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Helen M North

Showing results (11-20 of 31) with videos related to

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Plant & Cell Physiology|June 2, 2007
In situ, chemical and macromolecular study of the composition of Arabidopsis thaliana seed coat mucilageAudrey Macquet, Marie-Christine Ralet, Jocelyne Kronenberger, et al.
Plant & Cell Physiology|December 6, 2015
Staying Alive: Molecular Aspects of Seed LongevityNaoto Sano, Loïc Rajjou, Helen M North, et al.
Frontiers in Plant Science|August 16, 2016
Dissecting Seed Mucilage Adherence Mediated by FEI2 and SOS5Jonathan S Griffiths, Marie-Jeanne Crepeau, Marie-Christine Ralet, et al.
Cells|October 23, 2021
Sterol Glucosyltransferases Tailor Polysaccharide Accumulation in Arabidopsis Seed Coat Epidermal CellsAdeline Berger, Marie-Christine Ralet, Elodie Akary, et al.
Frontiers in Plant Science|July 5, 2016
Extensive Natural Variation in Arabidopsis Seed Mucilage StructureCătălin Voiniciuc, Eva Zimmermann, Maximilian Heinrich-Wilhelm Schmidt, et al.
The Plant Cell|January 1, 2008
A naturally occurring mutation in an Arabidopsis accession affects a beta-D-galactosidase that increases the hydrophilic potential of rhamnogalacturonan I in seed mucilageAudrey Macquet, Marie-Christine Ralet, Olivier Loudet, et al.
Plant Physiology|October 9, 2019
Natural Variation Reveals a Key Role for Rhamnogalacturonan I in Seed Outer Mucilage and Underlying GenesIsabelle Fabrissin, Gwendal Cueff, Adeline Berger, et al.
The Plant Cell|January 31, 2013
PECTIN METHYLESTERASE INHIBITOR6 promotes Arabidopsis mucilage release by limiting methylesterification of homogalacturonan in seed coat epidermal cellsSusana Saez-Aguayo, Marie-Christine Ralet, Adeline Berger, et al.
Plant Physiology|June 28, 2011
CESA5 is required for the synthesis of cellulose with a role in structuring the adherent mucilage of Arabidopsis seedsStuart Sullivan, Marie-Christine Ralet, Adeline Berger, et al.
The Plant Journal : for Cell and Molecular Biology|May 2, 2007
The Arabidopsis ABA-deficient mutant aba4 demonstrates that the major route for stress-induced ABA accumulation is via neoxanthin isomersHelen M North, Aurélie De Almeida, Jean-Pierre Boutin, et al.
Pageof 4

Showing results (11-20 of 31) with videos related to

Sort By:
Pageof 4
Plant & Cell Physiology|June 2, 2007
In situ, chemical and macromolecular study of the composition of Arabidopsis thaliana seed coat mucilageAudrey Macquet, Marie-Christine Ralet, Jocelyne Kronenberger, et al.
Plant & Cell Physiology|December 6, 2015
Staying Alive: Molecular Aspects of Seed LongevityNaoto Sano, Loïc Rajjou, Helen M North, et al.
Frontiers in Plant Science|August 16, 2016
Dissecting Seed Mucilage Adherence Mediated by FEI2 and SOS5Jonathan S Griffiths, Marie-Jeanne Crepeau, Marie-Christine Ralet, et al.
Cells|October 23, 2021
Sterol Glucosyltransferases Tailor Polysaccharide Accumulation in Arabidopsis Seed Coat Epidermal CellsAdeline Berger, Marie-Christine Ralet, Elodie Akary, et al.
Frontiers in Plant Science|July 5, 2016
Extensive Natural Variation in Arabidopsis Seed Mucilage StructureCătălin Voiniciuc, Eva Zimmermann, Maximilian Heinrich-Wilhelm Schmidt, et al.
The Plant Cell|January 1, 2008
A naturally occurring mutation in an Arabidopsis accession affects a beta-D-galactosidase that increases the hydrophilic potential of rhamnogalacturonan I in seed mucilageAudrey Macquet, Marie-Christine Ralet, Olivier Loudet, et al.
Plant Physiology|October 9, 2019
Natural Variation Reveals a Key Role for Rhamnogalacturonan I in Seed Outer Mucilage and Underlying GenesIsabelle Fabrissin, Gwendal Cueff, Adeline Berger, et al.
The Plant Cell|January 31, 2013
PECTIN METHYLESTERASE INHIBITOR6 promotes Arabidopsis mucilage release by limiting methylesterification of homogalacturonan in seed coat epidermal cellsSusana Saez-Aguayo, Marie-Christine Ralet, Adeline Berger, et al.
Plant Physiology|June 28, 2011
CESA5 is required for the synthesis of cellulose with a role in structuring the adherent mucilage of Arabidopsis seedsStuart Sullivan, Marie-Christine Ralet, Adeline Berger, et al.
The Plant Journal : for Cell and Molecular Biology|May 2, 2007
The Arabidopsis ABA-deficient mutant aba4 demonstrates that the major route for stress-induced ABA accumulation is via neoxanthin isomersHelen M North, Aurélie De Almeida, Jean-Pierre Boutin, et al.
Pageof 4