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鉴定和分析控制水稻生殖阶段耐冷性的 QTL,并在耐冷基因型中验证有效 QTL。

Identification and analysis of QTLs controlling cold tolerance at the reproductive stage and validation of effective QTLs in cold-tolerant genotypes of rice (Oryza sativa L.).

机构信息

IRRI-Korea Office, National Institute of Crop Science, RDA, 209 Seodun-Dong, Suwon, 441-857, Republic of Korea.

出版信息

Theor Appl Genet. 2010 Mar;120(5):985-95. doi: 10.1007/s00122-009-1226-8. Epub 2009 Dec 10.

DOI:10.1007/s00122-009-1226-8
PMID:20012263
Abstract

Low temperature or cold stress is one of the major constraints of rice production and productivity in temperate rice-growing countries and high-altitude areas in the tropics. Even though low temperature affects the rice plant in all stages of growth, the percent seed set is damaged severely by cold and this reduces the yield potential of cultivars significantly. In this study, a new source of cold-tolerant line, IR66160-121-4-4-2, was used as a donor parent with a cold-sensitive cultivar, Geumobyeo, to produce 153 F(8) recombinant inbred lines (RILs) for quantitative trait locus (QTL) analysis. QTL analysis with 175 polymorphic simple sequence repeat (SSR) markers and composite interval mapping identified three main-effect QTLs (qPSST-3, qPSST-7, and qPSST-9) on chromosomes 3, 7, and 9. The SSR markers RM569, RM1377, and RM24545 were linked to the identified QTLs for cold tolerance with respect to percent seed set using cold-water (18-19 degrees C) irrigation in the field and controlled air temperature (17 degrees C) in the greenhouse. The total phenotypic variation for cold tolerance contributed by the three QTLs was 27.4%. RILs with high percent seed set under cold stress were validated with linked DNA markers and by haplotype analysis that revealed the contribution of progenitor genomes from the tropical japonica cultivar Jimbrug (Javanica) and temperate japonica cultivar Shen-Nung89-366. Three QTLs contributed by the cold-tolerant parent were identified which showed additive effect on percent seed set under cold treatment. This study demonstrated the utility of a new phenotyping method as well as the identification of SSR markers associated with QTLs for selection of cold-tolerant genotypes to improve temperate rice production.

摘要

低温或冷胁迫是温带国家和热带高海拔地区水稻生产和生产力的主要限制因素之一。尽管低温会影响水稻生长的各个阶段,但种子结实率受到寒冷的严重破坏,这显著降低了品种的产量潜力。在这项研究中,一个新的耐冷品系 IR66160-121-4-4-2 被用作供体亲本,与一个冷敏感品种 Geumobyeo 一起,产生了 153 个 F(8)重组自交系(RIL),用于数量性状基因座(QTL)分析。利用 175 个多态性简单序列重复(SSR)标记和复合区间作图对 153 个 F(8) RILs 进行 QTL 分析,在第 3、7 和 9 染色体上鉴定出三个主效 QTL(qPSST-3、qPSST-7 和 qPSST-9)。在田间用冷水(18-19°C)灌溉和温室中控制空气温度(17°C)的条件下,利用 SSR 标记 RM569、RM1377 和 RM24545,将与种子结实率相关的冷耐性鉴定为与三个 QTL 相关的标记。三个 QTL 对冷耐性的总表型变异贡献为 27.4%。利用连锁 DNA 标记和单倍型分析对在冷胁迫下具有高结实率的 RILs 进行了验证,结果表明,热带粳稻品种 Jimbrug(爪哇)和温带粳稻品种 Shen-Nung89-366 的亲本组贡献了三个 QTL。鉴定出三个来自耐冷亲本的 QTL,它们在冷处理下对种子结实率表现出累加效应。本研究证明了一种新的表型鉴定方法的有效性,以及与 QTL 相关的 SSR 标记的鉴定,用于选择耐冷基因型,以提高温带水稻生产。

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