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An Integrative Study Showing the Adaptation to Sub-Optimal Growth Conditions of Natural Populations of Arabidopsis thaliana: A Focus on Cell Wall Changes

机译:一项综合研究表明,拟南芥天然群体次优生长条件的适应性:专注于细胞壁变化

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摘要

In the global warming context, plant adaptation occurs, but the underlying molecular mechanisms are poorly described. Studying natural variation of the model plant Arabidopsisthaliana adapted to various environments along an altitudinal gradient should contribute to the identification of new traits related to adaptation to contrasted growth conditions. The study was focused on the cell wall (CW) which plays major roles in the response to environmental changes. Rosettes and floral stems of four newly-described populations collected at different altitudinal levels in the Pyrenees Mountains were studied in laboratory conditions at two growth temperatures (22 vs. 15 °C) and compared to the well-described Col ecotype. Multi-omic analyses combining phenomics, metabolomics, CW proteomics, and transcriptomics were carried out to perform an integrative study to understand the mechanisms of plant adaptation to contrasted growth temperature. Different developmental responses of rosettes and floral stems were observed, especially at the CW level. In addition, specific population responses are shown in relation with their environment and their genetics. Candidate genes or proteins playing roles in the CW dynamics were identified and will deserve functional validation. Using a powerful framework of data integration has led to conclusions that could not have been reached using standard statistical approaches.
机译:在全球变暖的背景下,植物适应发生,但底层的分子机制描述不佳。研究沿着高度梯度适应各种环境的模型植物拟南芥的自然变化应该有助于鉴定与适应性的新特征与对比生长条件相关。该研究专注于细胞壁(CW),其在对环境变化的反应中起主要作用。在比利牛斯山脉不同的海拔地区收集的四个新描述的群体的玫瑰花和花茎在两个生长温度(22 vs.15℃)的实验室条件下进行了研究,并与熟熟的Col Exotype相比。进行了多样性分析,结合了表情,代谢组,CW蛋白质组学和转录组织,以进行一体化研究,了解植物适应对对比生长温度的机制。观察到玫瑰花丝和花茎的不同发育反应,特别是在CW水平。此外,特定的人口反应与其环境及其遗传学相关。鉴定候选基因或蛋白质在CW动力学中发挥作用,并应得到功能验证。使用强大的数据集成框架导致了使用标准统计方法无法达到的结论。

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