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水稻(Oryza sativa L.)中一个对产量性状具有多效性的微效抽穗期QTL qHd1的精细定位。

Fine mapping of qHd1, a minor heading date QTL with pleiotropism for yield traits in rice (Oryza sativa L.).

作者信息

Chen Jun-Yu, Guo Liang, Ma Huan, Chen Yu-Yu, Zhang Hong-Wei, Ying Jie-Zheng, Zhuang Jie-Yun

机构信息

State Key Laboratory of Rice Biology and Chinese National Center for Rice Improvement, China National Rice Research Institute, Hangzhou, 310006, China.

出版信息

Theor Appl Genet. 2014 Nov;127(11):2515-24. doi: 10.1007/s00122-014-2395-7. Epub 2014 Sep 16.

Abstract

A minor QTL for heading date located on the long arm of rice chromosome 1 was delimitated to a 95.0-kb region using near isogenic lines with sequential segregating regions. Heading date and grain yield are two key factors determining the commercial potential of a rice variety. In this study, rice populations with sequential segregating regions were developed and used for mapping a minor QTL for heading date, qHd1. A total of 18 populations in six advanced generations through BC2F6 to BC2F11 were derived from a single BC2F3 plant of the indica rice cross Zhenshan 97 (ZS97)///ZS97//ZS97/Milyang 46. The QTL was delimitated to a 95.0-kb region flanked by RM12102 and RM12108 in the terminal region of the long arm of chromosome 1. Results also showed that qHd1 was not involved in the photoperiodic response, having an additive effect ranging from 2.4 d to 2.9 d observed in near isogenic lines grown in the paddy field and under the controlled conditions of either short day or long day. The QTL had pleiotropic effects on yield traits, with the ZS97 allele delaying heading and increasing the number of spikelets per panicle, the number of grains per panicle and grain yield per plant. The candidate region contains ten annotated genes including two genes with functional information related to the control of heading date. These results lay a foundation for the cloning of qHd1. In addition, this kind of minor QTLs could be of great significance in rice breeding for allowing minor adjustment of heading date and yield traits.

摘要

利用具有连续分离区域的近等基因系,将位于水稻第1染色体长臂上的一个控制抽穗期的微效QTL定位到一个95.0 kb的区域。抽穗期和籽粒产量是决定水稻品种商业潜力的两个关键因素。在本研究中,构建了具有连续分离区域的水稻群体,并用于定位一个控制抽穗期的微效QTL,即qHd1。通过BC2F6至BC2F11的六个高世代共获得了18个群体,它们均来源于籼稻杂交组合珍汕97(ZS97)///ZS97//ZS97/密阳46的一个BC2F3单株。该QTL被定位到第1染色体长臂末端区域,位于RM12102和RM12108之间的一个95.0 kb区域。结果还表明,qHd1不参与光周期反应,在稻田以及短日照或长日照控制条件下种植的近等基因系中观察到其加性效应为2.4天至2.9天。该QTL对产量性状具有多效性,ZS97等位基因延迟抽穗,并增加每穗小穗数、每穗粒数和单株籽粒产量。候选区域包含10个注释基因,其中两个基因具有与抽穗期控制相关的功能信息。这些结果为克隆qHd1奠定了基础。此外,这种微效QTL在水稻育种中对于微调抽穗期和产量性状可能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84f1/4209109/5f83e5335d89/122_2014_2395_Fig1_HTML.jpg

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