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Dynamic Quantitative Trait Locus Analysis of Seed Vigor at Three Maturity Stages in Rice

机译:水稻三个成熟期种子活力的动态数量性状位点分析

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摘要

Seed vigor is an important characteristic of seed quality. In this study, one rice population of recombinant inbred lines (RILs) was used to determine the genetic characteristics of seed vigor, including the germination potential, germination rate, germination index and time for 50% of germination, at 4 (early), 5 (middle) and 6 weeks (late) after heading in two years. A total of 24 additive and 9 epistatic quantitative trait loci (QTL) for seed vigor were identified using QTL Cartographer and QTLNetwork program respectively in 2012; while 32 simple sequence repeat (SSR) markers associated with seed vigor were detected using bulked segregant analysis (BSA) in 2013. The additive, epistatic and QTL × development interaction effects regulated the dry maturity developmental process to improve seed vigor in rice. The phenotypic variation explained by each additive, epistatic QTL and QTL × development interaction ranged from 5.86 to 40.67%, 4.64 to 11.28% and 0.01 to 1.17%, respectively. The QTLs were rarely co-localized among the different maturity stages; more QTLs were expressed at the early maturity stage followed by the late and middle stages. Twenty additive QTLs were stably expressed in two years which might play important roles in establishment of seed vigor in different environments. By comparing chromosomal positions of these stably expressed additive QTLs with those previously identified, the regions of QTL for seed vigor are likely to coincide with QTL for grain size, low temperature germinability and seed dormancy; while 5 additive QTL might represent novel genes. Using four selected RILs, three cross combinations of seed vigor for the development of RIL populations were predicted; 19 elite alleles could be pyramided by each combination.
机译:种子活力是种子品质的重要特征。在这项研究中,使用一个水稻群体的重组自交系(RIL)确定种子活力的遗传特征,包括发芽势,发芽率,发芽指数和发芽50%的时间(4(早),5)两年后(中)和6周(晚)。 2012年,分别使用QTL Cartographer和QTLNetwork程序确定了24个用于种子活力的加性和9个上位性定量性状位点(QTL)。在2013年,通过大量分离分析(BSA)检测到32个与种子活力相关的简单重复序列(SSR)标记。加性,上位性和QTL×发育互作效应调节了水稻成熟期发育过程,提高了种子活力。由每种添加剂,上位QTL和QTL×发育相互作用解释的表型变异分别为5.86至40.67%,4.64至11.28%和0.01至1.17%。 QTL很少在不同的成熟阶段之间共定位。在早熟阶段表达更多的QTL,随后在中后期表达。在两年内稳定表达了20个加性QTL,这可能在不同环境下建立种子活力中发挥重要作用。通过将这些稳定表达的添加QTL的染色体位置与先前鉴定的QTL进行比较,发现种子活力的QTL区域可能与晶粒大小,低温发芽性和种子休眠的QTL一致;而5个附加QTL可能代表新基因。使用四个选定的RIL,预测了用于RIL种群发展的三种种子活力交叉组合。每个组合可以将19个等位基因金字塔化。

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