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Emmanuel Delhaize

Showing results (1-10 of 53) with videos related to

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Trends in Plant Science|March 31, 2012
Transcriptional regulation of aluminium tolerance genesEmmanuel Delhaize, Jian Feng Ma, Peter R Ryan
FEBS Letters|April 10, 2007
The roles of organic anion permeases in aluminium resistance and mineral nutritionEmmanuel Delhaize, Benjamin D Gruber, Peter R Ryan
Journal of Experimental Botany|May 14, 2015
The genetics of rhizosheath size in a multiparent mapping population of wheatEmmanuel Delhaize, Tina M Rathjen, Colin R Cavanagh
The New Phytologist|May 31, 2012
Aluminium tolerance of root hairs underlies genotypic differences in rhizosheath size of wheat (Triticum aestivum) grown on acid soilEmmanuel Delhaize, Richard A James, Peter R Ryan
Plants (Basel, Switzerland)|January 21, 2023
Differences in Root Morphologies of Contrasting Wheat (<i>Triticum aestivum</i>) Genotypes Are Robust of a Drought TreatmentZhuanyun Si, Emmanuel Delhaize, Pieter-Willem Hendriks, et al.
Annals of Botany|June 27, 2013
The barley MATE gene, HvAACT1, increases citrate efflux and Al(3+) tolerance when expressed in wheat and barleyGaofeng Zhou, Emmanuel Delhaize, Meixue Zhou, et al.
Plant Physiology|November 5, 2017
Altered Expression of a Malate-Permeable Anion Channel, OsALMT4, Disrupts Mineral NutritionJie Liu, Meixue Zhou, Emmanuel Delhaize, et al.
Annals of Botany|April 17, 2014
Introgression of a 4D chromosomal fragment into durum wheat confers aluminium toleranceChang Han, Peter R Ryan, ZeHong Yan, et al.
Functional Plant Biology : FPB|July 22, 2020
Effect of aluminium on membrane potential and ion fluxes at the apices of wheat rootsTim Wherrett, Peter R Ryan, Emmanuel Delhaize, et al.
Journal of the Science of Food and Agriculture|July 5, 2022
Elevated CO<sub>2</sub> improves phosphorus nutrition and growth of citrate-secreting wheat when grown under adequate phosphorus supply on an Al<sup>3+</sup> -toxic soilJinlong Dong, Emmanuel Delhaize, James Hunt, et al.
Pageof 6

Showing results (1-10 of 53) with videos related to

Sort By:
Pageof 6
Trends in Plant Science|March 31, 2012
Transcriptional regulation of aluminium tolerance genesEmmanuel Delhaize, Jian Feng Ma, Peter R Ryan
FEBS Letters|April 10, 2007
The roles of organic anion permeases in aluminium resistance and mineral nutritionEmmanuel Delhaize, Benjamin D Gruber, Peter R Ryan
Journal of Experimental Botany|May 14, 2015
The genetics of rhizosheath size in a multiparent mapping population of wheatEmmanuel Delhaize, Tina M Rathjen, Colin R Cavanagh
The New Phytologist|May 31, 2012
Aluminium tolerance of root hairs underlies genotypic differences in rhizosheath size of wheat (Triticum aestivum) grown on acid soilEmmanuel Delhaize, Richard A James, Peter R Ryan
Plants (Basel, Switzerland)|January 21, 2023
Differences in Root Morphologies of Contrasting Wheat (<i>Triticum aestivum</i>) Genotypes Are Robust of a Drought TreatmentZhuanyun Si, Emmanuel Delhaize, Pieter-Willem Hendriks, et al.
Annals of Botany|June 27, 2013
The barley MATE gene, HvAACT1, increases citrate efflux and Al(3+) tolerance when expressed in wheat and barleyGaofeng Zhou, Emmanuel Delhaize, Meixue Zhou, et al.
Plant Physiology|November 5, 2017
Altered Expression of a Malate-Permeable Anion Channel, OsALMT4, Disrupts Mineral NutritionJie Liu, Meixue Zhou, Emmanuel Delhaize, et al.
Annals of Botany|April 17, 2014
Introgression of a 4D chromosomal fragment into durum wheat confers aluminium toleranceChang Han, Peter R Ryan, ZeHong Yan, et al.
Functional Plant Biology : FPB|July 22, 2020
Effect of aluminium on membrane potential and ion fluxes at the apices of wheat rootsTim Wherrett, Peter R Ryan, Emmanuel Delhaize, et al.
Journal of the Science of Food and Agriculture|July 5, 2022
Elevated CO<sub>2</sub> improves phosphorus nutrition and growth of citrate-secreting wheat when grown under adequate phosphorus supply on an Al<sup>3+</sup> -toxic soilJinlong Dong, Emmanuel Delhaize, James Hunt, et al.
Pageof 6