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首页> 外文期刊>Scientific reports. >Characterization of glycerol-3-phosphate acyltransferase 9 ( AhGPAT9 ) genes, their allelic polymorphism and association with oil content in peanut ( Arachis hypogaea L.)
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Characterization of glycerol-3-phosphate acyltransferase 9 ( AhGPAT9 ) genes, their allelic polymorphism and association with oil content in peanut ( Arachis hypogaea L.)

机译:甘油-3-磷酸酰基转移酶9(AHGPAT9)基因的表征,它们的等位基因多态性和与花生含油含量的关系(Arachis Hypogaea L.)

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GPAT, the rate-limiting enzyme in triacylglycerol (TAG) synthesis, plays an important role in seed oil accumulation. In this study, two AhGPAT9 genes were individually cloned from the A- and B- genomes of peanut, which shared a similarity of 95.65%, with 165 site differences. The overexpression of AhGPAT9 or the knock-down of its gene expression increased or decreased the seed oil content, respectively. Allelic polymorphism analysis was conducted in 171 peanut germplasm, and 118 polymorphic sites in AhGPAT9A formed 64 haplotypes (a1 to a64), while 94 polymorphic sites in AhGPAT9B formed 75 haplotypes (b1 to b75). The haplotype analysis showed that a5, b57, b30 and b35 were elite haplotypes related to high oil content, whereas a7, a14, a48, b51 and b54 were low oil content types. Additionally, haplotype combinations a62/b10, a38/b31 and a43/b36 were associated with high oil content, but a9/b42 was a low oil content haplotype combination. The results will provide valuable clues for breeding new lines with higher seed oil content using hybrid polymerization of high-oil alleles of AhGPAT9A and AhGPAT9B genes.
机译:GPAT,三酰基甘油(标签)合成中的速率限制酶在种子油积累中起重要作用。在这项研究中,从花生的A-和B-基因组单独克隆两种AHGPAT9基因,其共用95.65%,具有165个位点差异。 AHGPAT9的过表达或其基因表达的倒闭分别增加或降低了种子油含量。等位基因多态性分析在171个花生种质中进行,AHGPAT9A中的118个多态性位点形成了64个单倍型(A1至A64),而AHGPAT9B中的94个多态性位点形成75单倍型(B1至B75)。单倍型分析表明,A5,B57,B30和B35是与高油含量相关的Elite单倍型,而A7,A14,A48,B51和B54是低油状物类型。另外,单倍型组合A62 / B10,A38 / B31和A43 / B36与高油含量相关,但A9 / B42是低油含量单倍型组合。结果将提供具有较高种子油含量的有价值的线索,采用高油等级的AHGPAT9A和AHGPAT9B基因的杂化聚合。

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