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Developing gene-tagged molecular markers for functional analysis of starch-synthesizing genes in rice (Oryza sativa L.)

机译:开发用于水稻中淀粉合成基因功能分析的基因标记分子标记

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The granule-bound starch synthase(GBSS), starch branching enzymes 1 (SBE1)and 3 (SBE3) are major enzymes involved in starch biosynthesis in rice endosperm. Available sequences of Sbe1 and Sbe3 genes encoding corresponding SBE1 and SBE3 have been used to identify homologous regions from genome databases of both the indica rice 93-11 and the japonica rice Nipponbare. Sequence diversities were exploited to develop gene-tagged markers to distinguish an indica allele from a japonica allele for both Sbe1 and Sbe3 loci. With these newly developed gene-tagged markers and available Wx gene markers, the roles of these starch-synthesizing genes (Sbe1, Sbe3, and Wx) in determining amylose content (AC) in the rice endosperm were evaluated using a double-haploid (DH)population derived from a cross between the indica rice cv. Nanjing11 and the japonica rice cv. Balilla. Only the Wx and Sbe3 loci had significant effects on the AC variation. On average, indica Wx a genotypes showed ∼9.1% higher AC than japonica Wx b genotypes, while indica Sbe3 a genotypes showed ∼1.0% lower AC than japonica Sbe3 b genotypes. A significant interaction was also observed between Wx and Sbe3 loci whereby the amylose content was 0.3% higher in Sbe3 a than Sbe3 b genotypes in the presence of the Wx a allele, but it was lower by 2.3% in the presence of the Wx b allele. Overall, polymorphisms at the Wx and Sbe3 loci together could account for 79.1% of the observed AC variation in the DH population. The use of gene-tagged markers in marker-assisted selection and gene functional analysis was also discussed.
机译:颗粒结合的淀粉合酶(GBSS),淀粉分支酶1(SBE1)和3(SBE3)是水稻胚乳淀粉合成的主要酶。编码相应的SBE1和SBE3的Sbe1和Sbe3基因的可用序列已用于从from稻93-11和粳稻Nipponbare的基因组数据库中鉴定同源区域。利用序列多样性来开发基因标记的标记物,以区分Sbe1和Sbe3基因座的d等位基因与粳型等位基因。使用这些新开发的带有基因标签的标记和可用的Wx基因标记,使用双单倍体(DH)评估了这些淀粉合成基因(Sbe1,Sbe3和Wx)在确定稻胚乳中直链淀粉含量(AC)中的作用。 )来自c稻简历之间的杂交。南京11和粳稻简历。巴利利亚。只有Wx和Sbe3基因座对AC变化有显着影响。平均而言,in型Wx a 基因型的AC比粳型Wx b 高9.1%,而S型Sbe3 a 基因型的AC比粳型Sbe3 b 低1.0%。基因型。在Wx a等位基因存在的情况下,Wx和Sbe3基因座之间也观察到显着的相互作用,其中Sbe3 a 基因型的直链淀粉含量比Sbe3 b 基因型高0.3%,但Wx b 等位基因的存在降低了2.3%。总体而言,Wx和Sbe3位点的多态性合起来可占DH群体中观察到的AC变化的79.1%。还讨论了在标记辅助选择和基因功能分析中使用基因标记的标记。

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