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首页> 外文期刊>Breeding science >Identification of quantitative trait loci for rice grain quality and yield-related traits in two closely related Oryza sativa L. subsp japonica cultivars grown near the northernmost limit for rice paddy cultivation
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Identification of quantitative trait loci for rice grain quality and yield-related traits in two closely related Oryza sativa L. subsp japonica cultivars grown near the northernmost limit for rice paddy cultivation

机译:两种密切相关的玉米液体质量和产量相关性状的定量特性鉴定鉴定稻米栽培北部最北端的秋季粳稻粳稻品种

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摘要

Quantitative trait loci (QTLs) associated with eating quality, grain appearance quality and yield-related traits were mapped in recombinant inbred lines (RILs) derived from closely related rice (Oryza sativa L. subsp. japonica) cultivars, Yukihikari (good eating quality) and Joiku462 (superior eating quality and high grain appearance quality). Apparent amylose content (AAC), protein content (PC), brown grain length (BGL), brown grain width (BGWI), brown grain thickness (BGT), brown grain weight per plant (BGW) and nine yield-related traits were evaluated in 133 RILs grown in four different environments in Hokkaido, near the northernmost limit for rice paddy cultivation. Using 178 molecular markers, a total of 72 QTLs were detected, including three for AAC, eight for PC, two for BGL, four for BGWI, seven for BGT, and six for BGW, on chromosomes 1, 2, 3, 4, 6, 7, 8, 9, 11 and 12. Fifteen intervals were found to harbor multiple QTLs affecting these different traits, with most of these QTL clusters located on chromosomes 4, 6, 8, 9 and 12. These QTL findings should facilitate gene isolation and breeding application for improvement of eating quality, grain appearance quality and yield of rice cultivars.
机译:与食用质量,谷物外观和产量相关的特征相关的定量特质基因座(QTLS)映射来自密切相关的水稻(Oryza Sativa L. subsp.japonica)品种,Yukihikari(良好的吃质量)和Joiku462(优越的食用质量和高颗粒外观质量)。表观直链淀粉含量(AAC),蛋白质含量(PC),棕色粒度(BG1),棕色粒度宽度(BGWI),棕色粒度厚度(BGT),每株植物(BGW)和9个产量相关的性状在北海道四种不同环境中长大的133个rils,靠近稻田栽培的最北端。使用178个分子标记,每次检测到72个QTL,包括三个用于AAC,八个用于PC,2个用于BGG,BGW的四个,BGT为七,BGW为六个,染色体1,2,3,4,6将发现,7,8,9,11和12.发现十五个间隔含有影响这些不同特征的多个QTL,其中大多数位于染色体4,6,8,9和12上的这些QTL簇。这些QTL结果应促进基因分离提高饮食质量,水稻品种产量和产量的育种应用。

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