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Mapping quantitative trait loci for heat tolerance at anthesis in rice using chromosomal segment substitution lines

机译:利用染色体片段替代系定位水稻花期耐热性的数量性状位点。

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摘要

To study the genetic basis of heat tolerance at anthesis, a set of chromosome segment substitution lines (CSSLs) derived from Sasanishiki (japonica ssp. heat susceptible) and Habataki (indica spp. heat tolerant) were used for analysis across three high temperature environments. Spikelet fertility (SF), daily flowering time (DFT) and pollen shedding level (PSL) under high temperature (HT) were assessed. Eleven related QTLs were detected, of which, two QTLs qSF(ht)2 and qSF(ht)4.2 for spikelet fertility were identified on chromosomes 2 and 4. Four QTLs qDFT3, qDFT8, qDFT10.1 and qDFT11 for daily flowering time were detected on chromosomes 3, 8, 10 and 11. The other five QTLs qPSL(ht)1, qPSL(ht)4.1, qPSL(ht)5, qPSL(ht)7 and qPSL(ht)10.2 on chromosomes 1, 4, 5, 7 and 10, respectively, were found had effects both on spikelet fertility and pollen shedding level. Of the 11 QTLs, 8 were overlapped with QTLs reported by others, 3 QTLs qPSL(ht)4.1, qPSL(ht)7 and qPSL(ht)10.2 identified in this study were novel. The stability of qPSL(ht)4.1 was further verified at different temperatures, which could be used to improve the pollen shedding and pollen growth on stigma for rice heat-tolerance breeding.
机译:为了研究花期耐热性的遗传基础,使用了一组来自Sasanishiki(日本粳稻热敏感)和Habataki(印度稻耐热的)的染色体片段替代系(CSSL)进行了三个高温环境的分析。评估了小穗的繁殖力(SF),每日开花时间(DFT)和高温(HT)下的花粉脱落水平(PSL)。共检测到11个相关的QTL,其中在2号和4号染色体上鉴定了两个小穗育性的QTL qSF(ht)2和qSF(ht)4.2。检测到四个QTL,分别用于每日开花时间qDFT3,qDFT8,qDFT10.1和qDFT11。在3、8、10和11号染色体上。其他5个QTL在1、4、5号染色体上的qPSL(ht)1,qPSL(ht)4.1,qPSL(ht)5,qPSL(ht)7和qPSL(ht)10.2分别发现7和10对小穗繁殖力和花粉脱落水平都有影响。在11个QTL中,有8个与其他人报告的QTL重叠,在本研究中鉴定的3个QTL qPSL(ht)4.1,qPSL(ht)7和qPSL(ht)10.2是新颖的。进一步验证了qPSL(ht)4.1在不同温度下的稳定性,可用于改善水稻耐热育种的柱头花粉脱落和花粉生长。

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