actin filaments and microtubules, Plant Physiol, vol.155, pp.1169-1190, 2011.

A. Camirand, . Brummell, and G. Maclachlan, Fucosylation of xyloglucan: localization of the transferase in dictyosomes of pea stem cells, Plant Physiol, vol.84, pp.753-756, 1987.

M. C. Cannon, K. Terneus, Q. Hall, L. Tan, Y. Wang et al., Self-assembly of the plant cell wall requires an extensin scaffold, Proc Natl Acad Sci U S A, vol.105, pp.2226-2231, 2008.
DOI : 10.1073/pnas.0711980105

URL : https://www.pnas.org/content/pnas/105/6/2226.full.pdf

B. L. Cantarel, P. M. Coutinho, C. Rancurel, T. Bernard, . Lombard et al., The Carbohydrate-Active EnZymes database (CAZy): an expert resource for Glycogenomics, Nucleic Acids Res, vol.37, pp.233-241, 2009.
DOI : 10.1093/nar/gkn663

URL : https://academic.oup.com/nar/article-pdf/37/suppl_1/D233/3229515/gkn663.pdf

C. Capodicasa, D. Vairo, O. Zabotina, L. Mccartney, C. Caprari et al., Targeted modification of homogalacturonan by transgenic expression of a fungal polygalacturonase alters plant growth, Plant Physiol, vol.135, pp.1294-1304, 2004.

N. C. 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, Plant J, vol.3, pp.1-30, 1993.

N. C. Carpita and M. Mccann, The cell wall, Biochemistry and molecular biology of plants, pp.52-108, 2000.

N. C. Carpita and M. Mccann, The functions of cell wall polysaccharides in composition and architecture revealed through mutations, Plant Soil, vol.247, pp.71-80, 2002.

D. M. Cavalier, O. Lerouxel, L. Neumetzler, K. Yamauchi, A. Reinecke et al., C (2001) Pollen and pistil in the progamic phase, Sex Plant Reprod, vol.14, pp.41-46

A. D. Deitch, . Law, and . White, R (1982) A stable propidium iodide staining procedure for flow cytometry, J Histochem Cytochem, vol.30, pp.967-972

F. Delmas, M. Séveno, J. G. Northey, M. Hernould, P. Lerouge et al., The synthesis of the rhamnogalacturonan II component 3deoxy-D-manno-2-octulosonic acid (Kdo) is required for pollen tube growth and elongation, J Exp Bot, vol.59, pp.2639-2647, 2008.

J. Derksen, B. Knuiman, K. Hoedemaekers, A. Guyon, . Bonhomme et al., Growth and cellular organization of Arabidopsis pollen tubes in vitro, Sex Plant Reprod, vol.15, pp.133-139, 2002.

M. F. Devaux, A. Barakat, P. Robert, B. Bouchet, F. Guillon et al., M (2005) Mechanical breakdown and cell wall structure of mealy tomato pericarp tissue, Postharvest Biol Tec, vol.37, pp.209-221

D. Sandro, A. , D. Duca, S. Verderio, E. Hargreaves et al., An extracellular transglutaminase is required for apple pollen tube growth, Biochem J, vol.429, pp.261-271, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00495492

X. Dong, Z. Hong, M. Sivaramakrishnan, . Mahfouz, and D. P. Verma, Callose synthase (CalS5) is required for exine formation during microgametogenesis and for pollen viability in Arabidopsis, Plant J, vol.42, pp.315-328, 2005.

G. Drakakaki, O. Zabotina, I. Delgado, S. Robert, and . Keegstra, , 2006.

S. Gille, U. Hänsel, . Ziemann, and M. Pauly, Identification of plant cell wall mutants by means of a forward chemical genetic approach using hydrolases, Proc Natl Acad Sci U S A, vol.106, pp.14699-14704, 2009.

T. Girke and . Cheng, N (2005) ChemMine. A compound mining database for chemical genomics, Plant Physiol, vol.138, pp.573-577

M. H. Goldman, R. Goldberg, and C. Mariani, Female sterile tobacco plants are produced by stigma-specific cell ablation, EMBO J, vol.13, pp.2976-2984, 1994.

F. Govers and G. Angenent, Plant science. Fertility goddesses as Trojan horses, Science, vol.330, pp.922-923, 2010.

N. A. Graham, M. D. Pope, T. Rimchala, B. Huang, and A. Asthagiri, A microtiter assay for quantifying proteinprotein interactions associated with cellcell adhesion, J Biomol Screen, vol.12, pp.683-693, 2007.

M. D. Grove, F. Gayland, G. F. Spencer, W. K. Rohwedder, W. K. Mandava et al., C (1979) Brassinolide, a plant growth-promoting steroid isolated from Brassica napus pollen, Nature, vol.281, pp.216-217

J. C. Guillemot, Congrès : Les enjeux du criblage en 2010, 2010.

F. Guillon, B. Bouchet, F. Jamme, P. Robert, B. Quéméner et al., The Pollen Tube, vol.3, pp.223-242

S. A. Johnson-brousseau and S. Mccormick, A compendium of methods useful for characterizing Arabidopsis pollen mutants and gametophytically-expressed genes, Plant J, vol.39, pp.761-775, 2004.

L. Jones, G. Seymour, and . Knox-;-d-galactan, Localization of Pectic Galactan in Tomato Cell Walls Using a Monoclonal Antibody Specific to, Plant Physiol, vol.113, issue.1, pp.1405-1412, 1997.

L. Jones, J. L. Milne, . Ashford, and S. Mcqueenmason, Cell wall arabinan is essential for guard cell function, Proc Natl Acad Sci U S A, vol.100, pp.11783-11788, 2003.

