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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >QTL mapping of physiological traits at the booting stage in rice under low temperature combined with nitrogen fertilization
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QTL mapping of physiological traits at the booting stage in rice under low temperature combined with nitrogen fertilization

机译:低温氮肥配合下水稻孕穗期生理性状的QTL定位。

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摘要

Further dissection of physiological molecular mechanisms is indispensable to alleviate rice yield losses resulting from cold injury. By using 105 near-isogenic lines (NILs) derived from a backcross between cv. Lijiangxintuanheigu (LTH) and cv. Towada, we detected quantitative trait loci (QTLs) for physiological traits of the rice flag leaf, based on polymorphic simple sequence repeat (SSR) markers, inclusive composite interval mapping (ICIM), mixed composite interval mapping (MCIM) approaches and phenotypic value subjected to combine with cold-water stress and three nitrogen application rates. By using ICIM, a total of 34 QTLs with additive effects (A-QTLs) were identified on chromosomes 1, 3, 4, 5, 6, 7 and 10, and the phenotypic variation ( Rsup 2 /sup ) explained by each QTL ranged from 8.46 to 29.14%. By using MCIM, 20 A-QTLs and 14 pairs of QTLs with epistatic × environment interaction effects (Epistatic QTLs) were detected, the contribution of environment interaction (Hsup 2 /supAE) was 0.87 to 7.36%, while the contribution rates of E-QTL were from 0.97 to 3.58%. Fourteen A-QTLs were detected by ICIM and MCIM, which may serve as a basis for fine-mapping and candidate gene studies, and providing strategies for the development of cold-tolerant rice cultivars and nitrogen application to alleviate chilling stress.
机译:进一步解剖生理分子机制对于减轻因冷害而导致的水稻减产是必不可少的。通过使用105个来自等位基因之间回交的近等基因系(NIL)。 Lijiangxintuanheigu(LTH)和简历。十和田,基于多态简单序列重复(SSR)标记,包含性复合区间作图(ICIM),混合复合区间作图(MCIM)方法和受表型值影响,我们检测了水稻剑叶生理性状的数量性状位点(QTL)结合冷水胁迫和三个氮肥施用量。通过使用ICIM,在染色体1、3、4、5、6、7和10以及表型变异(R 2 )上共鉴定了34个具有加性效应的QTL(A-QTL)。每个QTL的解释范围为8.46%至29.14%。利用MCIM,检测到20个A-QTL和14对具有上位×环境互作效应的QTL,环境互作(H 2 AE)的贡献为0.87〜7.36%,而E-QTL的贡献率从0.97到3.58%。 ICIM和MCIM检测到14个A-QTL,可作为精细定位和候选基因研究的基础,并为开发耐寒水稻品种和施氮以缓解低温胁迫提供了策略。

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