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Microarray-assisted fine-mapping of quantitative trait loci for cold tolerance in rice.

机译:芯片辅助定量性状基因座的精细定位,用于水稻的耐冷性。

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摘要

Many important agronomic traits, including cold stress resistance, are complex and controlled by quantitative trait loci (QTLs). Isolation of these QTLs will greatly benefit the agricultural industry but it is a challenging task. This study explored an integrated strategy by combining microarray with QTL-mapping in order to identify cold-tolerant QTLs from a cold-tolerant variety IL112 at early-seedling stage. All the early seedlings of IL112 survived normally for 9 d at 4-5 degrees C, while Guichao2 (GC2), an indica cultivar, died after 4 d under the same conditions. Using the F2:3 population derived from the progeny of GC2 and IL112, we identified seven QTLs for cold tolerance. Furthermore, we performed Affymetrix rice whole-genome array hybridization and obtained the expression profiles of IL112 and GC2 under both low-temperature and normal conditions. Four genes were selected as cold QTL-related candidates, based on microarray data mining and QTL-mapping. One candidate gene, LOC_Os07g22494, was shown to be highly associated with cold tolerance in a number of rice varieties and in the F2:3 population, and its overexpression transgenic rice plants displayed strong tolerance to low temperature at early-seedling stage. The results indicated that overexpression of this gene (LOC_Os07g22494) could increase cold tolerance in rice seedlings. Therefore, this study provides a promising strategy for identifying candidate genes in defined QTL regions.
机译:许多重要的农艺性状(包括抗寒胁迫)很复杂,并受数量性状基因座(QTL)控制。隔离这些QTL将极大地有益于农业,但这是一项艰巨的任务。这项研究探索了将微阵列与QTL作图相结合的综合策略,以便从苗期早期的耐寒品种IL112中鉴定耐寒QTL。 IL112的所有早期幼苗均在4-5摄氏度下正常存活9 d,而Gui稻Guichao2(GC2)在相同条件下4 d后死亡。使用来自GC2和IL112后代的F 2:3 种群,我们鉴定了七个耐寒性QTL。此外,我们进行了Affymetrix水稻全基因组阵列杂交,并获得了在低温和正常条件下IL112和GC2的表达谱。基于微阵列数据挖掘和QTL映射,选择了四个基因作为与QTL相关的候选基因。在许多水稻品种和F 2:3 群体中,一个候选基因LOC_Os07g22494与耐寒性高度相关,其过表达转基因水稻植株在低温下表现出较强的耐低温性。早苗阶段。结果表明,该基因(LOC_Os07g22494)的过表达可以提高水稻幼苗的耐寒性。因此,这项研究提供了一种在确定的QTL区域鉴定候选基因的有前途的策略。

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