首页> 外文期刊>Breeding science >Construction and Evaluation of Chromosome Segment Substitution Lines Carrying Overlapping Chromosome Segments of indica Rice Cultivar 'Kasalath' in a Genetic Background of japonica Elite Cultivar 'Koshihikari'
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Construction and Evaluation of Chromosome Segment Substitution Lines Carrying Overlapping Chromosome Segments of indica Rice Cultivar 'Kasalath' in a Genetic Background of japonica Elite Cultivar 'Koshihikari'

机译:粳稻优良品种“越光”遗传背景中Car稻“ Kasalath”染色体重叠片段的染色体片段替代系的构建与评价

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摘要

To facilitate the genetic analysis of quantitative traits and the use of marker-assisted breeding in rice, we de-veloped a novel mapping population consisting of 39 chromosome segment substitution lines (CSSLs). In each line, a different chromosomal segment of the indica cultivar 'Kasalath' was substituted in the genetic background of the japonica cultivar 'Koshihikari' (Japanese elite cultivar). The substituted chromosome segments in the 39 CSSLs covered most of the genome, except for small regionsat the distal end of the short arm of chromosome 8 and at the distal end of the long arm of chromosome 12. To verify the potential advantages of quantitative trait locus (QTL) detection in these CSSLs, we used the CSSLs to locate QTLs for heading date under three different environmental conditions: a natural summer field in Tsukuba, Japan, long-day conditions (14,5-h light), and short-day conditions (10-h light) The results clearly demonstrated that the use of CSSLs enabled to identify a larger number of QTLs than did a BC_1F_3 population derived from the same cross combination. We examined several advantages of the use of CSSLs in terms of genetic analysis, molecular cloning of QTLs, and marker-assisted selection in rice breeding.
机译:为了促进水稻数量性状的遗传分析和标记辅助育种的应用,我们开发了由39个染色体片段替代系(CSSLs)组成的新型作图种群。在每条品系中,'粳品种“ Kasalath”的不同染色体片段被粳稻品种“越光”(日本优良品种)的遗传背景所替代。 39个CSSL中取代的染色体片段覆盖了大部分基因组,除了在8号染色体短臂的远端和在12号染色体长臂的远端的小区域之外。为了验证定量性状基因座的潜在优势(QTL)检测在这些CSSL中,我们使用CSSL在三种不同的环境条件下定位标题日期的QTL:日本筑波的自然夏田,长日条件(14,5-h光照)和短日条件(10 h光照)下,结果清楚地表明,与源自相同交叉组合的BC_1F_3群体相比,使用CSSL可以识别更多数量的QTL。我们在遗传分析,QTL的分子克隆和水稻育种的标记辅助选择方面检查了使用CSSL的几个优势。

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