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The use of comparative genome analysis and syntenic relationships allows extrapolating the position of Zn tolerance QTL regions from Arabidopsis halleri into Arabidopsis thaliana

机译:比较基因组分析和同系关系的使用可以将拟南芥中的锌耐性QTL区域的位置外推到拟南芥中

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摘要

Arabidopsis halleri is a species that has undergone natural selection for zinc (Zn) tolerance. Isolation of the quantitative trait loci (QTL) associated with this trait holds great promise for the identification of the main genes responsible for this adaptation. Using a segregating progeny produced by an interspecific cross, we previously constructed a genetic linkage map of A. halleri × A. lyrata petraea and mapped the three main QTL that confer Zn tolerance in A. halleri (Willems et al.). The goal of the present study is to compare the genetic linkage map of A. halleri × A. l. petraea to the annotated A. thaliana genome sequence to generate a tool for A. halleri genomic approaches. To achieve this aim, we constructed a genetic linkage map with 81 markers anchored on A. thaliana, including 23 genes known to be involved in metal homeostasis. First, this provided an extensive overview of the chromosomal rearrangements that have occurred since the divergence between A. thaliana and its closest relative A. halleri. Second, on the basis of the syntenic relationships assessed experimentally through this work, we transferred the QTL confidence intervals for Zn tolerance to the A. thaliana physical map, allowing access to all the genes localized in the corresponding regions. Third, we validated from the 23 genes involved in metal homeostasis the three ones localized in the QTL regions that can be considered the best candidates for conferring Zn tolerance.
机译:拟南芥是已经对锌(Zn)耐受性进行自然选择的物种。与该性状相关的数量性状基因座(QTL)的分离对于鉴定负责这种适应的主要基因具有广阔的前景。利用种间杂交产生的分离后代,我们先前构建了A. halleri×A. lyrata petraea的遗传连锁图谱,并绘制了赋予A. halleri锌耐性的三个主要QTL(Willems等人)。本研究的目的是比较A. halleri×A.l.的遗传连锁图谱。标记的拟南芥基因组序列产生了一种古希腊蜡菊,从而产生了一种用于汉勒农杆菌基因组方法的工具。为了实现这一目标,我们构建了一个遗传连锁图谱,其中有81个标记锚定在拟南芥上,包括23个已知与金属稳态有关的基因。首先,这提供了自拟南芥与其最接近的亲缘种A. halleri之间的分歧以来发生的染色体重排的广泛概述。其次,根据通过这项工作实验评估的同义关系,我们将锌耐受性的QTL置信区间转移至拟南芥物理图谱,从而可以访问位于相应区域的所有基因。第三,我们从涉及金属稳态的23个基因中验证了位于QTL区域的三个基因,可以认为它们是赋予锌耐性的最佳候选者。

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