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精细定位和遗传分析确定 CH 型锌指蛋白是调控小麦穗期的候选基因。

Fine mapping and genetic analysis identified a CH-type zinc finger as a candidate gene for heading date regulation in wheat.

机构信息

MARA Key Laboratory of Sustainable Crop Production in the Middle Reaches of the Yangtze River (Co-Construction By Ministry and Province), College of Agriculture, Yangtze University, Jingzhou, 434025, China.

National Engineering Laboratory of Crop Molecular Breeding/National Center of Space Mutagenesis for Crop Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Theor Appl Genet. 2023 May 27;136(6):140. doi: 10.1007/s00122-023-04363-5.

Abstract

A minor-effect QTL, Qhd.2AS, that affects heading date in wheat was mapped to a genomic interval of 1.70-Mb on 2AS, and gene analysis indicated that the CH-type zinc finger protein gene TraesCS2A02G181200 is the best candidate for Qhd.2AS. Heading date (HD) is a complex quantitative trait that determines the regional adaptability of cereal crops, and identifying the underlying genetic elements with minor effects on HD is important for improving wheat production in diverse environments. In this study, a minor QTL for HD that we named Qhd.2AS was detected on the short arm of chromosome 2A by Bulked Segregant Analysis and validated in a recombinant inbred population. Using a segregating population of 4894 individuals, Qhd.2AS was further delimited to an interval of 0.41 cM, corresponding to a genomic region spanning 1.70 Mb (from 138.87 to 140.57 Mb) that contains 16 high-confidence genes based on IWGSC RefSeq v1.0. Analyses of sequence variations and gene transcription indicated that TraesCS2A02G181200, which encodes a CH-type zinc finger protein, is the best candidate gene for Qhd.2AS that influences HD. Screening a TILLING mutant library identified two mutants with premature stop codons in TraesCS2A02G181200, both of which exhibited a delay in HD of 2-4 days. Additionally, variations in its putative regulatory sites were widely present in natural accession, and we also identified the allele which was positively selected during wheat breeding. Epistatic analyses indicated that Qhd.2AS-mediated HD variation is independent of VRN-B1 and environmental factors. Phenotypic investigation of homozygous recombinant inbred lines (RILs) and F families showed that Qhd.2AS has no negative effect on yield-related traits. These results provide important cues for refining HD and therefore improving yield in wheat breeding programs and will deepen our understanding of the genetic regulation of HD in cereal plants.

摘要

一个影响小麦抽穗期的微效数量性状位点(QTL)Qhd.2AS 被定位在 2AS 上的 1.70-Mb 基因组区间内,基因分析表明 CH 型锌指蛋白基因 TraesCS2A02G181200 是 Qhd.2AS 的最佳候选基因。抽穗期(HD)是一个复杂的数量性状,决定了谷类作物的区域适应性,鉴定对 HD 有微效影响的潜在遗传因素对于提高不同环境下的小麦产量非常重要。在本研究中,通过 Bulk Segregant Analysis 检测到 2A 染色体短臂上一个影响 HD 的微效 QTL,命名为 Qhd.2AS,并在重组自交系群体中进行了验证。利用一个包含 4894 个个体的分离群体,将 Qhd.2AS 进一步限定在 0.41cM 的区间内,对应于一个跨越 1.70Mb 的基因组区域(138.87-140.57Mb),该区域包含 16 个基于 IWGSC RefSeq v1.0 的高可信度基因。序列变异和基因转录分析表明,编码 CH 型锌指蛋白的 TraesCS2A02G181200 是影响 HD 的 Qhd.2AS 的最佳候选基因。筛选 TILLING 突变体文库发现 TraesCS2A02G181200 中存在两个提前终止密码子的突变体,它们的抽穗期均延迟了 2-4 天。此外,在自然群体中广泛存在其假定调控位点的变异,我们还鉴定了在小麦育种过程中被正选择的等位基因。上位性分析表明,Qhd.2AS 介导的 HD 变异与 VRN-B1 和环境因素无关。纯合重组自交系(RIL)和 F 家系的表型研究表明,Qhd.2AS 对产量相关性状没有负面影响。这些结果为细化 HD 提供了重要线索,从而提高了小麦育种计划中的产量,并将加深我们对谷类植物 HD 遗传调控的理解。

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