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QTL-seq identifies cooked grain elongation QTLs near soluble starch synthase and starch branching enzymes in rice (Oryza sativa L.)

机译:QTL-seq可鉴定水稻(Oryza sativa L.)中可溶性淀粉合酶和淀粉分支酶附近的蒸煮谷物伸长QTL

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摘要

Grain quality is one of the main targets that rice breeders focus on to improve elite rice varieties. Several characteristics are considered when determine rice grain quality, such as aroma, amylose content (AC), gelatinization temperature (GT) and, especially, lengthwise grain elongation (GE). GE is a desirable feature in premium rice of high quality, such as India and Pakistan’ Basmati. Inheritance of GE in rice has not been clearly elucidated due to its complex and inconsistent pattern. In this study, we identified QTLs for GE in rice using bulk-segregant analysis (BSA) and whole-genome sequencing based on an F2 population segregated for GE as well as AC and GT. We identified two QTLs on chromosome 6, qGE6.1 and qGE6.2, and another QTL on chromosome 4, qGE4.1. qGE6.1 and qGE6.2 were located near starch synthase IIa (SSIIa) and starch branching enzyme III (SBEIII), respectively, and qGE4.1 was located near starch branching enzyme IIa (SBEIIa). qGE6.1 was considered to be the major QTL for GE based on this population, and SSIIa was suggested to be the best candidate gene associated with the GE trait. The results of this study may be useful for breeding rice with increased grain elongation and different starch properties.
机译:谷物质量是稻米育种者致力于改善优质稻米品种的主要目标之一。确定稻米品质时要考虑几个特征,例如香气,直链淀粉含量(AC),糊化温度(GT),尤其是纵向谷物伸长率(GE)。在印度和巴基斯坦的印度大米等优质优质大米中,GE是理想的功能。由于其复杂和不一致的模式,尚未明确阐明GE在水稻中的遗传。在这项研究中,我们使用大分子分离分析(BSA)和基于全基因组F2群体以及AC和GT的全基因组测序,鉴定了水稻中GE的QTL。我们在6号染色体qGE6.1和qGE6.2上鉴定了两个QTL,在4号染色体qGE4.1上鉴定了另一个QTL。 qGE6.1和qGE6.2分别位于淀粉合酶IIa(SSIIa)和淀粉分支酶III(SBEIII)附近,而qGE4.1则位于淀粉分支酶IIa(SBEIIa)附近。基于该种群,qGE6.1被认为是GE的主要QTL,SSIIa被认为是与GE性状相关的最佳候选基因。这项研究的结果可能对育种具有增加的谷物伸长率和不同的淀粉特性的水稻有用。

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