首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Functional markers developed from multiple loci in GS3 for fine marker-assisted selection of grain length in rice
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Functional markers developed from multiple loci in GS3 for fine marker-assisted selection of grain length in rice

机译:从GS3中的多个基因座开发的功能标记,用于精细标记辅助选择水稻的籽粒长度

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The gene GS3 has major effect on grain size and plays an important role in rice breeding. The C to A mutation in the second exon of GS3 was reported to be functionally associated with enhanced grain length in rice. In the present study, besides the C-A mutation at locus SF28, three novel polymorphic loci, SR17, RGS1, and RGS2, were discovered in the second intron, the last intron and the final exon of GS3, respectively. A number of alleles at these four polymorphic loci were observed in a total of 287 accessions including Chinese rice varieties (Oryza sativa), African cultivated rice (O. glaberrima) and AA-genome wild relatives. The haplotype analysis revealed that the simple sequence repeats (AT)(n) at RGS1 and (TCC)(n) at RGS2 had differentiated in the wild rice whilst the C-A mutation occurred in the cultivated rice recently during domestication. It also indicated that A allele at SF28 was highly associated with long rice grain whilst various motifs of (AT)(n) at RGS1 and (TCC)(n) at RGS2 were mainly associated with medium to short grain in Chinese rice. The C-A mutation at SF28 explained 33.4% of the grain length variation in the whole rice population tested in this study, whereas (AT)(n) at RGS1 and (TCC)(n) at RGS2 explained 26.4 and 26.2% of the variation, respectively. These results would be helpful for better understanding domestication of GS3 and its manipulation for grain size in rice. The genic marker RGS1 based on the motifs (AT)(n) was further validated as a functional marker using two sets of backcross recombinant inbred lines. These results suggested that the functional markers developed from four different loci within GS3 could be used for fine marker-assisted selection of grain length in rice breeding.
机译:GS3基因对谷物大小有重要影响,在水稻育种中起着重要作用。据报道,GS3第二个外显子中的C到A突变与水稻的籽粒长度增加在功能上相关。在本研究中,除了在基因座SF28发生C-A突变外,在GS3的第二个内含子,最后一个内含子和最后一个外显子中分别发现了三个新的多态性基因座SR17,RGS1和RGS2。在总共287个种质中观察到了这4个多态性位点的许多等位基因,包括中国水稻变种(Oryza sativa),非洲栽培水稻(O. glaberrima)和AA基因组野生近缘种。单倍型分析显示,在野生稻中,RGS1的简单序列重复(AT)(n)和RGS2的(TCC)(n)在野生稻中已经分化,而最近在驯化过程中在栽培稻中发生了C-A突变。这也表明SF28的一个等位基因与长稻米高度相关,而RGS1的(AT)(n)和RGS2的(TCC)(n)的各种基序主要与中国水稻的中短粒相关。在这项研究中,SF28的CA突变解释了整个水稻群体中33.4%的谷粒长度变异,而RGS1的(AT)(n)和RGS2的(TCC)(n)解释了26.4和26.2%的变异,分别。这些结果将有助于更好地了解GS3的驯化及其对水稻籽粒大小的调控。使用两组回交重组自交系进一步验证了基于基序(AT)(n)的基因标记RGS1作为功能标记。这些结果表明,从GS3内四个不同基因座开发的功能标记可用于水稻育种中优良标记辅助选择籽粒长度。

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