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Genetic analysis and fine mapping of a semi-dwarf gene in a centromeric region in rice (Oryza sativa L.)

机译:水稻着丝粒区半矮基因的遗传分析和精细定位

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摘要

Superior plant architecture is a key means of enhancing yield potential in high yielding varieties. A newly identified recessive gene, named sd-c, controls plant height and tiller number. Genetic analysis of an F_2 population from a cross between thesemi-dwarf mutant and japonica cv. Houshengheng showed that the sd-c locus was flanked by SSR markers RM27877 and RM277 on chromosome 12. Thirty nine InDel markers were developed in the region and the sd-c gene was further mapped to a 1 cM centromeric region between InDel markers Cl 1 and C12. These sequenced markers can be used to distinguish wild type and mutants and thus can be used in marker-assisted selection. The sd-c mutant decreases culm length by about 26% and doubles the tiller number withoutchanging seed weight. Until now only sd-1 has been used in indica rice breeding programs. The sd-c mutant seems to have no undesirable pleiotropic effects and is therefore a potential genetic resource for breeding semi-dwarf indica rice cultivars.
机译:优良的植物结构是提高高产品种产量潜力的关键手段。一个新发现的隐性基因,名为sd-c,控制植物的高度和分till数。来自这些矮矮突变体和粳稻变异体杂交的F_2种群的遗传分析。侯胜衡表明,sd-c基因座的侧翼是12号染色体上的SSR标记RM27877和RM277。该区域发育了39个InDel标记,并且sd-c基因被进一步定位到InDel标记Cl 1和C 1与C 1着丝粒区域。 C12。这些测序的标记可用于区分野生型和突变体,因此可用于标记辅助选择。 sd-c突变体可将茎长缩短约26%,并使分er数增加一倍,而不会改变种子重量。到目前为止,in稻育种计划仅使用了sd-1。 sd-c突变体似乎没有不希望的多效作用,因此是培育半矮a稻品种的潜在遗传资源。

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