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Trait plasticity and covariance along a continuous soil moisture gradientuse asterix (*) to get italics
J Grey Monroe, Haoran Cai, David L Des MaraisPlease use the format "First name initials family name" as in "Marie S. Curie, Niels H. D. Bohr, Albert Einstein, John R. R. Tolkien, Donna T. Strickland"
2021
<p>Water availability is perhaps the greatest environmental determinant of plant yield and fitness. However, our understanding of plant-water relations is limited because it is primarily informed by experiments considering soil moisture variability at two discrete levels - wet and dry - rather than as a continuously varying environmental gradient. Here we used experimental and statistical methods based on function-valued traits to explore responses to a continuous soil moisture gradient in physiological and morphological traits in two species and five genotypes each of the model grass Brachypodium. We find that most traits exhibit non-linear responses to soil moisture variability. We also observe differences in the shape of these non-linear responses between traits, species, and genotypes. Emergent phenomena arise from this variation including changes in trait correlations and evolutionary constraints as a function of soil moisture. These results point to the importance of considering non-linearity in plant-water relations to understand plastic and evolutionary responses to changing climates.</p>
https://github.com/greymonroe/brachypodium_fvtYou should fill this box only if you chose 'All or part of the results presented in this preprint are based on data'. URL must start with http:// or https://
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drought, function-valued traits, Brachypodium, evolutionary constraint, phenotypic plasticity, non-linearity
NonePlease indicate the methods that may require specialised expertise during the peer review process (use a comma to separate various required expertises).
Phenotypic Plasticity
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2020-02-20 16:34:40
Benoit Pujol