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首页> 外文期刊>Acta oecologica >Quantitative trait variation, phenotypic integration, and plasticity to elevated carbon dioxide in four recombinant inbred populations of Arabidopsis thaliana (Brassicaceae)
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Quantitative trait variation, phenotypic integration, and plasticity to elevated carbon dioxide in four recombinant inbred populations of Arabidopsis thaliana (Brassicaceae)

机译:拟南芥(Brassicaceae)四个重组近亲群中升高二氧化碳的定量性状变异,表型整合和可塑性

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摘要

Rapid changes in the concentration of atmospheric carbon dioxide, a key driver of global climate change, have been shown to affect ecologically important traits in plants. Characterizing the effects of novel genetic variation on quantitative variation, phenotypic integration (multivariate associations among traits), and plasticity to elevated carbon dioxide can shed light on short-term plant responses to climate change. Here we explored univariate and multivariate responses to elevated carbon dioxide among four recombinant inbred populations of Arabidopsis thaliana established from genetically divergent ecotypes crossed to a common genetic background. We found significant genetic variation in all traits, but no genetic variation in phenotypic plasticity (i.e., genotype by environment interactions) in any trait among recombinant inbred lines. Significant cross-environment correlation in fitness values showed similar patterns of selection between ambient and elevated carbon dioxide treatments. Our data suggest that outcrossing among A. thaliana ecotypes increases genetic variation in functional traits, but makes little or no contribution to genotype by environment interactions and patterns of phenotypic integration. However, multivariate analyses revealed shifts in patterns of phenotypic integration in response to elevated carbon dioxide. We conclude that multivariate plasticity will likely play an important role in shaping short-term responses to future carbon dioxide conditions in natural populations of A. thaliana.
机译:已经证明了全球气候变化的关键驱动器的大气二氧化碳浓度的快速变化,从而影响了植物的生态重要性性状。表征新型遗传变异对定量变异的影响,表型整合(特征之间的多变量关联),对二氧化碳升高的可塑性可以在短期植物对气候变化的响应上脱光。在这里,我们探讨了从遗传分歧的亚洲蔓延的拟南芥的四个重组近亲群体中对二氧化碳升高的二氧化碳反应探讨了二氧化碳二氧化碳。我们发现所有特征的显着的遗传变异,但在重组自交系中的任何性状中没有表型塑性(即,环境相互作用的基因型)的遗传变异。健身值中的显着的跨环境相关性显示了环境温度和升高的二氧化碳处理之间的相似选择模式。我们的数据表明,A. Thaliana Ecotypes之间的折叠增加了功能性状的遗传变异,但对环境相互作用和表型整合的模式几乎没有对基因型的贡献。然而,多变量分析显示出对升高二氧化碳的表型整合模式的变化。我们得出结论,多变量可塑性可能在塑造对天然群体的未来二氧化碳条件的短期反应方面发挥着重要作用。

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