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Using Phenomic Analysis of Photosynthetic Function for Abiotic Stress Response Gene Discovery

机译:利用光合功能的表型分析进行非生物胁迫响应基因的发现

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摘要

Monitoring the photosynthetic performance of plants is a major key to understanding how plants adapt to their growth conditions. Stress tolerance traits have a high genetic complexity as plants are constantly, and unavoidably, exposed to numerous stress factors, which limits their growth rates in the natural environment. Arabidopsis thaliana, with its broad genetic diversity and wide climatic range, has been shown to successfully adapt to stressful conditions to ensure the completion of its life cycle. As a result, A. thaliana has become a robust and renowned plant model system for studying natural variation and conducting gene discovery studies. Genome wide association studies (GWAS) in restructured populations combining natural and recombinant lines is a particularly effective way to identify the genetic basis of complex traits. As most abiotic stresses affect photosynthetic activity, chlorophyll fluorescence measurements are a potential phenotyping technique for monitoring plant performance under stress conditions. This review focuses on the use of chlorophyll fluorescence as a tool to study genetic variation underlying the stress tolerance responses to abiotic stress in A. thaliana.
机译:监测植物的光合作用性能是了解植物如何适应其生长条件的主要关键。胁迫耐受性状具有很高的遗传复杂性,因为植物不断且不可避免地暴露于多种胁迫因素,这限制了它们在自然环境中的生长速度。拟南芥具有广泛的遗传多样性和广泛的气候范围,已被证明能够成功适应压力条件,以确保其生命周期的完成。结果,拟南芥已成为研究自然变异和进行基因发现研究的强大而著名的植物模型系统。在重组种群中结合自然和重组品系的全基因组关联研究(GWAS)是一种识别复杂性状遗传基础的特别有效的方法。由于大多数非生物胁迫都会影响光合作用,因此叶绿素荧光测量是一种潜在的表型技术,可用于监测胁迫条件下的植物生长。这篇综述着重于叶绿素荧光作为一种工具来研究拟南芥对非生物胁迫的胁迫耐受性响应的遗传变异。

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