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Detection of QTLs for white-back and basal-white grains caused by high temperature during ripening period in japonica rice

机译:粳稻成熟期高温引起的白背和基白色谷粒QTL的检测

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摘要

There is increasing evidence that global warming affects the development of rice. High temperatures during ripening increase the ratio of undesirable chalky grains followed by deteriorating grain appearance quality. In order to detect quantitative trait loci (QTLs) controlling the occurrence of white-back and basal-white chalky grains of brown rice, QTL analysis was performed using recombinant inbred lines derived from a cross between two strains, ‘Tsukushiroman’ (sensitive to heat stress) and ‘Chikushi 52’ (tolerant of heat stress). The F7 and F8 lines were exposed to heat stress during the ripening period in two locations, Fukuoka and Kagoshima, in Japan. QTLs for white-back grains and basal-white grains were detected on chromosomes 1, 3, and 8, and those for basal-white grains were detected on chromosomes 2, 3, and 12. QTLs on chromosome 8 for white-back grains were shared in the plants grown in both locations. Near-isogenic lines (NILs), which harbored a segment from ‘Chikushi 52’ on chromosome 8 with the genetic background of ‘Tsukushiroman’, showed relatively lower ratios of white-back grains than ‘Tsukushiroman’. Therefore, insertion of the ‘Chikushi 52’ genomic region of the QTL on chromosome 8 can improve the quality of rice when it is grown under heat stress conditions.
机译:越来越多的证据表明,全球变暖影响水稻的发展。在熟化过程中的高温会增加不希望有的白垩颗粒的比例,进而降低颗粒外观质量。为了检测控制糙米白背和基白垩白粉粒发生的定量性状位点(QTL),使用源自两个菌株``Tsukushiroman''(对热敏感)之间的杂交的重组自交系进行了QTL分析应力)和“ Chikushi 52”(耐热应力)。在成熟期,日本福冈和鹿儿岛两个地区的F7和F8线都暴露于热应力之下。在1号,3号和8号染色体上检测到了白背谷物和基底白粒的QTL,在2号,3号和12号染色体上检测了白底谷物的QTL。在两个地方生长的植物中共享。近等基因系(NILs)的第8号染色体上的“ Chikushi 52”具有一个片段,其遗传背景为“ Tsukushiroman”,其白背谷物的比率要低于“ Tsukushiroman”。因此,在热应激条件下种植水稻时,在8号染色体上插入QTL的'Chikushi 52'基因组区域可以提高水稻的品质。

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