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Mapping of Novel QTL Regulating Grain Shattering Using Doubled Haploid Population in Rice (Oryza sativa L.)

机译:利用水稻单倍体群体双倍调控谷粒破碎的QTL定位

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摘要

The critical evolutionary step during domestication of major cereals was elimination of seed shattering because the easy-to-shatter trait in wild relatives results in a severe reduction in yield. In this study, we analyzed the QTLs associated with shattering employing a high-density genetic map in doubled haploid (DH) population of rice (Oryza sativa L.). A genetic linkage map was generated with 217 microsatellite markers spanning 2082.4 cM and covering 12 rice chromosomes with an average interval of 9.6 cM between markers based on 120 DHLs derived from a cross between Cheongcheong indica type cultivar and Nagdong japonica type cultivar. In the QTL analysis, five QTLs pertaining to the breaking tensile strength (BTS) were detected in 2013 and 2015. Two regions of the QTLs related to BTS on chromosome 1 and chromosome 6 were detected. Several important genes are distributed in 1 Mbp region of the QTL on chromosome 6 and they are related to the formation of abscission layer. We decide to name this QTL qSh6 and the candidate genes in the qSh6 region can be employed usefully in further research for cloning.
机译:在主要谷物驯化过程中,关键的进化步骤是消除种子破碎,因为野生近缘种易于破碎的性状导致产量严重下降。在这项研究中,我们使用高密度遗传图谱分析了水稻(Oryza sativa L.)的双倍单倍体(DH)群体中与破碎相关的QTL。基于昌清in型与南东粳型杂交后代的120个DHL,利用217个微卫星标记,跨越2082.4?cM,覆盖12条水稻染色体,标记间平均间隔为9.6?cM,绘制了遗传连锁图。在QTL分析中,在2013年和2015年检测到五个与断裂抗张强度(BTS)相关的QTL。在QTL的两个区域中分别检测到1号和6号染色体上的BTS。一些重要的基因分布在6号染色体上QTL的1 Mbp区域,它们与脱落层的形成有关。我们决定将其命名为QTL qSh6,qSh6区域中的候选基因可用于进一步的克隆研究。

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