J. C. Kader, Lipid-transfer proteins: a puzzling family of plant proteins, Trends Plant Sci, vol.2, pp.1380-1385, 1997.

M. K. Kandasamy, J. B. Nasrallah, and M. E. Nasrallah, Pollen-pistil interactions and developmental regulation of pollen tube growth in Arabidopsis, Development, vol.120, pp.3405-3418, 1994.

F. Kaschani and . Van-der-hoorn, Small molecule approaches in plants, Curr Opin Chem Biol, vol.11, pp.88-98, 2007.

Y. Kato, H. Yamanouchi, K. Hinata, C. Ohsumi, and T. Hayashi, Involvement of Phenolic Esters in Cell Aggregation of Suspension-Cultured Rice Cells, Plant Physiol, vol.104, pp.147-152, 1994.

J. Kazius, . Mcguire, and R. Bursi, Derivation and validation of toxicophores for mutagenicity prediction, J Med Chem, vol.48, pp.312-320, 2005.

K. Keegstra, K. W. Talmadge, W. Bauer, and . Albersheim, P (1973) The structure of plant cell walls: iii. a model of the walls of suspension-cultured sycamore cells based on the interconnections of the macromolecular components, Plant Physiol, vol.51, pp.188-197

G. M. Keseru and G. Makara, Hit discovery and hit-to-lead approaches, Drug Discov Today, vol.11, pp.741-748, 2006.

S. M. Khersonsky, D. Jung, T. Kang, D. P. Walsh, H. Moon et al., Facilitated forward chemical genetics using a tagged triazine library and zebrafish embryo screening, J Am Chem Soc, vol.125, pp.11804-11805, 2003.

M. J. Kieliszewski and D. Lamport, Extensin: repetitive motifs, functional sites, post-translational codes, and phylogeny, Plant J, vol.5, pp.157-172, 1994.

M. J. Kieliszewski and . Shpak, Synthetic genes for the elucidation of glycosylation codes for arabinogalactan-proteins and other hydroxyproline-rich glycoproteins, Cell Mol Life Sci, vol.58, pp.1386-1398, 2001.

M. J. Kieliszewski, D. T. Lamport, . Tan, and M. Cannon, Hydroxyproline-rich glycoproteins: forms and function, Annu Plant Rev, vol.41, pp.321-336, 2011.

S. Kim, J. Mollet, J. Dong, K. Zhang, . Park et al., Chemocyanin, a small basic protein from the lily stigma, induces pollen tube chemotropism, Proc Natl Acad Sci U S A, vol.100, pp.16125-16130, 2003.
URL : https://hal.archives-ouvertes.fr/hal-02121573

J. P. Knox, Cell adhesion, cell separation and plant morphogenesis, Plant J, vol.2, p.141, 1992.

M. Kobayashi, . Matoh, and . Azuma, Two Chains of Rhamnogalacturonan II Are Cross-Linked by Borate-Diol Ester Bonds in Higher Plant Cell Walls, Plant Physiol, vol.110, pp.1017-1020, 1996.

M. Kobayashi, N. Kouzu, A. Inami, K. Toyooka, Y. Konishi et al., Characterization of Arabidopsis CTP:3deoxy-D-manno-2-octulosonate cytidylyltransferase (CMP-KDO synthetase), the enzyme that activates KDO during fingerprinting, Plant Physiol, vol.130, p.1754, 2011.

O. Lerouxel, D. M. Cavalier, A. Liepman, and K. Keegstra, Biosynthesis of plant cell wall polysaccharides-a complex process, Curr Opin Plant Biol, vol.9, pp.621-630, 2006.

S. Levy, W. S. York, R. Stuike-prill, . Meyer, and L. Staehelin, Simulations of the static and dynamic molecular conformations of xyloglucan. The role of the fucosylated sidechain in surfacespecific sidechain folding, Plant J, vol.1, pp.195-215, 1991.

S. Levy, . Maclachlan, and L. Staehelin, A (1997) Xyloglucan sidechains modulate binding to cellulose during in vitro binding assays as predicted by conformational dynamics simulations, Plant J, vol.11, pp.373-386

Q. Li, T. Cheng, . Wang, and S. Bryant, PubChem as a public resource for drug discovery, Drug Discov Today, vol.15, pp.1052-1057, 2010.

Y. Q. Li, F. Chen, H. Linskens, and . Cresti, M (1994) Distribution of unesterified and esterified pectins in cell walls of pollen tubes of flowering plants, Sex Plant Reprod, vol.7, pp.145-152

Y. Q. Li, C. Faleri, A. Geitmann, H. Zhang, and . Cresti, M (1995) Immunogold localization of arabinogalactan proteins, unesterified and esterified pectins in pollen grains and pollen tubes of Nicotiana tabacum (L), Protoplasma, vol.189, pp.26-36

A. H. Liepman, R. Wightman, N. Geshi, S. Turner, and H. Scheller, Arabidopsis-a powerful model system for plant cell wall research, Plant J, vol.61, pp.1107-1121, 2010.

X. Liu, L. Liu, Q. Niu, C. Xia, K. Yang et al., Male gametophyte defective 4 encodes a rhamnogalacturonan II xylosyltransferase and is important for growth of pollen tubes and roots in Arabidopsis, Plant J, vol.65, pp.647-660, 2011.

Z. T. Liu, X. Fan, J. Wua, L. Zhang, L. Song et al., A green route to prepare cellulose acetate particle from ramie fiber, React Funct Polym, vol.67, pp.104-112, 2007.

E. Lord, Adhesion and cell movement during pollination: cherchez la femme, Trends Plant Sci, vol.5, pp.368-373, 2000.

E. M. Lord, Adhesion molecules in lily pollination, Sex Plant Reprod, vol.14, pp.57-62, 2001.

E. M. Lord and S. Russell, The mechanisms of pollination and fertilization in plants, Annu Rev Cell Dev Biol, vol.18, pp.81-105, 2002.

