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利用数量性状位点的荟萃分析揭示与小麦品质性状相关的共识基因组区域。

Unravelling consensus genomic regions associated with quality traits in wheat using meta-analysis of quantitative trait loci.

机构信息

Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana, Punjab, India.

Department of Genetics and Plant Breeding, Anand Agricultural University, Gujarat, India.

出版信息

Planta. 2022 May 5;255(6):115. doi: 10.1007/s00425-022-03904-4.

Abstract

Meta-analysis in wheat for three major quality traits identified 110 meta-QTL (MQTL) with reduced confidence interval (CI). Five GWAS validated MQTL (viz., 1A.1, 1B.2, 3B.4, 5B.2, and 6B.2), each involving more than 20 initial QTL and reduced CI (95%) (< 2 cM), were selected for quality breeding programmes. Functional characterization including candidate gene mining and expression analysis discovered 44 high confidence candidate genes associated with quality traits. A meta-analysis of quantitative trait loci (QTL) associated with dough rheology properties, nutritional traits, and processing quality traits was conducted in wheat. For this purpose, as many as 2458 QTL were collected from 50 interval mapping studies published during 2013-2020. Of the total QTL, 1126 QTL were projected onto the consensus map saturated with 249,603 markers which led to the identification of 110 meta-QTL (MQTL). These MQTL exhibited an 18.84-fold reduction in the average CI compared to the average CI of the initial QTL (ranging from 14.87 to 95.55 cM with an average of 40.35 cM). Of the 110, 108 MQTL were physically anchored to the wheat reference genome, including 51 MQTL verified with marker-trait associations (MTAs) reported from earlier genome-wide association studies. Candidate gene (CG) mining allowed the identification of 2533 unique gene models from the MQTL regions. In-silico expression analysis discovered 439 differentially expressed gene models with > 2 transcripts per million expressions in grains and related tissues, which also included 44 high-confidence CGs involved in the various cellular and biochemical processes related to quality traits. Nine functionally characterized wheat genes associated with grain protein content, high-molecular-weight glutenin, and starch synthase enzymes were also found to be co-localized with some of the MQTL. Synteny analysis between wheat and rice MQTL regions identified 23 wheat MQTL syntenic to 16 rice MQTL associated with quality traits. Furthermore, 64 wheat orthologues of 30 known rice genes were detected in 44 MQTL regions. Markers flanking the MQTL identified in the present study can be used for marker-assisted breeding and as fixed effects in the genomic selection models for improving the prediction accuracy during quality breeding. Wheat orthologues of rice genes and other CGs available from MQTLs can be promising targets for further functional validation and to better understand the molecular mechanism underlying the quality traits in wheat.

摘要

对小麦三个主要品质性状进行的荟萃分析确定了 110 个具有较小置信区间 (CI) 的元数量性状位点 (MQTL)。选择了 5 个经全基因组关联分析 (GWAS) 验证的 MQTL(即 1A.1、1B.2、3B.4、5B.2 和 6B.2),每个 MQTL 涉及超过 20 个初始数量性状位点和缩小的 CI(95%)(<2 cM),用于质量育种计划。包括候选基因挖掘和表达分析在内的功能表征发现了 44 个与品质性状相关的高置信度候选基因。对与面团流变特性、营养特性和加工品质特性相关的数量性状位点 (QTL) 进行了荟萃分析。为此,从 2013 年至 2020 年发表的 50 项区间作图研究中收集了多达 2458 个 QTL。在总共的 QTL 中,有 1126 个 QTL 被投射到了共识图谱上,该图谱饱和了 249603 个标记,从而确定了 110 个元数量性状位点 (MQTL)。这些 MQTL 的平均置信区间比初始数量性状位点的平均置信区间缩小了 18.84 倍(范围从 14.87 到 95.55 cM,平均为 40.35 cM)。在 110 个 MQTL 中,有 108 个 MQTL 在物理上锚定到了小麦参考基因组上,其中包括 51 个与以前的全基因组关联研究报告的标记-性状关联 (MTA) 验证的 MQTL。候选基因 (CG) 挖掘允许从 MQTL 区域中鉴定出 2533 个独特的基因模型。在硅基表达分析中,在谷物和相关组织中发现了 439 个差异表达的基因模型,其表达超过每百万个转录物 2 个,其中还包括 44 个与各种与品质性状相关的细胞和生化过程相关的高置信度 CG。还发现与谷物蛋白含量、高分子量谷蛋白和淀粉合酶酶相关的 9 个功能表征的小麦基因与一些 MQTL 共定位。在小麦和水稻 MQTL 区域之间进行的同线性分析确定了 23 个与品质性状相关的小麦 MQTL 与 16 个水稻 MQTL 是同线性的。此外,在 44 个 MQTL 区域中检测到 64 个小麦同源物和 30 个已知水稻基因的 30 个已知水稻基因的 64 个小麦同源物。本研究中确定的 MQTL 侧翼标记可用于标记辅助育种,并作为基因组选择模型中的固定效应,以提高品质育种期间的预测准确性。来自 MQTL 的水稻基因和其他 CG 的小麦同源物可以作为进一步功能验证的有前途的目标,以更好地理解小麦品质性状的分子机制。

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