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芝麻(Sesamum indicum L.)种子大小和形状相关性状的 QTL 分析。

QTL analysis of traits related to seed size and shape in sesame (Sesamum indicum L.).

机构信息

The Shennong Laboratory, Zhengzhou, Henan, China.

Henan Sesame Research Center, Henan Academy of Agricultural Sciences, Zhengzhou, Henan, China.

出版信息

PLoS One. 2023 Nov 2;18(11):e0293155. doi: 10.1371/journal.pone.0293155. eCollection 2023.

Abstract

Seed size and shape are important traits that determine seed yield in sesame. Understanding the genetic basis of seed size and shape is essential for improving the yield of sesame. In this study, F2 and BC1 populations were developed by crossing the Yuzhi 4 and Bengal small-seed (BS) lines for detecting the quantitative trait loci (QTLs) of traits related to seed size and shape. A total of 52 QTLs, including 13 in F2 and 39 in BC1 populations, for seed length (SL), seed width (SW), and length to width ratio (L/W) were identified, explaining phenotypic variations from 3.68 to 21.64%. Of these QTLs, nine stable major QTLs were identified in the two populations. Notably, three major QTLs qSL-LG3-2, qSW-LG3-2, and qSW-LG3-F2 that accounted for 4.94-16.34% of the phenotypic variations were co-localized in a 2.08 Mb interval on chromosome 1 (chr1) with 279 candidate genes. Three stable major QTLs qSL-LG6-2, qLW-LG6, and qLW-LG6-F2 that explained 8.14-33.74% of the phenotypic variations were co-localized in a 3.27 Mb region on chr9 with 398 candidate genes. In addition, the stable major QTL qSL-LG5 was co-localized with minor QTLs qLW-LG5-3 and qSW-LG5 to a 1.82 Mb region on chr3 with 195 candidate genes. Gene annotation, orthologous gene analysis, and sequence analysis indicated that three genes are likely involved in sesame seed development. These results obtained herein provide valuable in-formation for functional gene cloning and improving the seed yield of sesame.

摘要

种子大小和形状是决定芝麻种子产量的重要特征。了解种子大小和形状的遗传基础对于提高芝麻产量至关重要。本研究通过杂交豫芝 4 号和孟加拉小粒(BS)系构建了 F2 和 BC1 群体,用于检测与种子大小和形状相关性状的数量性状位点(QTLs)。共鉴定出 52 个 QTLs,包括 F2 群体中的 13 个和 BC1 群体中的 39 个,分别解释了种子长度(SL)、种子宽度(SW)和长宽比(L/W)表型变异的 3.68%至 21.64%。其中,在两个群体中鉴定到 9 个稳定的主效 QTLs。值得注意的是,三个主效 QTLs qSL-LG3-2、qSW-LG3-2 和 qSW-LG3-F2 共同定位于第 1 号染色体(chr1)上 2.08 Mb 的区间内,该区间内有 279 个候选基因。三个稳定的主效 QTLs qSL-LG6-2、qLW-LG6 和 qLW-LG6-F2 解释了表型变异的 8.14%至 33.74%,共同定位于第 9 号染色体上 3.27 Mb 的区域内,该区域内有 398 个候选基因。此外,稳定的主效 QTL qSL-LG5 与次要 QTL qLW-LG5-3 和 qSW-LG5 共同定位于第 3 号染色体上 1.82 Mb 的区域内,该区域内有 195 个候选基因。基因注释、直系同源基因分析和序列分析表明,三个基因可能参与芝麻种子发育。本研究结果为功能基因克隆和提高芝麻产量提供了有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4833/10621824/8c08c15da16d/pone.0293155.g001.jpg

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