E. M. Lord, Adhesion and guidance in compatible pollination, J Exp Bot, vol.54, pp.47-54, 2003.

A. Lovy-wheeler, K. N. Wilsen, T. Baskin, and P. Hepler, Enhanced fixation reveals the apical cortical fringe of actin filaments as a consistent feature of the pollen tube, Planta, vol.221, pp.95-104, 2005.

A. Lovy-wheeler, J. G. Kunkel, A. , E. G. Hussey, P. Hepler et al., Oscillatory increases in alkalinity anticipate growth and may regulate actin dynamics in pollen tubes of lily, Plant Cell, vol.18, pp.2182-2193, 2006.

D. T. Luu, . Heizmann, and . Dumas, C (1997) Pollen-Stigma Adhesion in Kale Is Not Dependent on the Self-(In)Compatibility Genotype, Plant Physiol, vol.115, pp.1221-1230

D. T. Luu, D. Marty-mazars, M. Trick, C. Dumas, and . Heizmann, P (1999) Pollen-stigma adhesion in Brassica spp involves SLG and SLR1 glycoproteins, Plant Cell, vol.11, pp.251-262

M. Madson, C. Dunand, X. Li, R. Verma, G. F. Vanzin et al., The MUR3 gene of, 2003.

A. M. Maldonado, P. Doerner, R. A. Dixon, C. Lamb, and R. Cameron, A putative lipid transfer protein involved in systemic resistance signalling in Arabidopsis, Nature, vol.419, pp.399-403, 2002.

R. Malho, The Pollen Tube: A Model Systemfor Cell andMolecular Biology Studies, The Pollen Tube, vol.3, pp.1-13, 2006.

Y. Manabe, M. Nafisi, Y. Verhertbruggen, C. Orfila, S. Gille et al., Lossof-function mutation of REDUCED WALL ACETYLATION2 in Arabidopsis leads to reduced cell wall acetylation and increased resistance to Botrytis cinerea, Plant Physiol, vol.155, pp.1068-1078, 2011.

S. E. Marcus, Y. Verhertbruggen, C. Hervé, J. J. Ordaz-ortiz, V. Farkas et al., Pectic homogalacturonan masks abundant sets of xyloglucan epitopes in plant cell walls, BMC Plant Biol, vol.8, p.60, 2008.

M. L. Márton, S. Cordts, . Broadhvest, and . Dresselhaus, Micropylar pollen tube guidance by egg apparatus 1 of maize, Science, vol.307, pp.573-576, 2005.

T. Matoh, M. Takasaki, . Takabe, and . Kobayashi, M (1998) Immunocyto-chemistry of Rhamnogalacturonan II in Cell Walls of Higher Plants, Plant Cell Physiol, vol.39, p.483

M. C. Mccann and N. Carpita, Designing the deconstruction of plant cell walls, Curr Opin Plant Biol, vol.11, pp.314-320, 2008.

M. C. Mccann and K. Roberts, , 1991.

W. Lloyd, The Cytoskeletal Basis of Plant Growth and Form, pp.109-129

L. Mccartney, A. P. Ormerod, M. Gidley, and J. Knox, Temporal and spatial regulation of pectic (1->4)-beta-Dgalactan in cell walls of developing pea cotyledons: implications for mechanical properties, Plant J, vol.22, pp.105-113, 2000.

P. Mccourt and . Desveaux, Plant chemical genetics, New Phytol, vol.185, pp.15-26, 2010.

C. Mcinnes, Virtual screening strategies in drug discovery, Curr Opin Chem Biol, vol.11, pp.494-502, 2007.

P. J. Meikle, I. Bonig, N. J. Hoogenraad, C. , A. Stone et al., A (1991)The location of (1?3)-beta-glucans in the walls of pollen tubes of Nicotiana alata using a (1?3)beta-glucan-specific monoclonal antibody, Planta, vol.185, pp.1-8

E. Nguema-ona, C. Andème-onzighi, S. Aboughe-angone, M. Bardor, T. Ishii et al., A (2006) The reb1-1 mutation of Arabidopsis. Effect on the structure and localization of galactosecontaining cell wall polysaccharides, Plant Physiol, vol.140, pp.1406-1417

E. Nguema-ona, A. Bannigan, L. Chevalier, T. Baskin, and . Driouich, A (2007) Disruption of arabinogalactan proteins disorganizes cortical microtubules in the root of Arabidopsis thaliana, Plant J, vol.52, pp.240-251

H. K. Ngugi and H. Scherm, Pollen mimicry during infection of blueberry flowers by conidia of Monilinia vacciniicorymbosi, Physiol Molecular Plant P, vol.64, pp.113-123, 2004.

J. Nieuwland, R. Feron, B. A. Huisman, A. Fasolino, C. W. Hilbers et al., C (2005) Lipid transfer proteins enhance cell wall extension in tobacco, Plant Cell, vol.17, pp.2009-2019

S. Nishikawa, G. M. Zinkl, R. J. Swanson, . Maruyama, and D. Preuss, Callose (beta-1,3 glucan) is essential for Arabidopsis pollen wall patterning, but not tube growth, BMC Plant Biol, vol.5, p.22, 2005.

M. T. Nishimura, M. Stein, B. Hou, J. P. Vogel, . Edwards et al., Loss of a callose synthase results in salicylic aciddependent disease resistance, Science, vol.301, pp.969-972, 2003.

N. Obel, V. Erben, T. Schwarz, S. Kühnel, . Fodor et al., Microanalysis of plant cell wall polysaccharides, Mol Plant, vol.2, pp.922-932, 2009.

S. Okuda, H. Tsutsui, K. Shiina, S. Sprunck, H. Takeuchi et al., Defensin-like polypeptide LUREs are pollen tube attractants secreted from synergid cells, Nature, vol.458, pp.357-361, 2009.

S. Okuda and . Higashiyama, Pollen tube guidance by attractant molecules: LUREs, Cell Struct Funct, vol.35, pp.45-52, 2010.

