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水稻柱头外露率QTL的遗传分析与精细定位

Genetic Analysis and Fine Mapping of QTLs for Stigma Exsertion Rate in Rice.

作者信息

Yang Hanyuan, Zhou Yin, Li Pingbo, Liu Enyu, Sun Ping, Ao Yiting, Liu Rongjia, Gao Haozhou, Xu Zherui, Yang Ping, Wang Xinyue, Gao Guanjun, Zhang Qinglu, Xiong Lizhong, He Yuqing

机构信息

National Key Laboratory of Crop Genetic Improvement, National Center of Plant Gene Research, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Rice (N Y). 2024 Dec 19;17(1):74. doi: 10.1186/s12284-024-00752-6.

Abstract

Stigma exsertion rate (SER) is a crucial trait that influences the seed production of hybrid rice by determining the outcrossing ability of male sterile lines (MSLs). However, the molecular genetic mechanisms underlying SER are still poorly understood. In this study, we identified 14 quantitative trait loci (QTLs) using a recombinant inbred line (RIL) population derived from B805D-MR-16-8-3 (B805D) and Hua6S. Two major QTLs, qSE1 and qSE9, were validated for their effects in the residual heterozygous line (RHL) background. The RHL carrying homozygous qSE1 region from Hua6S increased dual stigma exsertion rate (DSE) by 14.67% and 15.04%, and increased total stigma exsertion rate (TSE) by 11.73% and 13.04%, in F and F progeny, respectively. Conversely, the RHL carrying homozygous qSE9 region from B805D showed a substantial increase of 22.72% and 14.45% in single stigma exsertion rate (SSE), an increase of 13.46% and 8.30% in TSE, and an increase in percentage of spikelets with exserted stigma (PSE) by 24.82% and 15.57%, respectively, in F and F progeny. Furthermore, examination of floral organ traits revealed that both the Hua6S allele of qSE1 and the B805D allele of qSE9 increased pistil size to improve SER, but they had contrasting effects on spikelet shape. Subsequently, qSE1 and qSE9 were fine-mapped to intervals of 246.5 kb and 341.4 kb, respectively. A combination of sequencing, expression and haplotype analysis revealed that a single nucleotide variation (T to C) in the 5'UTR region of LOC_Os01g72020 (OsBOP1) was likely to be the functional variation for qSE1. Collectively, our work has laid a foundation for cloning the genes responsible for SER, and demonstrated that the Hua6S allele of qSE1 and the B805D allele of qSE9 can effectively increase SER, which could make important contributions to the genetic improvement of MSLs aimed at improving hybrid seed production.

摘要

柱头外露率(SER)是一个关键性状,通过决定雄性不育系(MSL)的异交能力来影响杂交水稻的种子产量。然而,SER潜在的分子遗传机制仍知之甚少。在本研究中,我们利用来源于B805D-MR-16-8-3(B805D)和华6S的重组自交系(RIL)群体鉴定出14个数量性状位点(QTL)。两个主要QTL,qSE1和qSE9,在剩余杂合系(RHL)背景下验证了其效应。携带来自华6S的纯合qSE1区域的RHL在F1和F2子代中分别使双柱头外露率(DSE)提高了14.67%和15.04%,使总柱头外露率(TSE)提高了11.73%和13.04%。相反,携带来自B805D的纯合qSE9区域的RHL在F1和F2子代中分别使单柱头外露率(SSE)大幅提高了22.72%和14.45%,TSE提高了13.46%和8.30%,柱头外露小穗百分比(PSE)提高了24.82%和15.57%。此外,对花器官性状的检查表明,qSE1的华6S等位基因和qSE9的B805D等位基因均增加了雌蕊大小以提高SER,但它们对小穗形状有相反的影响。随后,qSE1和qSE9分别被精细定位到246.5 kb和341.4 kb的区间。测序、表达和单倍型分析相结合表明,LOC_Os01g72020(OsBOP1)5'UTR区域的一个单核苷酸变异(T到C)可能是qSE1的功能变异。总的来说,我们的工作为克隆负责SER的基因奠定了基础,并证明了qSE1的华6S等位基因和qSE9的B805D等位基因可以有效提高SER,这可能对旨在提高杂交种子产量的MSL遗传改良做出重要贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c2a/11655996/4a391704e266/12284_2024_752_Fig3_HTML.jpg

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