Main O,
Jacquemot MP,
Griveau Y,
Guillaume S, Demonceaux C,
Lopez-Marnet PL, Rey S, Fargier S, Sartre P, Montagnier C, Uijttewaal A, Mangel N, Meunier F,
Reymond M,
Méchin V,
Coursol S (2023).
Precise control of water stress in the field reveals different response thresholds for forage yield and digestibility of maize hybrids.
Front Plant Sci, 14:1142462.
PubMed
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DOI
Brancourt-Hulmel M, Arnoult S,
Cézard L,
El Hage F,
Gineau E, Girones J,
Griveau Y,
Jacquemot MP, Jaffuel S, Mignot E,
Mouille G,
Lapierre C,
Legée F,
Méchin V, Navard P, Vo LTT,
Reymond M (2022).
A Comparative Study of Maize and Miscanthus Regarding Cell-Wall Composition and Stem Anatomy for Conversion into Bioethanol and Polymer Composites.
BioEnergy Research, 15: 777–791.
DOI
Chauvergne C, Bonnal L, Bastianelli D, Carrère H,
Griveau Y,
Jacquemot MP,
Reymond M,
Méchin V, Rossard V, Latrille É (2020).
Dataset of organic sample near infrared spectra acquired on different spectrometers.
Data Brief, 32:106264.
PubMed
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DOI
Vo LTT, Girones J,
Jacquemot MP,
Legée F,
Cézard L,
Lapierre C,
El Hage F,
Méchin V,
Reymond M, Navard P (2020).
Correlations between genotype biochemical characteristics and mechanical properties of maize stem - polyethylene composites.
Ind Crops Prod, 143: 111925.
DOI
Cuello C,
Baldy A, Brunaud V, Joets J, Delannoy E,
Jacquemot MP, Botran L,
Griveau Y, Guichard C, Soubigou-Taconnat L, Martin-Magniette ML, Leroy P,
Méchin V,
Reymond M,
Coursol S (2019).
A systems biology approach uncovers a gene co-expression network associated with cell wall degradability in maize.
PLoS One, 14(12):e0227011.
PubMed
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DOI
Virlouvet L,
El Hage F,
Griveau Y,
Jacquemot MP,
Gineau E,
Baldy A,
Legay S,
Horlow C, Combes V, Bauland C, Palafre C, Falque M, Moreau L,
Coursol S,
Méchin V,
Reymond M (2019).
Water Deficit-Responsive QTLs for Cell Wall Degradability and Composition in Maize at Silage Stage.
Front Plant Sci, 10:488.
PubMed
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DOI
Barriere Y, Chavigneau H, Delaunay S, Courtial A, Bosio M, Lassagne H, Derory J,
Lapierre C,
Méchin V, Tatout C (2013).
Different mutations in the ZmCAD2 gene underlie the maize brown-midrib1 (bm1) phenotype with similar effects on lignin characteristics and have potential interest for bioenergy production.
Maydica, 58:6-20.
PubMed
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DOI
Lam M, Martinez Y, Barbier O, Jauneau A, Balzergue S, Huguet S,
Pollet B,
Méchin V, Guillon F, Robert P, Dumon C, O'donohue M, Goffner D, Pichon M (2013).
Combined approaches provide an anatomical and transcriptomic fingerprint of maize cell wall digestibility.
Maydica, 58:274-287.
PubMed
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DOI
Barriere Y,
Méchin V, Riboulet C, Guillaumie S, Thomas J, Bosio M, Fabre F, Goffner D, Pichon M,
Lapierre C, Martinant JP (2009).
Genetic and genomic approaches for improving biofuel production from maize.
Euphytica, 170:183-202.
PubMed
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DOI
Manicacci D, Camus-Kulandaivelu L, Fourmann M, Arar C, Barrault S, Rousselet A, Feminias N, Consoli L, Frances L,
Méchin V, Murigneux A, Prioul JL, Charcosset A, Damerval C (2009).
Epistatic interactions between Opaque2 transcriptional activator and its target gene CyPPDK1 control kernel trait variation in maize.
Plant Physiol, 150:506-520.
PubMed
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DOI
Riboulet C, Guillaumie S,
Méchin V, Bosio M, Pichon M, Goffner D,
Lapierre C,
Pollet B, Lefevre B, Martinant JP, Barriere Y (2009).
Kinetics of Phenylpropanoid Gene Expression in Maize Growing Internodes: Relationships with Cell Wall Deposition.
Crop Science, 49:211-223.
PubMed
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DOI
Prioul JL,
Méchin V, Lessard P, Thevenot C, Grimmer M, Chateau-Joubert S, Coates S, Hartings H, Kloiber-Maitz M, Murigneux A, Sarda X, Damerval C, Edwards KJ (2008).
A joint transcriptomic, proteomic and metabolic analysis of maize endosperm development and starch filling.
Plant Biotechnol J, 6:855-869.
PubMed
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DOI