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Identification and characterization of a major QTL responsible for erect panicle trait in japonica rice (Oryza sativa L.)

机译:粳稻(Oryza sativa L.)主要的穗部性状的主要QTL的鉴定与鉴定

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摘要

Panicle erectness (PE) is one of the most important traits for high-yielding japonica cultivars. Although several cultivars with PE trait have been developed and released for commercial production in China, there is little information on the inheritance of PE traits in rice. In the present study, 69 widely cultivated japonica cultivars and a double haploid (DH) population derived from a cross between a PE cultivar (Wuyunjing 8) and a drooping panicle cultivar (Nongken 57) were utilized to elucidate the mechanisms of PE formation and to map PE associated genes. Our data suggested that panicle length (PL) and plant height (PH) significantly affected panicle curvature (PC), with shorter PL and PH resulting in smaller PC and consequently more erect. A putative major gene was identified on chromosome 9 by molecular markers and bulk segregant analysis in DH population. In order to finely map the major gene, all simple sequence repeats (SSR) markers on chromosome 9 as well as 100 newly developed sequence-tagged site (STS) markers were used to construct a linkage group for quantitative trait locus (QTL) mapping. A major QTL, qPE9-1, between STS marker H90 and SSR marker RM5652, was detected, and accounted for 41.72% of PC variation with pleiotropic effect on PH and PL. another QTL, qPE9-2, was also found to be adjacent to qPE9-1. In addition, we found that H90, the nearest marker to qPE9-1, used for genotyping 38 cultivars with extremely erect and drooping panicles, segregated in agreement with PC, suggesting the H90 product was possibly part of the qPE9-1 gene or closely related to it. These data demonstrated that H90 could be used for marker-aided selection for the PE trait in breeding and in the cloning of qPE9-1.
机译:穗直立性(PE)是高产粳稻品种最重要的性状之一。尽管在中国已经开发出多种具有PE特质的品种并投入商业生产,但关于水稻PE特质遗传的信息很少。在本研究中,利用69个广泛栽培的粳稻品种和一个双单倍体(DH)群体,从PE品种(Wuyunjing 8)与下垂圆锥花序品种(Nongken 57)的杂交中获悉,以阐明PE形成的机理并定位PE相关基因。我们的数据表明,穗长(PL)和株高(PH)显着影响穗曲率(PC),PL和PH越短,PC越小,因此直立越多。通过分子标记和DH群体中的大量分离子分析,在9号染色体上鉴定出一个推定的主要基因。为了精确定位主要基因,使用了9号染色体上的所有简单序列重复(SSR)标记以及100个新开发的序列标记位点(STS)标记来构建用于定量性状基因座(QTL)定位的连锁基团。检测到一个主要的QTL,qPE9-1,位于STS标记H90和SSR标记RM5652之间,占PC变异的41.72%,对PH和PL具有多效性。还发现另一个QTL qPE9-2与qPE9-1相邻。此外,我们发现与qPE9-1最接近的标记H90用于对38个具有极直立和下垂圆锥花序的品种进行基因分型,与PC分离,表明H90产物可能是qPE9-1基因的一部分或密切相关对它。这些数据表明,H90可用于在PE和PE的qPE9-1的克隆中进行PE性状的标记辅助选择。

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  • 来源
    《Theoretical and Applied Genetics》 |2007年第8期|1093-1100|共8页
  • 作者单位

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

    The Key Laboratory of Plant Functional Genomics Ministry of Education of China Yangzhou 225009 Jiangsu People’s Republic of China;

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