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Natural Variation in Arabidopsis thaliana Revealed a Genetic Network Controlling Germination Under Salt Stress

机译:拟南芥的自然变异揭示了盐胁迫下控制发芽的遗传网络

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摘要

Plant responses to environmental stresses are polygenic and complex traits. In this study quantitative genetics using natural variation in Arabidopsis thaliana was used to investigate the genetic architecture of plant responses to salt stress. Eighty seven A. thaliana accessions were screened and showed a large variation for root development and seed germination under 125 and 200 mM NaCl, respectively. Twenty two quantitative trait loci for these traits have been detected by phenotyping two recombinants inbred line populations, Sha x Col and Sha x Ler. Four QTLs controlling germination under salt were detected in the Sha x Col population. Interestingly, only one allelic combination at these four QTLs inhibits germination under salt stress, implying strong epistatic interactions between them. In this interacting context, we confirmed the effect of one QTL by phenotyping selected heterozygous inbred families. We also showed that this QTL is involved in the control of germination under other stress conditions such as KCl, mannitol, cold, glucose and ABA. Our data highlights the presence of a genetic network which consists of four interacting QTLs and controls germination under limiting environmental conditions.
机译:植物对环境胁迫的反应是多基因性和复杂性状。在这项研究中,利用拟南芥中的自然变异的定量遗传学被用于研究植物对盐胁迫的响应的遗传结构。筛选了八十七种拟南芥(A. thaliana)种质,分别在125 mM和200 mM NaCl下显示出根系发育和种子萌发的较大差异。通过对两个重组自交系群体Sha x Col和Sha x Ler进行表型分析,已检测到这些性状的22个定量性状基因座。在Sha x Col种群中检测到四个控制盐分下发芽的QTL。有趣的是,这四个QTL上只有一个等位基因组合可抑制盐胁迫下的发芽,这意味着它们之间存在强烈的上位性相互作用。在这种相互作用的背景下,我们通过选择杂合的近交家庭表型来证实一个QTL的作用。我们还表明,该QTL在其他胁迫条件下(例如KCl,甘露醇,冷,葡萄糖和ABA)参与发芽控制。我们的数据强调了遗传网络的存在,该遗传网络由四个相互作用的QTL组成,并在有限的环境条件下控制萌发。

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