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QTL architecture of vine growth habit and gibberellin oxidase gene diversity in wild soybean (Glycine soja)

机译:野生大豆藤蔓生长习性和赤霉素氧化酶基因多样性的QTL结构

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Vine growth habit (VGH) is a beneficial phenotype in many wild plants, and is considered an important domesticated-related trait in soybean. However, its genetic basis remains largely unclear. Hence, in the present study we used an integrated strategy combining linkage mapping and population genome diversity analyses to reveal the genetics of VGH in soybean. In this regard, two recombinant inbred line (RIL) populations derived by crossing a common wild soybean genotype (PI342618B) with two cultivated lines viz., NN 86-4 and NN 493-1 were used to map quantitative trait loci (QTL) for VGH. Here, we identified seven and five QTLs at flowering stage (R1) and maturity stage (R8), respectively, and among them qVGH-18-1, qVGH-18-2, qVGH-19-3, qVGH-19-4 were identified as major loci (Rsup2/sup??10% and detection time ≥2). However, qVGH-18-2 was considered as a main QTL for VGH being consistently identified in both RIL populations as well as all growth stages and cropping years. Out of all the annotated genes within qVGH-18-2, Glyma18g06870 was identified as the candidate gene and named as VGH1, which was a gibberellin oxidase (GAox) belongs to 2-oxoglutarate-dependent dioxygenase (2- ODD). Interestingly, there was one member of 2-ODD/GAox in qVGH-18-1 and qVGH-19-4 named as VGH2 and VGH3, respectively. Moreover, from sequencing data analysis VGH1 and three other GAox genes were found significantly divergent between vine and erect soybean with FsubST/sub value larger than 0.25. Hence, GAox was assumed to play a major role in governing inheritance of VGH in soybean. Therefore, elucidating the genetic mechanism of GAox is very useful for exploring VGH and other stem traits, as well as genetic improvement of plant type in soybean.
机译:藤本植物的生长习性(VGH)在许多野生植物中都是有益的表型,被认为是大豆中重要的驯化相关性状。但是,其遗传基础仍不清楚。因此,在本研究中,我们使用结合了连锁图谱和群体基因组多样性分析的综合策略来揭示大豆中VGH的遗传。在这方面,通过将一个普通野生大豆基因型(PI342618B)与两个栽培系NN 86-4和NN 493-1杂交而获得的两个重组近交系(RIL)种群用于绘制QTL的图VGH。在这里,我们分别鉴定了七个和五个在开花期(R1)和成熟期(R8)的QTL,其中qVGH-18-1,qVGH-18-2,qVGH-19-3,qVGH-19-4为被鉴定为主要基因座(R 2 ?>?10%,检测时间≥2)。然而,qVGH-18-2被认为是在RIL种群以及所有生长阶段和种植年限中均被连续发现的VGH的主要QTL。在qVGH-18-2内的所有注释基因中,Glyma18g06870被鉴定为候选基因并命名为VGH1,这是一种赤霉素氧化酶(GAox),属于2-氧戊二酸依赖性双加氧酶(2- ODD)。有趣的是,在qVGH-18-1和qVGH-19-4中有一个2-ODD / GAox成员,分别命名为VGH2和VGH3。此外,通过测序数据分析,发现VGH1和其他三个GAox基因在葡萄藤和直立大豆之间具有明显的差异,F ST 值大于0.25。因此,假定GAox在控制大豆中VGH的遗传中起主要作用。因此,阐明GAox的遗传机制对于探索VGH和其他茎部性状以及大豆植物类型的遗传改良非常有用。

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