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基于图谱的克隆策略利用残余杂合系表明,GIGANTEA 基因参与大豆成熟和开花。

A map-based cloning strategy employing a residual heterozygous line reveals that the GIGANTEA gene is involved in soybean maturity and flowering.

机构信息

National Institute of Agrobiological Sciences, Tsukuba, Ibaraki, Japan.

出版信息

Genetics. 2011 Jun;188(2):395-407. doi: 10.1534/genetics.110.125062. Epub 2011 Mar 15.

Abstract

Flowering is indicative of the transition from vegetative to reproductive phase, a critical event in the life cycle of plants. In soybean (Glycine max), a flowering quantitative trait locus, FT2, corresponding to the maturity locus E2, was detected in recombinant inbred lines (RILs) derived from the varieties "Misuzudaizu" (ft2/ft2; JP28856) and "Moshidou Gong 503" (FT2/FT2; JP27603). A map-based cloning strategy using the progeny of a residual heterozygous line (RHL) from the RIL was employed to isolate the gene responsible for this quantitative trait locus. A GIGANTEA ortholog, GmGIa (Glyma10g36600), was identified as a candidate gene. A common premature stop codon at the 10th exon was present in the Misuzudaizu allele and in other near isogenic lines (NILs) originating from Harosoy (e2/e2; PI548573). Furthermore, a mutant line harboring another premature stop codon showed an earlier flowering phenotype than the original variety, Bay (E2/E2; PI553043). The e2/e2 genotype exhibited elevated expression of GmFT2a, one of the florigen genes that leads to early flowering. The effects of the E2 allele on flowering time were similar among NILs and constant under high (43°N) and middle (36°N) latitudinal regions in Japan. These results indicate that GmGIa is the gene responsible for the E2 locus and that a null mutation in GmGIa may contribute to the geographic adaptation of soybean.

摘要

开花是植物从营养生长到生殖生长转变的标志,是植物生命周期中的一个关键事件。在大豆(Glycine max)中,在源于品种“Misuzudaizu”(ft2/ft2;JP28856)和“Moshidou Gong 503”(FT2/FT2;JP27603)的重组自交系(RIL)中检测到一个与成熟基因座 E2 对应的开花数量性状位点 FT2。使用 RIL 中剩余杂合系(RHL)后代的基于图谱的克隆策略来分离负责这个数量性状位点的基因。一个 GIGANTEA 同源物,GmGIa(Glyma10g36600),被鉴定为候选基因。在 Misuzudaizu 等位基因和源自 Harosoy 的其他近等基因系(NIL)中存在第 10 外显子的一个常见提前终止密码子(e2/e2;PI548573)。此外,携带另一个提前终止密码子的突变体系表现出比原始品种 Bay(E2/E2;PI553043)更早的开花表型。e2/e2 基因型表现出 florigen 基因之一 GmFT2a 的表达升高,导致早期开花。E2 等位基因对开花时间的影响在 NIL 之间相似,并且在日本高(43°N)和中(36°N)纬度地区保持稳定。这些结果表明,GmGIa 是 E2 基因座的基因,并且 GmGIa 的无效突变可能有助于大豆的地理适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0202/3122305/201540f474ac/395fig1.jpg

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