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在小麦水分胁迫条件下叶片卷曲的 QTL 检测和候选基因预测。

QTL detection and putative candidate gene prediction for leaf rolling under moisture stress condition in wheat.

机构信息

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

Sci Rep. 2020 Oct 29;10(1):18696. doi: 10.1038/s41598-020-75703-4.

Abstract

Leaf rolling is an important mechanism to mitigate the effects of moisture stress in several plant species. In the present study, a set of 92 wheat recombinant inbred lines derived from the cross between NI5439 × HD2012 were used to identify QTLs associated with leaf rolling under moisture stress condition. Linkage map was constructed using Axiom 35 K Breeder's SNP Array and microsatellite (SSR) markers. A linkage map with 3661 markers comprising 3589 SNP and 72 SSR markers spanning 22,275.01 cM in length across 21 wheat chromosomes was constructed. QTL analysis for leaf rolling trait under moisture stress condition revealed 12 QTLs on chromosomes 1B, 2A, 2B, 2D, 3A, 4A, 4B, 5D, and 6B. A stable QTL Qlr.nhv-5D.2 was identified on 5D chromosome flanked by SNP marker interval AX-94892575-AX-95124447 (5D:338665301-5D:410952987). Genetic and physical map integration in the confidence intervals of Qlr.nhv-5D.2 revealed 14 putative candidate genes for drought tolerance which was narrowed down to six genes based on in-silico analysis. Comparative study of leaf rolling genes in rice viz., NRL1, OsZHD1, Roc5, and OsHB3 on wheat genome revealed five genes on chromosome 5D. Out of the identified genes, TraesCS5D02G253100 falls exactly in the QTL Qlr.nhv-5D.2 interval and showed 96.9% identity with OsZHD1. Two genes similar to OsHB3 viz. TraesCS5D02G052300 and TraesCS5D02G385300 exhibiting 85.6% and 91.8% identity; one gene TraesCS5D02G320600 having 83.9% identity with Roc5 gene; and one gene TraesCS5D02G102600 showing 100% identity with NRL1 gene were also identified, however, these genes are located outside Qlr.nhv-5D.2 interval. Hence, TraesCS5D02G253100 could be the best potential candidate gene for leaf rolling and can be utilized for improving drought tolerance in wheat.

摘要

叶片卷曲是几种植物缓解水分胁迫影响的重要机制。本研究利用 NI5439 × HD2012 杂交衍生的 92 个小麦重组自交系群体,鉴定了在水分胁迫条件下与叶片卷曲相关的 QTL。连锁图谱通过 Axiom 35K 育种 SNP 阵列和微卫星(SSR)标记构建。图谱共包含 3661 个标记,包括 3589 个 SNP 和 72 个 SSR 标记,分布在 21 条小麦染色体上,总长 3589 个 SNP 和 72 个 SSR 标记,总长 22275.01cM。在水分胁迫条件下对叶片卷曲性状进行 QTL 分析,在 1B、2A、2B、2D、3A、4A、4B、5D 和 6B 染色体上共鉴定到 12 个 QTL。在 5D 染色体上发现了一个稳定的 QTL Qlr.nhv-5D.2,该 QTL 位于 SNP 标记区间 AX-94892575-AX-95124447 之间(5D:338665301-5D:410952987)。在 Qlr.nhv-5D.2 的置信区间内进行遗传和物理图谱整合,发现了 14 个耐旱候选基因,其中 6 个基因是根据计算机分析确定的。在小麦基因组中对水稻叶片卷曲基因 NRL1、OsZHD1、Roc5 和 OsHB3 的比较研究发现,在 5D 染色体上有 5 个基因。在鉴定的基因中,TraesCS5D02G253100 正好位于 Qlr.nhv-5D.2 区间内,与 OsZHD1 的同源性高达 96.9%。与 OsHB3 相似的两个基因 TraesCS5D02G052300 和 TraesCS5D02G385300 具有 85.6%和 91.8%的同源性;一个基因 TraesCS5D02G320600 与 Roc5 基因具有 83.9%的同源性;一个基因 TraesCS5D02G102600 与 NRL1 基因具有 100%的同源性,然而,这些基因位于 Qlr.nhv-5D.2 区间之外。因此,TraesCS5D02G253100 可能是叶片卷曲的最佳候选基因,并可用于提高小麦的耐旱性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aba5/7596552/4bc3c59642d2/41598_2020_75703_Fig1_HTML.jpg

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