M. A. O'neill, D. Warrenfeltz, K. Kates, P. Pellerin, T. Doco et al., P, 1996.

R. Palanivelu and D. Preuss, Pollen tube targeting and axon guidance: parallels in tip growth mechanisms, Trends Cell Biol, vol.10, pp.517-524, 2000.

R. Palanivelu, L. Brass, A. Edlund, and . Preuss, D (2003) Pollen tube growth and guidance is regulated by POP2, an Arabidopsis gene that controls GABA levels, Cell, vol.114, pp.47-59

R. Palanivelu and D. Preuss, Distinct short-range ovule signals attract or repel Arabidopsis thaliana pollen tubes in vitro, BMC Plant Biol, vol.6, p.7, 2006.

S. Y. Park, G. Y. Jauh, J. C. Mollet, K. J. Eckard, E. A. Nothnagel et al., A lipid transfer-like protein is necessary for lily pollen tube adhesion to an in vitro stylar matrix, Plant Cell, vol.12, pp.151-164, 2000.
URL : https://hal.archives-ouvertes.fr/hal-02121636

S. Park and E. Lord, Expression studies of SCA in lily and confirmation of its role in pollen tube adhesion, Plant Mol Biol, vol.51, pp.183-189, 2003.

E. Parre and A. Geitmann, More than a leak sealant. The mechanical properties of callose in pollen tubes, Plant Physiol, vol.137, pp.274-286, 2005.

E. Parre and . Geitmann, A (2005b) Pectin and the role of the physical properties of the cell wall in pollen tube growth of Solanum chacoense, Planta, vol.220, pp.582-592

M. Pauly and H. Scheller, O-Acetylation of plant cell wall polysaccharides: identification and partial characterization of a rhamnogalacturonane O-acetyltransferase from potato suspensioncultured cells, Planta, vol.210, pp.659-667, 2000.

M. Pauly, Q. Qin, H. Greene, P. Albersheim, . Darvill et al., Changes in the structure of xyloglucan during cell elongation, Planta, vol.212, pp.842-850, 2001.

J. Pelloux, . Rustérucci, and E. Mellerowicz, New insights into pectin methylesterase structure and function, Trends Plant Sci, vol.12, pp.267-277, 2007.

M. J. Peña and N. Carpita, Loss of highly branched arabinans and debranching of rhamnogalacturonan I accompany loss of firm texture and cell separation during prolonged storage of apple, Plant Physiol, vol.135, pp.1305-1313, 2004.

M. J. Peña, P. Ryden, M. Madson, A. Smith, and N. Carpita, The galactose residues of xyloglucan are essential to maintain mechanical strength of the primary cell walls in Arabidopsis during growth, Plant Physiol, vol.134, pp.443-451, 2004.

L. G. Pereira, S. Coimbra, H. Oliveira, . Monteiro, and . Sottomayor, Expression of arabinogalactan protein genes in pollen tubes of Arabidopsis thaliana, Planta, vol.223, pp.374-380, 2006.

R. M. Perrin, Z. Jia, T. A. Wagner, M. A. Neill, R. Sarria et al.,

K. , Analysis of xyloglucan fucosylation in Arabidopsis, Plant Physiol, vol.132, pp.768-778, 2003.

P. Piffanelli, J. H. Ross, and D. Murphy, Biogenesis and function of the lipidic structures of pollen grains, Sex Plant Reprod, vol.11, pp.65-80, 1998.

Z. A. Popper and S. Fry, Widespread occurrence of a covalent linkage between xyloglucan and acidic polysaccharides in suspension-cultured angiosperm cells, Ann Bot, vol.96, pp.91-99, 2005.

Z. A. Popper and S. Fry, Xyloglucanpectin linkages are formed intraprotoplasmically, contribute to wallassembly, and remain stable in the cell wall, Planta, vol.227, pp.781-794, 2008.

A. M. Prado, D. Porterfield, and . Feijó, Nitric oxide is involved in growth regulation and re-orientation of pollen tubes, Development, vol.131, pp.2707-2714, 2004.

J. Puhlmann, E. Bucheli, M. J. Swain, N. Dunning, P. Albersheim et al., Generation of monoclonal antibodies against plant cellwall polysaccharides. I. Characterization of a monoclonal antibody to a terminal alpha-(1->2)-linked fucosyl-containing epitope, Plant Physiol, vol.104, pp.699-710, 1994.

Y. Q-qin, A. R. Leydon, A. Manziello, R. Pandey, D. Mount et al., R (2009) Penetration of the stigma and style elicits a novel transcriptome in pollen tubes, pointing to genes critical for growth in a pistil, PLoS Genet, vol.5, p.1000621

Y. Qin, R. J. Wysocki, A. Somogyi, Y. Feinstein, J. Y. Franco et al., Sulfinylated Azadecalins act as functional mimics of a pollen germination stimulant in Arabidopsis pistils, Plant J Sous presse, 2011.

A. C. Quiapim, M. S. Brito, L. A. Bernardes, I. Dasilva, I. Malavazi et al., , 2009.

A. L. Rae, P. J. Harris, . Bacic, and A. Clarke, Composition of the cell walls of Nicotiana Mata Link et Otto pollen tubes, Planta, vol.166, pp.128-133, 1985.

N. Raikhel and M. Pirrung, Adding precision tools to the plant biologists' toolbox with chemical genomics, Plant Physiol, vol.138, pp.563-564, 2005.

S. Rault, Congrès : Les enjeux du criblage en 2010, 2010.

C. Rautengarten, B. Ebert, T. Herter, C. J. Petzold, T. Ishii et al., The interconversion of UDP-arabinopyranose and UDParabinofuranose is indispensable for plant development in Arabidopsis, Plant Cell, vol.23, pp.1373-1390, 2011.

