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Identification of genes related to salt stress tolerance using intron-length polymorphic markers association mapping and virus-induced gene silencing in cotton

机译:利用内含子长度多态性标记关联图谱和病毒诱导的棉花基因沉默鉴定与耐盐性相关的基因

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摘要

Intron length polymorphisms (ILPs), a type of gene-based functional marker, could themselves be related to the particular traits. Here, we developed a genome-wide cotton ILPs based on orthologs annotation from two sequenced diploid species, A-genome Gossypium arboreum and D-genome G. raimondii. We identified 10,180 putative ILP markers from 5,021 orthologous genes. Among these, 535 ILP markers from 9 gene families related to stress were selected for experimental verification. Polymorphic rates were 72.71% between G. arboreum and G. raimondii and 36.45% between G. hirsutum acc. TM-1 and G. barbadense cv. Hai7124. Furthermore, 14 polymorphic ILP markers were detected in 264 G. hirsutum accessions. Coupled with previous simple sequence repeats (SSRs) evaluations and salt tolerance assays from the same individuals, we found a total of 25 marker-trait associations involved in nine ILPs. The nine genes, temporally named as C1 to C9, showed the various expressions in different organs and tissues, and five genes (C3, C4, C5, C7 and C9) were significantly upregulated after salt treatment. We verified that the five genes play important roles in salt tolerance. Particularly, silencing of C4 (encodes WRKY DNA-binding protein) and C9 (encodes Mitogen-activated protein kinase) can significantly enhance cotton susceptibility to salt stress.
机译:内含子长度多态性(ILP)是一种基于基因的功能标记,其自身可能与特定性状有关。在这里,我们基于直系同源物注释从两个测序的二倍体物种,即A-基因组棉和D-基因组雷蒙德氏菌中开发了全基因组棉花ILP。我们从5,021个直系同源基因中鉴定了10,180个推定的ILP标记。其中,从9个与压力相关的基因家族中选出535个ILP标记用于实验验证。 G. arboreum和G. raimondii之间的多态性率分别为72.71%和hirsutum acc。之间的36.45%。 TM-1和G. barbadense简历。海7124。此外,在264个G.hirsutum品种中检测到14个多态性ILP标记。加上先前来自同一个体的简单序列重复(SSR)评估和耐盐性测定,我们发现9个ILP中共有25个标记-性状关联。暂时命名为C1至C9的9个基因在不同器官和组织中均有不同的表达,另外5个基因(C3, C4 C5 C7 < / em>和 C9 )在盐处理后显着上调。我们验证了这五个基因在耐盐性中起重要作用。特别是, C4 (编码WRKY DNA结合蛋白)和 C9 (编码丝裂原活化的蛋白激酶)的沉默可以显着增强棉花对盐胁迫的敏感性。

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