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Featured researches published by O. Argillier.


Journal of the Science of Food and Agriculture | 2000

Relationship of cell wall composition to in vitro cell wall digestibility of maize inbred line stems.

Valérie Méchin; O. Argillier; Véronique Menanteau; Yves Barrière; Isabelle Mila; Brigitte Pollet; Catherine Lapierre

The phenolic equipment of maize stem tissues was investigated in relation to the feeding value of the detergent fibre components. Sixteen maize inbred lines, including three brown-midrib 3 mutants and their normal counterparts, were selected for highly divergent in vitro cell wall digestibility. These lines were grown during two years. Maize stems were analysed for detergent fibre concentration, esterified and etherified p-hydroxycinnamic acids, lignin content and structure and in vitro digestibility. A large genotypic variation was found for neutral detergent fibre, cell wall phenolic composition and cell wall digestibility. Within the normal maize lines the in vitro neutral detergent fibre digestibility (IVNDFD) of stem fractions was negatively correlated with their Klason lignin content. A multiple regression model based on esterified p-coumaric acid and lignin composition as two explanatory variates accounted for 58% of the IVNDFD variation. In this study, three normal maize inbred lines displaying a lignin content and a cell wall digestibility level close to those observed in the three bm3 lines could be detected, which opens up new breeding avenues. © 2000 Society of Chemical Industry


Euphytica | 1995

Genetic variation and selection criterion for digestibility traits of forage maize

O. Argillier; Yves Barrière; Y. Hébert

SummaryVariations in feeding value characteristics were studied on a factorial mating design, within a multilocal network. The in vitro digestibility of dry matter (IVDDM), neutral detergent fiber (NDF), acid detergent fiber (ADF), acid detergent lignin (ADL), starch, soluble carbohydrate, protein and ash contents were evaluated on whole plant samples. The in vitro digestibility of the non-starch and non-soluble carbohydrate plant part (IVDNSC) was also computed from near infra-red reflectance spectroscopy estimations of IVDDM, starch and soluble carbohydrate contents. Variations due to general combining ability (GCA) were more important, for all traits, than variations due to specific combining ability (SCA). Variations due to the GCA × environment interaction were also sizeable and were partly explained by the earliness of the lines. IVDDM was primarily influenced by the relative proportions of cell walls and starch in the whole plant, which were particularly susceptible to the development stage of the plants, at harvest. When adjusted for earliness, there was generally no significant relation between the line per se value and GCA performance in the biochemical constituent contents of the plant. On the contrary, IVDNSC seemed to be a feeding value trait worth evaluating at the inbred line level. It was also almost independent of the ripening stage and could be easily computed from whole plant samples. IVDNSC, with a simultaneous control of starch content, might be a good selection criterion for evaluating and improving the nutritive value of forage maize.


Comptes Rendus Biologies | 2004

Genetic and molecular basis of grass cell wall biosynthesis and degradability. II. Lessons from brown-midrib mutants.

Yves Barrière; John Ralph; Valérie Méchin; Sabine Guillaumie; John H. Grabber; O. Argillier; Brigitte Chabbert; Catherine Lapierre


Agronomie | 1993

Brown-midrib genes of maize: a review

Yves Barrière; O. Argillier


Crop Science | 2001

Genetic Analysis and QTL Mapping of Cell Wall Digestibility and Lignification in Silage Maize

Valérie Méchin; O. Argillier; Y. Hébert; Emmanuelle Guingo; Laurence Moreau; Alain Charcosset; Yves Barrière


Crop Science | 2000

Inbred line evaluation and breeding for digestibility-related traits in forage maize.

O. Argillier; Valérie Méchin; Yves Barrière


Agronomie | 1997

Relevant traits, genetic variation and breeding strategies in early silage maize

Yves Barrière; O. Argillier; B. Michalet-Doreau; Y. Hébert; Emmanuelle Guingo; C. Giauffret; Jean-Claude Emile


Journal of the Science of Food and Agriculture | 1994

Biological variability in lignification of maize: Expression of the brown midrib bm3 mutation in three maize cultivars

Brigitte Chabbert; Marie-Thérèse Tollier; Bernard Monties; Yves Barrière; O. Argillier


Journal of Agricultural and Food Chemistry | 2005

In Search of a Maize Ideotype for Cell Wall Enzymatic Degradability Using Histological and Biochemical Lignin Characterization

Valérie Méchin; O. Argillier; Francoise Rocher; Y. Hébert; Isabelle Mila; Brigitte Pollet; Yves Barrière; Catherine Lapierre


Agronomie | 1996

Genotypic variation in phenolic components of cell-walls in relation to the digestibility of maize stalks

O. Argillier; Yves Barrière; M. Lila; F. Jeanneteau; K. Gélinet; V. Ménanteau

Collaboration


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Yves Barrière

Institut national de la recherche agronomique

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Y. Hébert

Institut national de la recherche agronomique

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Valérie Méchin

Institut national de la recherche agronomique

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Brigitte Chabbert

Institut national de la recherche agronomique

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Bernard Monties

Institut national de la recherche agronomique

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Jean-Claude Emile

Institut national de la recherche agronomique

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Marie-Thérèse Tollier

Institut national de la recherche agronomique

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Sabine Guillaumie

Institut national de la recherche agronomique

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John H. Grabber

Agricultural Research Service

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Emmanuelle Guingo

Institut national de la recherche agronomique

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