S. Ravindran, S. Kim, R. Martin, E. M. Lord, and . Ozkan, Quantum dots as bio-labels for the localization of a small plant adhesion protein, Nanotechnology, vol.16, pp.1-4, 2005.

P. M. Ray, P. Green, and . Cleland, R (1972) Role of turgor in plant-cell growth, Nature, vol.239, pp.163-164

S. Y. Rhee, E. Osborne, P. Poindexter, and . Somerville, C.R, 2003.

B. L. Ridley, M. O'neill, and D. Mohnen, Pectins: structure, biosynthesis, and oligogalacturonide-related signaling, Phytochemistry, vol.57, pp.929-967, 2001.

J. A. Roberts and . Hooley, R (1988) Plant growth regulators, Plant growth regulators, pp.1-200

K. Roberts, How the cell wall acquired a cellular context, Plant Physiol, vol.125, pp.127-130, 2001.

E. P. Roquemore, S. Murphy, S. J. Capper, S. M. Hancock, E. Adie et al., Is Z' factor the best assessment for the quality of cellular assays of delivering higher content ? Congrès : High-content analysis, pp.29-30, 2003.

G. R. Rosania, J. W. Lee, L. Ding, H. Yoon, and Y. Chang, Combinatorial approach to organelle-targeted fluorescent library based on the styryl scaffold, J Am Chem Soc, vol.125, pp.1130-1131, 2003.

C. M. Rounds, E. Lubeck, P. Hepler, and L. Winship, Propidium iodide competes with Ca2+ to label pectin in pollen tubes and Arabidopsis root hairs, Plant Physiol, vol.157, pp.175-187, 2011.

S. Roy, K. J. Eckard, S. Lancelle, P. Hepler, and E. Lord, High-pressure freezing improves the ultrastructural preservation of in vivo grown lily pollen tubes, Protoplasma, vol.200, pp.87-98, 1997.

A. L. Rubinstein, R. T. Prata, and P. Bedinger, A (1995a) Developmental accumulation of hydroxyproline and hydroxyprolinecontaining proteins in Zea mays pollen, Sex Plant Reprod, vol.8, pp.27-32

A. L. Rubinstein, A. H. Broadwater, K. Lowrey, and P. Bedinger, A (1995b) Pex1, a pollenspecific gene with an extensin-like domain, Proc Natl Acad Sci U S A, vol.92, pp.3086-3090

A. L. Rubinstein, J. Marquez, . Suarez-cervera, and P. Bedinger, Extensin-like Glycoproteins in the Maize Pollen Tube Wall, Plant Cell, vol.7, pp.2211-2225, 1995.

A. L. Samuels, T. H. Giddings, and L. Staehelin, Cytokinesis in tobacco BY-2 and root tip cells: a new model of cell plate formation in higher plants, J Cell Biol, vol.130, pp.1345-1357, 1995.

L. C. Sanders and E. Lord, Directed movement of latex particles in the gynoecia of three species of flowering plants, Science, vol.243, pp.1606-1608, 1989.

H. S. Sardar, . Yang, and A. Showalter, Molecular interactions of arabinogalactan proteins with cortical microtubules and Factin in Bright Yellow-2 tobacco cultured cells, Plant Physiol, vol.142, pp.1469-1479, 2006.

H. V. Scheller, J. L. Jensen, S. O. Sørensen, . Harholt, and . Geshi, Biosynthesis of pectin, Physiol Plant, vol.129, pp.283-295, 2007.

H. V. Scheller and P. Ulvskov, , 2010.

. Hemicelluloses, Annu Rev Plant Biol, vol.61, pp.263-289

H. Schlupmann, . Bacic, and S. Read, Uridine Diphosphate Glucose Metabolism and Callose Synthesis in Cultured Pollen Tubes of Nicotiana alata Link et Otto, Plant Physiol, vol.105, pp.659-670, 1994.

H. A. Schols, E. Vierhuis, E. Bakx, and A. Voragen, Different populations of pectic hairy regions occur in apple cell walls, Carbohydr Res, vol.275, pp.343-360, 1995.

C. R. Schopfer, M. Nasrallah, and J. Nasrallah, The male determinant of selfincompatibility in Brassica, Science, vol.286, pp.1697-1700, 1999.

S. L. Schreiber, Chemical Genetics Resulting from a Passion for Synthetic Organic Chemistry, Bioorgan Med Chem, vol.6, pp.1127-1152, 1998.

C. Schultz, P. Gilson, D. Oxley, . Youl, and . Bacic, A (1998) GPI-anchors on arabinogalactanproteins: implications for signalling in plants, Trends Plant Sci, vol.3, pp.426-431

C. J. Schultz, M. P. Rumsewicz, J. , K. L. Jones, B. J. Gaspar et al., Using genomic resources to guide research directions. The arabinogalactan protein gene family as a test case, Plant Physiol, vol.129, pp.1448-1463, 2002.

G. J. Seifert and K. Roberts, The biology of arabinogalactan proteins, Annu Rev Plant Biol, vol.58, pp.137-161, 2007.

S. Sherman-broyles, N. Boggs, A. Farkas, P. Liu, J. Vrebalov et al., ) S locus genes and the evolution of self-fertility in Arabidopsis thaliana, Plant Cell, vol.19, pp.94-106, 2007.

D. E. Shevell, . Kunkel, and N. Chua, Cell wall alterations in the Arabidopsis emb30 mutant, Plant Cell, vol.12, pp.2047-2060, 2000.

H. Shi, Y. Kim, Y. Guo, . Stevenson, and . Zhu, The Arabidopsis SOS5 locus encodes a putative cell surface adhesion protein and is required for normal cell expansion, Plant Cell, vol.15, pp.19-32, 2003.

N. Shibuya and E. Minami, Oligosaccharide signalling for defence responses in plant, Physiol Mol Plant Pathol, vol.59, pp.223-233, 2001.

