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Exploitation of heterosis loci for yield and yield components in rice using chromosome segment substitution lines

机译:利用染色体片段代换系开发水稻产量及产量构成杂种优势位点。

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摘要

We constructed 128 chromosome segment substitution lines (CSSLs), derived from a cross between indica rice (Oryza sativa L.) 9311 and japonica rice Nipponbare, to investigate the genetic mechanism of heterosis. Three photo-thermo-sensitive-genic male sterile lines (Guangzhan63-4s, 036s, and Lian99s) were selected to cross with each CSSL to produce testcross populations (TCs). Field experiments were carried out in 2009, 2011, and 2015 to evaluate yield and yield-related traits in the CSSLs and TCs. Four traits (plant height, spikelet per panicle, thousand-grain weight, and grain yield per plant) were significantly related between CSSLs and TCs. In the TCs, plant height, panicle length, seed setting rate, thousand-grain weight, and grain yield per plant showed partial dominance, indicating that dominance largely contributes to heterosis of these five traits. While overdominance may be more important for heterosis of panicles per plant and spikelet per panicle. Based on the bin-maps of CSSLs and TCs, we detected 62 quantitative trait loci (QTLs) and 97 heterotic loci (HLs) using multiple linear regression analyses. Some of these loci were clustered together. The identification of QTLs and HLs for yield and yield-related traits provide useful information for hybrid rice breeding, and help to uncover the genetic basis of rice heterosis.
机译:我们构建了128稻(Oryza sativa L.)9311和粳稻Nipponbare杂交获得的128条染色体片段替代系(CSSLs),以研究杂种优势的遗传机制。选择三个具有光热敏性的雄性不育系(Guangzhan63-4s,036s和Lian99s)与每个CSSL杂交以产生测试杂交种群(TCs)。 2009年,2011年和2015年进行了田间试验,以评估CSSL和TC中的产量和与产量相关的性状。 CSSLs和TCs之间有四个性状(株高,穗小穗,千粒重和单株籽粒产量)显着相关。在TCs中,株高,穗长,结实率,千粒重和单株籽粒产量显示出部分优势,表明优势在很大程度上促进了这五个性状的杂种优势。虽然优势对于单株穗和每穗小穗的杂种优势可能更为重要。基于CSSL和TC的二进位图,我们使用多元线性回归分析检测到62个数量性状基因座(QTL)和97个杂种基因座(HLs)。这些基因座中的一些聚集在一起。对产量和产量相关性状的QTL和HLs的鉴定为杂交水稻育种提供了有用的信息,并有助于揭示水稻杂种优势的遗传基础。

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