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首页> 外文期刊>Euphytica >Quantitative trait loci associated with seed set under high temperature stress at the flowering stage in rice (Oryza sativa L.)
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Quantitative trait loci associated with seed set under high temperature stress at the flowering stage in rice (Oryza sativa L.)

机译:水稻(Oryza sativa L.)开花期高温胁迫下与结实相关的数量性状基因座

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High temperature stress (HTS), an increasingly important problem in rice production, significantly reduces rice yield by reducing seed set percentage (SSP). Breeding rice varieties with tolerance to HTS at the flowering stage is therefore essential for maintaining rice production as the climate continues to warm. In this study, two quantitative trait loci (QTL) underlying tolerance to HTS were identified using the recombinant inbred lines (RILs) derived from a cross between the HTS-tolerant rice cultivar 996 and the sensitive cultivar 4628. SSP was used as the heat-tolerance indicator for the lines, which were subjected to HTS at the flowering stage in both field and growth chamber experiments. Two major QTL that affected SSP in both conditions were detected in the interval between RM5687 and RM471 on chromosome 4, and between RM6132 and RM6100 on chromosome 10. The QTL located on chromosome 4 explained 21.3% in field and 25.8% in growth chamber of the total phenotypic variation in SSP, and increased the SSP of plants subjected to HTS by 9.1% in field and by 9.3% in growth chamber. The second QTL located on chromosome 10 explained 11.5% in field and 11.6% in growth chamber of the total phenotypic variation in SSP, and increased the SSP of plants subjected to HTS by 7.2% in field and 7.0% in growth chamber. The positive additive effects of the two QTL were derived from the 996 alleles. The two major QTL identified in this study could be useful for further fine mapping and cloning of these genes and for molecular marker-aided breeding of heat-tolerant rice cultivars.
机译:高温胁迫(HTS)是水稻生产中日益重要的问题,它通过降低结实率(SSP)大大降低了水稻产量。因此,在气候持续变暖的情况下,在开花期育种对高温超导具有耐受性的水稻品种对于维持水稻产量至关重要。在这项研究中,通过使用耐HTS水稻品种996和敏感品种4628杂交得到的重组自交系(RIL),鉴定了对HTS耐受的两个数量性状基因座(QTL)。在田间试验和生长室试验中,在开花期进行高温超导的品系的耐性指标。在两个条件下都在两个条件下影响了SSP的两个主要QTL在染色体4的RM5687和RM471之间以及在染色体10的RM6132和RM6100之间被检测到。位于染色体4上的QTL解释了在田间的21.3%和生长室的25.8%。总的来说,SSP的表型发生了变化,并且使经受HTS处理的植物的SSP在田间增加了9.1%,在生长室中增加了9.3%。位于10号染色体上的第二个QTL解释了田间SSP总表型变异的11.5%田间和11.6%的生长室,使HTS植株的SSP在田间增加了7.2%,在生长室中增加了7.0%。两个QTL的正加和效应来自996个等位基因。这项研究中确定的两个主要QTL可能有助于进一步精细定位和克隆这些基因,以及用于耐热水稻品种的分子标记辅助育种。

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