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The Genetic Basis of Zinc Tolerance in the Metallophyte Arabidopsis halleri ssp. halleri (Brassicaceae): An Analysis of Quantitative Trait Loci

机译:拟南芥拟南芥锌耐性的遗传基础。 halleri(芸苔科):数量性状位点的分析

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摘要

The species Arabidopsis halleri, an emerging model for the study of heavy metal tolerance and accumulation in plants, has evolved a high level of constitutive zinc tolerance. Mapping of quantitative trait loci (QTL) was used to investigate the genetic architecture of zinc tolerance in this species. A first-generation backcross progeny of A. halleri ssp. halleri from a highly contaminated industrial site and its nontolerant relative A. lyrata ssp. petraea was produced and used for QTL mapping of zinc tolerance. A genetic map covering most of the A. halleri genome was constructed using 85 markers. Among these markers, 65 were anchored in A. thaliana and revealed high synteny with other Arabidopsis genomes. Three QTL of comparable magnitude on three different linkage groups were identified. At all QTL positions zinc tolerance was enhanced by A. halleri alleles, indicating directional selection for higher zinc tolerance in this species. The two-LOD support intervals associated with these QTL cover 24, 4, and 13 cM. The importance of each of these three regions is emphasized by their colocalization with HMA4, MTP1-A, and MTP1-B, respectively, three genes well known to be involved in metal homeostasis and tolerance in plants.
机译:拟南芥种,一种研究重金属耐受性和植物中积累的新兴模型,已经进化出高水平的本构锌耐受性。定量性状基因座(QTL)的映射用于调查该物种中锌耐性的遗传结构。 A. halleri ssp的第一代回交后代。来自严重污染的工业场所的哈雷瑞菌及其相对耐受的相对拟南芥。生产了紫草,并将其用于锌耐受性的QTL作图。使用85个标记构建了覆盖大多数哈利法球菌基因组的遗传图谱。在这些标记中,有65个锚定在拟南芥中,并与其他拟南芥基因组高度同源。在三个不同的连锁群上鉴定了三个大小相当的QTL。在所有QTL位置,哈雷A.等位基因均提高了锌耐受性,表明该物种中较高锌耐受性的定向选择。与这些QTL覆盖范围24、4和13 cM相关的两个LOD支持间隔。这三个区域分别与HMA4,MTP1-A和MTP1-B共同定位,从而强调了这三个区域的重要性,HMA4,MTP1-A和MTP1-B是众所周知的与植物体内金属稳态和耐受性相关的三个基因。

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