首页> 外文期刊>TAG Theoretical and Applied Genetics >Fine mapping and candidate gene analysis of spd6, responsible for small panicle and dwarfness in wild rice (Oryza rufipogon Griff.)
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Fine mapping and candidate gene analysis of spd6, responsible for small panicle and dwarfness in wild rice (Oryza rufipogon Griff.)

机译:spd6的精细定位和候选基因分析,负责野生稻的小穗和矮化(Oryza rufipogon Griff。)

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摘要

Identification of genes in rice that affect production and quality is necessary for improving the critical global food source. CSSL58, a chromosome segment substitution line (CSSL) containing a chromosome segment of Oryza rufipogon in the genetic background of the indica cultivar Teqing showed significantly smaller panicles, fewer grains per panicle, smaller grains and dwarfness compared with the recurrent parent Teqing. Genetic analysis of the BC4F1 and BC4F2 generations, derived from a cross between CSSL58 and Teqing, showed that these traits are controlled by the recessive gene spd6, which mapped to the short arm of chromosome 6. Fine mapping and high-resolution linkage analysis using 24,120 BC4F3 plants and markers flanking spd6 were carried out, and the gene was localized to a 22.4 kb region that contains four annotated genes according to the genome sequence of japonica Nipponbare. Phenotypic evaluation of the nearly isogenic line NIL(spd6) revealed that spd6 from wild rice has pleiotropic effects on panicle number per plant, grain size, grain weight, grain number per panicle and plant height, suggesting that this gene might play an important role in the domestication of rice. The discovery of spd6 may ultimately be useful for the design and breeding of crops with high grain yield and quality.
机译:鉴定影响生产和质量的稻米基因对于改善关键的全球食品来源是必要的。与轮回亲本特清相比,CSSL58是一种在segment稻特庆遗传背景中包含米红麦的染色体段的染色体段替代品系(CSSL),显示出显着较小的圆锥花序,每圆锥粒更少的籽粒,更小的谷物和矮化。 BC 4 F 1 和BC 4 F 2 世代的遗传分析,源自CSSL58与Teqing指出,这些性状受隐性基因spd6的控制,该隐性基因定位于6号染色体的短臂。使用24,120 BC 4 F 3 进行精细定位和高分辨率连锁分析。进行了侧翼为spd6的植物和标记,根据日本粳稻的基因组序列,将该基因定位在一个22.4 kb的区域中,该区域包含4个带注释的基因。对近等基因系NIL(spd6)的表型评估表明,野生稻中的spd6对单株穗数,粒大小,粒重,单穗粒数和株高有多效性作用,表明该基因可能在水稻中发挥重要作用。大米的驯化。 spd6的发现最终可用于设计和育种具有高谷物产量和品质的农作物。

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