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A causal C–A mutation in the second exon of GS3 highly associated with rice grain length and validated as a functional marker

机译:GS3第二个外显子中的因果C–A突变与水稻籽粒长度高度相关,并已被确认为功能标记

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Comparative sequencing of GS3, the most important grain length (GL) QTL, has shown that differentiation of rice GL might be principally due to a single nucleotide polymorphism (SNP) between C and A in the second exon. A total of 180 varieties representing a wide range of rice germplasm were used for association analysis between C–A mutation and GL in order to confirm the potential causal mutation. A cleaved amplified polymorphic sequence (CAPS) marker, SF28, was developed based on the C–A polymorphism in the GS3 gene. A total of 142 varieties carried allele C with GL from 6.4 to 8.8 mm, while the remaining 38 varieties carried allele A with GL from 8.8 to 10.7 mm. Twenty-four unlinked SSR markers were selected to genotype 180 varieties for population structure analysis. Population structure was observed when the population was classified to three subpopulations. Average GL of either genotype A or genotype C within japonica among the three subpopulations had no significant difference from that in indica, respectively, although indica rice had longer grains on average than japonica in the 180 varieties. However, genotype C always had longer grain length on average than genotype A among three subpopulations. The mutation could explain 79.1, 66.4 and 34.7% of GL variation in the three subpopulations, respectively. These results clearly confirmed the mutation between C and A was highly associated with GL. The SF28 could be a functional marker for improvement of rice grain length.
机译:GS3是最重要的粒长(GL)QTL的比较测序表明,水稻GL的分化可能主要归因于第二个外显子C与A之间的单核苷酸多态性(SNP)。为了确认潜在的因果突变,总共使用了代表广泛水稻种质的180个变种进行C–A突变与GL之间的关联分析。基于GS3基因的CA–A多态性,开发了一个裂解的扩增多态序列(CAPS)标记SF28。共有142个变种带有GL的等位基因C从6.4到8.8毫米,而其余38个变种带有GL的等位基因A从8.8到10.7毫米。选择二十四个未连锁的SSR标记基因型180个品种进行种群结构分析。当人口分为三个亚群时,观察到了人口结构。在三个亚群中,粳稻中A基因型或C基因型的平均GL分别与no稻无显着差异,尽管在180个品种中rice稻的平均谷粒长于粳稻。然而,在三个亚种群中,基因型C的平均晶粒长度始终比基因型A长。该突变可以分别解释这三个亚群中GL的79.1、66.4和34.7%。这些结果清楚地证实了C和A之间的突变与GL高度相关。 SF28可能是改善水稻籽粒长度的功能标记。

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