M. A. Shogren-knaak, P. Alaimo, and K. Shokat, Recent advances in chemical approaches to the study of biological systems, Annu Rev Cell Dev Biol, vol.17, pp.405-438, 2001.

A. M. Showalter, Structure and function of plant cell wall proteins, Plant Cell, vol.5, pp.9-23, 1993.

A. Silipo, G. Erbs, T. Shinya, J. M. Dow, M. Parrilli et al., A (2010) Glycoconjugates as elicitors or suppressors of plant innate immunity, Glycobiology, vol.20, pp.406-419

R. E. Sims, W. Mabee, J. Saddler, and M. Taylor, An overview of second generation biofuel technologies, Bioresour Technol, vol.101, pp.1570-1580, 2010.

S. K. Singh, C. Eland, J. Harholt, H. Scheller, and . Marchant, Cell adhesion in Arabidopsis thaliana is mediated by ECTOPICALLY PARTING CELLS 1-a glycosyltransferase (GT64) related to the animal exostosins, Plant J, vol.43, pp.384-397, 2005.

M. Sivaguru, T. Fujiwara, J. Samaj, F. Baluska, Z. Yang et al., Aluminum-induced 1->3-beta-D-glucan inhibits cell-to-cell trafficking of molecules through plasmodesmata. A new mechanism of aluminum toxicity in plants, Plant Physiol, vol.124, pp.991-1006, 2000.

M. Smallwood, . Martin, and J. Knox, An epitope of rice threonine-and hydroxyproline-rich glycoprotein is common to cell wall and hydrophobic plasma-membrane glycoproteins, Planta, vol.196, pp.510-522, 1995.

M. M. Smith and M. E. Mccully, Enhancing aniline blue fluorescent staining of cell wall structures, Stain Technol, vol.53, pp.79-85, 1978.

K. D. Smith, M. Davies, and E. Hounsell, Structural profiling of oligosaccharides of glycoproteins, Met Mol Biol, pp.32-143, 1994.

C. Somerville, Cellulose synthesis in higher plants, Annu Rev Cell Dev Biol, vol.22, pp.53-78, 2006.

J. Sommer-knudsen, A. Clarke, and . Bacic, A (1997) Proline-and hydroxyproline-rich gene products in the sexual tissues of flowers, Sex Plant Reprod, vol.10, pp.253-260

I. Sørensen, F. A. Pettolino, S. M. Wilson, M. S. Doblin, B. Johansen et al., Mixed-linkage (1->3),(1>4)-beta-D-glucan is not unique to the Poales and is an abundant component of Equisetum arvense cell walls, Plant J, vol.54, pp.510-521, 2008.

E. M. Southern, DNA microarrays. History and overview, Methods Mol Biol, vol.170, pp.1-15, 2001.

A. E. Speers and B. Cravatt, Profiling enzyme activities in vivo using click chemistry methods, Chem Biol, vol.11, pp.535-546, 2004.

L. A. Staehelin and E. H. Newcomb, Membrane structure and membranes organelles, Biochemistry and molecular biology of plants, pp.2-51, 2000.

A. L. Staehelin and . Moore, The plant golgi apparatus: Structure, Functional Organization and Trafficking Mechanisms, Annu Rev Plant Physiol Plant Mol Bio, vol.46, pp.261-288, 1995.

L. A. Staehelin and P. Hepler, Cytokinesis in higher plants, Cell, vol.84, pp.821-824, 1996.

B. R. Stockwell, Chemical genetics: ligand-based discovery of gene function, Nat Rev Genet, vol.1, pp.116-125, 2000.

B. R. Stockwell, Exploring biology with small organic molecules, Nature, vol.432, pp.846-854, 2004.

Q. Sun, L. Greve, and J. Labavitch, , 2011.

W. Sun, Z. D. Zhao, M. C. Hare, M. Kieliszewski, and A. Showalter, Tomato LeAGP1 is a plasma membrane-bound, glycosylphosphatidylinositol-anchored arabinogalactan-protein, Physiol Plant, vol.120, pp.319-327, 2004.

M. Surpin and N. Raikhel, Traffic jams affect plant development and signal transduction, Nat Rev Mol Cell Biol, vol.5, pp.100-109, 2004.

J. Svetek, M. Yadav, and E. Nothnagel, Presence of a glycosylphosphatidylinositol lipid anchor on rose arabinogalactan proteins, J Biol Chem, vol.274, pp.14724-14733, 1999.

R. Swanson, A. Edlund, and D. Preuss, , 2004.

A. Tabuchi, . Li, and D. Cosgrove, Matrix solubilization and cell wall weakening by \-expansin (group-1 allergen) from maize pollen, Plant J Sous presse, 2011.

T. Takasaki, K. Hatakeyama, G. Suzuki, M. Watanabe, . Isogai et al., The S receptor kinase determines selfincompatibility in Brassica stigma, Nature, vol.403, pp.913-916, 2000.

L. P. Taylor and P. Hepler, Pollen germination and tube growth, Annu Rev Plant Physiol Plant Mol Biol, vol.48, pp.461-91, 1997.

J. E. Thompson and S. Fry, Evidence for covalent linkage between xyloglucan and acidic pectins in suspension-cultured rose cells, Planta, vol.211, pp.275-286, 2000.

R. Tóth and R. A. Van-der-hoorn, Emerging principles in plant chemical genetics, Trends Plant Sci, vol.15, pp.81-88, 2010.

T. Tryfona, H. Liang, T. Kotake, S. Kaneko, J. Marsh et al., P (2010) Carbohydrate structural analysis of wheat flour arabinogalactan protein, Carbohydr Res, vol.345, pp.2648-2656

T. Tsuchimatsu, K. Suwabe, R. Shimizuinatsugi, S. Isokawa, P. Pavlidis et al., Evolution of selfcompatibility in Arabidopsis by a mutation in the male specificity gene, Nature, vol.464, pp.1342-1346, 2010.

