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Detection and validation of QTLs for milky-white grains caused by high temperature during the ripening period in Japonica rice

机译:粳稻成熟期高温引起的乳白色谷粒QTL的检测与验证

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摘要

The occurrence of chalky rice (Oryza sativa L.) grains caused by high temperature is a serious problem in rice production. Of the several kinds of chalky grains, milky-white grains are not well analyzed. The milky-white rice grain phenomenon is caused by genetic factors as well as environmental and nutritional conditions. To analyze the genetic control system for rice grain quality, we raised recombinant inbred lines from progeny produced from ‘Tsukushiroman’ (high temperature sensitive) and ‘Chikushi 52’ (high temperature tolerant) cultivars. Quantitative trait locus (QTL) analysis revealed that the QTL on chromosome 4, linked to the simple sequence repeat marker RM16424, contributed substantially to the occurrence of milky-white grains, as it was detected over two experimental years. To validate the effect of the QTL, we developed near isogenic lines that have the ‘Chikushi 52’ segment on the short arm of chromosome 4 in the ‘Tsukushiroman’ genetic background, and that had a lower milky-white grain ratio than that of ‘Tsukushiroman’ when exposed to high temperatures during the ripening period. These results suggest that the ‘Chikushi 52’ allele on chromosome 4 suppresses the occurrence of milky-white grains and improves rice grain quality under heat stress during the grain ripening period.
机译:由高温引起的垩白米(Oryza sativa L.)谷物的出现是水稻生产中的严重问题。在几种垩白颗粒中,乳白色颗粒没有得到很好的分析。乳白色米粒现象是由遗传因素以及环境和营养条件引起的。为了分析水稻品质的遗传控制系统,我们从“ Tsukushiroman”(耐高温)和“ Chikushi 52”(耐高温)品种产生的后代中培育出了重组自交系。数量性状基因座(QTL)分析显示,与染色体上的简单序列重复标记RM16424连锁的第4号染色体上的QTL对乳白色谷物的发生起了重要作用,因为这是在两个实验年中检测到的。为了验证QTL的作用,我们开发了近等基因系,该系在'Tsukushiroman'遗传背景中的4号染色体的短臂上具有'Chikushi 52'区段,并且乳白色颗粒比低于'Tsukushiroman'。在成熟期间暴露于高温下的“ Tsukushiroman”。这些结果表明,第4号染色体上的“ Chikushi 52”等位基因抑制了乳白色谷物的出现,并改善了谷物成熟期在热胁迫下的稻米品质。

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