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Plant, Cell & Environment
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April 5, 2012
Structural assessment of the impact of environmental constraints on Arabidopsis thaliana leaf growth: a 3D approach
Nathalie Wuyts, Catherine Massonnet, Myriam Dauzat, et al.
The Plant Cell
|
June 1, 2023
Leaf starch metabolism sets the phase of stomatal rhythm
Adrianus J Westgeest, Myriam Dauzat, Thierry Simonneau, et al.
Plant Physiology
|
April 9, 2011
Control of leaf expansion: a developmental switch from metabolics to hydraulics
Florent Pantin, Thierry Simonneau, Gaëlle Rolland, et al.
Journal of Experimental Botany
|
September 24, 2014
Multivariate genetic analysis of plant responses to water deficit and high temperature revealed contrasting adaptive strategies
François Vasseur, Thibaut Bontpart, Myriam Dauzat, et al.
Plant Methods
|
April 15, 2015
Quantifying spatial heterogeneity of chlorophyll fluorescence during plant growth and in response to water stress
Justine Bresson, François Vasseur, Myriam Dauzat, et al.
Frontiers in Plant Science
|
December 19, 2013
Buffering growth variations against water deficits through timely carbon usage
Florent Pantin, Anne-Laure Fanciullino, Catherine Massonnet, et al.
Plant, Cell & Environment
|
November 4, 2006
Plasticity to soil water deficit in Arabidopsis thaliana: dissection of leaf development into underlying growth dynamic and cellular variables reveals invisible phenotypes
Luis Aguirrezabal, Sandrine Bouchier-Combaud, Amandine Radziejwoski, et al.
Scientific Reports
|
December 17, 2021
Water deficit changes the relationships between epidemiological traits of Cauliflower mosaic virus across diverse Arabidopsis thaliana accessions
Sandy E Bergès, Denis Vile, Michel Yvon, et al.
Plant Physiology
|
August 15, 2008
Combined genetic and modeling approaches reveal that epidermal cell area and number in leaves are controlled by leaf and plant developmental processes in Arabidopsis
Sébastien Tisné, Matthieu Reymond, Denis Vile, et al.
Plos One
|
September 17, 2014
Interact to survive: Phyllobacterium brassicacearum improves Arabidopsis tolerance to severe water deficit and growth recovery
Justine Bresson, François Vasseur, Myriam Dauzat, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 28) with videos related to
Sort By:
Page
of 3
Plant, Cell & Environment
|
April 5, 2012
Structural assessment of the impact of environmental constraints on Arabidopsis thaliana leaf growth: a 3D approach
Nathalie Wuyts, Catherine Massonnet, Myriam Dauzat, et al.
The Plant Cell
|
June 1, 2023
Leaf starch metabolism sets the phase of stomatal rhythm
Adrianus J Westgeest, Myriam Dauzat, Thierry Simonneau, et al.
Plant Physiology
|
April 9, 2011
Control of leaf expansion: a developmental switch from metabolics to hydraulics
Florent Pantin, Thierry Simonneau, Gaëlle Rolland, et al.
Journal of Experimental Botany
|
September 24, 2014
Multivariate genetic analysis of plant responses to water deficit and high temperature revealed contrasting adaptive strategies
François Vasseur, Thibaut Bontpart, Myriam Dauzat, et al.
Plant Methods
|
April 15, 2015
Quantifying spatial heterogeneity of chlorophyll fluorescence during plant growth and in response to water stress
Justine Bresson, François Vasseur, Myriam Dauzat, et al.
Frontiers in Plant Science
|
December 19, 2013
Buffering growth variations against water deficits through timely carbon usage
Florent Pantin, Anne-Laure Fanciullino, Catherine Massonnet, et al.
Plant, Cell & Environment
|
November 4, 2006
Plasticity to soil water deficit in Arabidopsis thaliana: dissection of leaf development into underlying growth dynamic and cellular variables reveals invisible phenotypes
Luis Aguirrezabal, Sandrine Bouchier-Combaud, Amandine Radziejwoski, et al.
Scientific Reports
|
December 17, 2021
Water deficit changes the relationships between epidemiological traits of Cauliflower mosaic virus across diverse Arabidopsis thaliana accessions
Sandy E Bergès, Denis Vile, Michel Yvon, et al.
Plant Physiology
|
August 15, 2008
Combined genetic and modeling approaches reveal that epidermal cell area and number in leaves are controlled by leaf and plant developmental processes in Arabidopsis
Sébastien Tisné, Matthieu Reymond, Denis Vile, et al.
Plos One
|
September 17, 2014
Interact to survive: Phyllobacterium brassicacearum improves Arabidopsis tolerance to severe water deficit and growth recovery
Justine Bresson, François Vasseur, Myriam Dauzat, et al.
Page
of 3