In silico system analysis of physiological traits determining grain yield and protein concentration for wheat as influenced by climate and crop management

scientific article published on 24 March 2015

In silico system analysis of physiological traits determining grain yield and protein concentration for wheat as influenced by climate and crop management is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1093/JXB/ERV049
P932PMC publication ID4463803
P698PubMed publication ID25810069
P5875ResearchGate publication ID274092690

P50authorPierre MartreQ51924527
Mikhail SemenovQ58148943
P2093author name stringJianqiang He
Jacques Le Gouis
P2860cites workGlobal environmental impacts of agricultural expansion: the need for sustainable and efficient practicesQ24616001
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Deviation from the grain protein concentration-grain yield negative relationship is highly correlated to post-anthesis N uptake in winter wheat.Q44747220
Acclimation of leaf nitrogen to vertical light gradient at anthesis in wheat is a whole-plant process that scales with the size of the canopyQ47285053
Anthesis date mainly explained correlations between post-anthesis leaf senescence, grain yield, and grain protein concentration in a winter wheat population segregating for flowering time QTLs.Q50524809
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Simulation of environmental and genotypic variations of final leaf number and anthesis date for wheatQ58390146
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Reconciling alternative models of phenological development in winter wheatQ58390180
Modelling protein content and composition in relation to crop nitrogen dynamics for wheatQ58390190
A wheat canopy model linking leaf area and phenologyQ58390197
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Sirius: a mechanistic model of wheat response to environmental variationQ58390227
The genetics of nitrogen use in hexaploid wheat: N utilisation, development and yieldQ61850070
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A functional-structural model of elongation of the grass leaf and its relationships with the phyllochronQ81712103
Genetic analysis of dry matter and nitrogen accumulation and protein composition in wheat kernelsQ81841660
Dynamics of light and nitrogen distribution during grain filling within wheat canopyQ81982870
P433issue12
P921main subjectin silicoQ192572
wheatQ15645384
physiological traitQ113269733
P304page(s)3581-3598
P577publication date2015-03-24
P1433published inJournal of Experimental BotanyQ6295179
P1476titleIn silico system analysis of physiological traits determining grain yield and protein concentration for wheat as influenced by climate and crop management
P478volume66

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cites work (P2860)
Q47795443A Model of Leaf Coordination to Scale-Up Leaf Expansion from the Organ to the Canopy.
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Q38765981Optimization of multi-environment trials for genomic selection based on crop models.
Q36107159Origin of worldwide cultivated barley revealed by NAM-1 gene and grain protein content
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Q38703738Trait-based model development to support breeding programs. A case study for salt tolerance and rice
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