C. Tung, K. G. Dwyer, M. Nasrallah, and J. Nasrallah, Genome-wide identification of genes expressed in Arabidopsis pistils specifically along the path of pollen tube growth, Plant Physiol, vol.138, pp.977-989, 2005.

D. Twell, A blossoming romance: gamete interactions in flowering plants, Nat Cell Biol, vol.8, pp.14-16, 2006.

D. Twell, Male gametogenesis and germline specification in flowering plants, Sex Plant Reprod, vol.24, pp.149-160, 2011.

S. Ueki and V. Citovsky, The systemic movement of a tobamovirus is inhibited by a cadmium-ion-induced glycine-rich protein, Nat Cell Biol, vol.4, pp.478-486, 2002.

G. F. V-vanzin, M. Madson, N. C. Carpita, N. V. Raikhel, . Keegstra et al., The mur2 mutant of Arabidopsis thaliana lacks fucosylated xyloglucan because of a lesion in fucosyltransferase AtFUT1, Proc Natl Acad Sci U S A, vol.99, pp.3340-3345, 2002.

S. M. Velasquez, M. M. Ricardi, J. G. Dorosz, P. V. Fernandez, A. D. Nadra et al., Science, vol.332, pp.1401-1403, 2011.

D. P. Verma and . Hong, Plant callose synthase complexes, Plant Mol Biol, vol.47, pp.693-701, 2001.

M. Vicré, C. Santaella, S. Blanchet, . Gateau, and . Driouich, Root border-like cells of Arabidopsis. Microscopical characterization and role in the interaction with rhizobacteria, Plant Physiol, vol.138, p.998, 2005.

J. Vincken, H. A. Schols, R. J. Oomen, M. C. Mccann, P. Ulvskov et al., If homogalacturonan were a side chain of rhamnogalacturonane I. Implications for cell wall architecture, Plant Physiol, vol.132, pp.1781-1789, 2003.

S. Vorwerk, . Somerville, and C. Somerville, The role of plant cell wall polysaccharide composition in disease resistance, Trends Plant Sci, vol.9, pp.203-209, 2004.

A. Voxeur, L. Gilbert, C. Rihouey, A. Driouich, C. Rothan et al., Silencing of the GDP-D-mannose 3,5epimerase affects the structure and crosslinking of the pectic polysaccharide rhamnogalacturonan II and plant growth in tomato, J Biol Chem, vol.286, pp.8014-8020, 2011.
URL : https://hal.archives-ouvertes.fr/hal-01848364

K. Waldron and C. Brett, The role of polymer cross-linking in intercellular adhesion, Annu Plant Rev, vol.25, pp.183-204, 2007.

D. P. Walsh and . Chang, Y (2006) Chemical genetics, Chem Rev, vol.106, pp.2476-2530

H. Wang, H. Wu, and A. Cheung, Pollination induces mRNA poly(A) tailshortening and cell deterioration in flower transmitting tissue, Plant J, vol.9, pp.715-727, 1996.

H. J. Wang, J. Huang, and G. Jauh, Pollen germination and tube growth, Adv Bot Res, vol.54, pp.1-52, 2010.

W. Wang, L. Wang, C. Chen, G. Xiong, X. Tan et al., L (2011) Arabidopsis CSLD1 and CSLD4 are required for cellulose deposition and normal growth of pollen tubes, J Exp Bot Sous Presse

G. Wei and . Shirsat, AH (2006) Extensin overexpression in Arabidopsis limits pathogen invasinveness, Mol Plant Pathol, vol.7, pp.579-592

T. Wemmer, H. Kaufmann, H. H. Kirch, K. Schneider, . Lottspeich et al., The most abundant soluble basic protein of the stylar transmitting tract in potato (Solanum tuberosum L.) is an endochitinase, Planta, vol.194, pp.264-273, 1994.

M. J. Wheeler, B. H. De-graaf, N. Hadjiosif, R. M. Perry, N. S. Poulter et al., Identification of the pollen selfincompatibility determinant in Papaver rhoeas, Nature, vol.459, pp.992-995, 2009.

A. R. White, . Xin, and . Pezeshk, V (1993) Xyloglucan glucosyltransferase in Golgi membranes from Pisum sativum (pea)

, Biochem J, vol.294, pp.231-238

E. Zablackis, W. S. York, M. Pauly, S. Hantus, W. D. Reiter et al., A (1996) Substitution of L-fucose by L-galactose in cell walls of Arabidopsis mur1, Science, vol.272, pp.1808-1810

O. A. Zabotina, W. T. Van-de-ven, G. Freshour, G. Drakakaki, D. Cavalier et al., Arabidopsis XXT5 gene encodes a putative alpha-1,6-xylosyltransferase that is involved in xyloglucan biosynthesis, Plant J, vol.56, pp.101-115, 2008.

J. Zandleven, S. O. Sørensen, J. Harholt, G. Beldman, H. A. Schols et al., Xylogalacturonan exists in cell walls from various tissues of Arabidopsis thaliana, Phytochemistry, vol.68, pp.1219-1226, 2007.

R. Zavaliev, S. Ueki, B. Epel, and . Citovsky, Biology of callose (?-1,3-glucan) turnover at plasmodesmata, Protoplasma, vol.248, pp.117-130, 2011.

J. Zhang, . Chung, and K. Oldenburg, Simple Statistical Parameter for Use in Evaluation and Validation of High Throughput Screening Assays, J Biomol Screen, vol.4, pp.67-73, 1999.

J. Zhao, H. Yang, and E. Lord, Calcium levels increase in the lily stylar transmitting tract after pollination, Sex Plant Reprod, vol.16, pp.259-263, 2004.

