首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Mapping and characterization of the major quantitative trait locus qSS7 associated with increased length and decreased width of rice seeds.
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Mapping and characterization of the major quantitative trait locus qSS7 associated with increased length and decreased width of rice seeds.

机译:主要定量性状基因座qSS7的定位和特征与水稻种子的长度增加和宽度减小有关。

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Seed shape in rice (Oryza sativa) is an important factor that determines grain appearance, cooking quality and grain yield. Here, we report a major quantitative trait locus qSS7 on the long arm of chromosome 7 for seed length, seed width and the ratio of seed length to width, identified using a segregating population derived from a cross between an indica variety Zhenshan97 and a chromosomal segment substitution line of a japonica variety Cypress within the genetic background of Zhenshan97. The Cypress allele at qSS7 contributes to an increase in seed length and the ratio of length to width, but a decrease in seed width, without significantly changing seed weight, plant height, heading date or number of spikelets per panicle. Using a large F2 population generated from a substitution line that carries only a heterozygous single segment surrounding qSS7, we delimited the QTL to a 23-kb region containing two annotated genes. Progeny testing of the informative recombinants suggested that this qSS7 region is a composite QTL in which at least two genes contribute to seed length and width. Sequence comparison and expression analysis of two probable candidate genes revealed differences between the parental lines. These results will facilitate cloning of the gene(s) underlying qSS7 as well as marker-assisted transfer of desirable genes for seed shape in rice improvement.
机译:水稻(Oryza sativa)的种子形状是决定谷物外观,蒸煮质量和谷物产量的重要因素。在这里,我们报道了一个主要的数量性状基因座qSS7,位于染色体7的长臂上,用于种子长度,种子宽度和种子长度与宽度的比率,使用来自an稻品种Zhenshan97和染色体片段之间杂交的隔离种群进行鉴定珍山97遗传背景下粳稻品种柏的替代品系。 qSS7处的赛普拉斯等位基因有助于增加种子长度和长宽比,但减少种子宽度,而不会显着改变种子重量,植物高度,抽穗期或每穗小穗数。使用从仅携带围绕qSS7的杂合单片段的替代系产生的大F 2 种群,我们将QTL限定为一个包含两个带注释基因的23kb区域。对信息丰富的重组子的后代测试表明,该qSS7区是一个复合QTL,其中至少两个基因有助于种子的长度和宽度。两个可能的候选基因的序列比较和表达分析揭示了亲本系之间的差异。这些结果将有助于克隆qSS7基因,并促进水稻改良种子形状的所需基因的标记辅助转移。

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