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Genetic dissection and pyramiding of quantitative traits for panicle architecture by using chromosomal segment substitution lines in rice

机译:水稻染色体片段代换系对穗构型的遗传解剖和数量性状的金字塔分析

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摘要

To understand the genetic basis of yield-related traits of rice, we developed 39 chromosome segment substitution lines (CSSLs) from a cross between an average-yielding japonica cultivar, Sasanishiki, as the recurrent parent and a high-yielding indica cultivar, Habataki, as the donor. Five morphological components of panicle architecture in the CSSLs were evaluated in 2 years, and 38 quantitative trait loci (QTLs) distributed on 11 chromosomes were detected. The additive effect of each QTL was relatively small, suggesting that none of the QTLs could explain much of the phenotypic difference in sink size between Sasanishiki and Habataki. We developed nearly isogenic lines for two major QTLs, qSBN1 (for secondary branch number on chromosome 1) and qPBN6 (for primary branch number on chromosome 6), and a line containing both. Phenotypic analysis of these lines revealed that qSBN1 and qPBN6 contributed independently to sink size and that the combined line produced more spikelets. This suggests that the cumulative effects of QTLs distributed throughout the genome form the major genetic basis of panicle architecture in rice.
机译:为了了解水稻与产量相关性状的遗传基础,我们从作为普通亲本的普通粳稻品种Sasanishiki和高产in稻Habataki的杂交中开发了39条染色体片段替换系(CSSL),作为捐助者。在2年中评估了CSSLs穗结构的五个形态学成分,并检测到分布在11个染色体上的38个数量性状基因座(QTL)。每个QTL的累加作用相对较小,这表明QTL不能解释Sasanishiki和Habataki之间的汇大小差异的很多表型差异。我们开发了两个主要QTL的近等基因系,即qSBN1(对于1号染色体上的二级分支号)和qPBN6(对于6号染色体上的一级分支号),以及包含这两个QTL的品系。对这些品系的表型分析表明,qSBN1和qPBN6对水槽大小独立起作用,并且组合品系产生更多的小穗。这表明分布在整个基因组中的QTL的累积效应构成了水稻穗构型的主要遗传基础。

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