J. Zhao, J. Mollet, and E. Lord, Lily (Lilium longiflorum L.) pollen protoplast adhesion is increased in the presence of the peptide SCA, Sex Plant Reprod, vol.16, pp.227-233, 2004.
URL : https://hal.archives-ouvertes.fr/hal-02121553

Y. Zhao, X. Dai, H. E. Blackwell, S. Schreiber, and . Chory, SIR1, an upstream component in auxin signaling identified by chemical genetics, Science, vol.301, pp.1107-1110, 2003.

J. K. Zhu, B. Damsz, A. K. Kononowicz, R. Bressan, and P. Hasegawa, A higher plant extracellular vitronectin-like adhesion protein is related to the translational elongation factor-1 alpha, Plant Cell, vol.6, pp.393-404, 1994.

G. M. Zinkl, L. Wilhelmi, and D. Preuss, Sticking together: Cell Adhesion interactions in Arabidopsis reproduction, J Plant Res, vol.111, pp.299-305, 1998.

G. M. Zinkl, B. I. Zwiebel, D. Grier, and . Preuss, D (1999) Pollen-stigma adhesion in Arabidopsis: a species-specific interaction mediated by lipophilic molecules in the pollen exine, Development, vol.126, p.5431

L. Zonia and T. Munnik, Vesicle trafficking dynamics and visualization of zones of exocytosis and endocytosis in tobacco pollen tubes, J Exp Bot, vol.59, pp.861-873, 2008.

L. Zonia and T. Munnik, Uncovering hidden treasures in pollen tube growth mechanics, Trends Plant Sci, vol.14, pp.318-327, 2009.

J. Zuo, Q. W. Niu, N. Nishizawa, Y. Wu, . Kost et al., , 2000.

F. Dardelle, Solanaceae pollen tube and vegetative organs have structurally divergent xyloglucan

A. Lehner and . Dardelle, Pectins in the cell wall of Arabidopsis thaliana pollen tube and pistil, Plant Signaling & Behavior, vol.5, pp.1282-1285
URL : https://hal.archives-ouvertes.fr/hal-01805116

F. Dardelle, Biochemical and immunocytological characterizations of Arabidopsis thaliana pollen tube cell wall, Plant Physiology, vol.153, pp.1563-1576

. Chapitre-de-livre,

A. Driouich, M. Cannesan, C. Dardelle, . Durand, . Plancot et al., Unity is strength: the power of border cells and border-like cells in relation with plant defence

C. Durand, M. Follet-gueye, M. Cannesan, . Dardelle, . Bernard et al., Les cellules bordantes de la racine chez Arabidopsis thaliana : Formation, caractérisation et rôle dans la santé de la plante. AFPP-4 ème conférence internationale sur les métodes alternatives en protetion des culture, 2011.

F. Dardelle, C. Lehner, . Rihouey, . Bardor, . Lerouge et al., Structural characterization of pollen tube xyloglucan in Nicotiana tabacum

R. , , 2011.

F. Dardelle, Y. Lehner, . Ramdani, . Soret-morvan, . Bardor et al., Sexual reproduction in plants: role of the cell wall in adhesion. 2 ème journée du Grand réseau de recherche VATA, 2010.

F. Dardelle, Y. Lehner, . Ramdani, . Bardor, . Lerouge et al., The pollen tube cell wall: a microscopic and biochemical characterization, vol.31
URL : https://hal.archives-ouvertes.fr/hal-02127172

F. Dardelle, Y. Lehner, . Ramdani, . Bardor, . Lerouge et al., The pollen tube cell wall: a microscopic and biochemical characterization. 13 ème journée de l'Ecole doctorale Normande, Biologie Intégrative
URL : https://hal.archives-ouvertes.fr/hal-02127172

F. Dardelle, . Lehner, . Bardor, . Follet-gueye, J. C. Driouich et al., La génétique chimique: Emergence d'une nouvelle technologie et application au contrôle de la reproduction des plantes. 1 ère journée du Grand réseau de recherche VATA, 2009.

A. Driouich, M. Durand, . Cannesan, . Dardelle, . Percoco et al., Root of border cells and border-like cells in plant health and development, Culture et valorization des resources et applications biotechnologiques dans les regions arides et sahariennes. 14-18 décembre, 2009.

F. Dardelle, . Ngoula-finassi, . Lehner, . Bardor, . Follet-gueye et al., Extracellular matrix characterization of in vitro grown Arabidopsis thaliana pollen tubes. 8 ème colloque national de la Société Française de Biologie Végétale (SFBV), 2009.

M. Vicré-gibouin, C. Durand, M. Dardelle, . Cannesan, C. Nguema-ona et al., Arabinogalactan proteins in root cells. Workshop in plant biology-The extracellular matrix of plant cells: function and dynamics of arabinogalactan-proteins. 15-16 mai, 2008.

F. Dardelle, Y. Lehner, . Ramdani, . Bardor, . Lerouge et al., The pollen tube cell wall: a microscopic and biochemical characterization, Cell wall meeting, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02127172

F. Dardelle, . Ngoula-finassi, . Lehner, . Bardor, . Follet-gueye et al., Extracellular matrix characterization of in vitro grown Arabidopsis thaliana pollen tubes. 15 ème journée scientifique de l'IFRMP23, 2009.

M. Appareils, M. De-pro, and . Cryotome,

, Microscopie électronique à transmission : Tecnai 12 Bio-Twin-Philips Microscopie classique

, Animer et conduire une réunion Ecole thématique CNRS : Les enjeux du criblage en, 2010.

, Participation à la vie des institutions

, Vice-président puis Président de l'Association des Docteurs et Doctorants de Normandie (ADN) à l'Université de Rouen. Elu représentant des étudiants, 2009.

, Elu représentant des étudiants de Master au sein du conseil du département de biologie (2007-2008) de l'Université de Rouen. Co-organisateur de 2 journées de l'école doctorale NBISE, Elu représentant doctorants au sein du conseil de l'école doctorale EdNBISE, vol.497, 2010.