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Artificial selection on GmOLEO1 contributes to the increase in seed oil during soybean domestication

机译:大豆驯化期间对GmOLEO1的人工选择有助于增加种子油

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摘要

Increasing seed oil content is one of the most important breeding goals for soybean due to a high global demand for edible vegetable oil. However, genetic improvement of seed oil content has been difficult in soybean because of the complexity of oil metabolism. Determining the major variants and molecular mechanisms conferring oil accumulation is critical for substantial oil enhancement in soybean and other oilseed crops. In this study, we evaluated the seed oil contents of 219 diverse soybean accessions across six different environments and dissected the underlying mechanism using a high-resolution genome-wide association study (GWAS). An environmentally stable quantitative trait locus (QTL), GqOil20, significantly associated with oil content was identified, accounting for 23.70% of the total phenotypic variance of seed oil across multiple environments. Haplotype and expression analyses indicate that an oleosin protein-encoding gene (GmOLEO1), colocated with a leading single nucleotide polymorphism (SNP) from the GWAS, was significantly correlated with seed oil content. GmOLEO1 is predominantly expressed during seed maturation, and GmOLEO1 is localized to accumulated oil bodies (OBs) in maturing seeds. Overexpression of GmOLEO1 significantly enriched smaller OBs and increased seed oil content by 10.6% compared with those of control seeds. A time-course transcriptomics analysis between transgenic and control soybeans indicated that GmOLEO1 positively enhanced oil accumulation by affecting triacylglycerol metabolism. Our results also showed that strong artificial selection had occurred in the promoter region of GmOLEO1, which resulted in its high expression in cultivated soybean relative to wild soybean, leading to increased seed oil accumulation. The GmOLEO1 locus may serve as a direct target for both genetic engineering and selection for soybean oil improvement.
机译:由于全球对食用植物油的大量需求,提高种子油含量是大豆最重要的育种目标之一。然而,由于油代谢的复杂性,大豆中种子油含量的遗传改良一直很困难。确定赋予油脂积累的主要变体和分子机制对于大幅提高大豆和其他油料作物的油脂至关重要。在这项研究中,我们评估了六个不同环境中219种不同大豆种质的种子油含量,并使用高分辨率全基因组关联研究(GWAS)剖析了其潜在机制。确定了与油含量显着相关的环境稳定的数量性状基因座(QTL)GqOil20,占多种环境中种子油总表型变异的23.70%。单倍型和表达分析表明,与来自GWAS的领先的单核苷酸多态性(SNP)并列的油质蛋白编码基因(GmOLEO1)与种子油含量显着相关。 GmOLEO1主要在种子成熟过程中表达,而GmOLEO1则位于成熟种子中积累的油体(OBs)中。与对照种子相比,GmOLEO1的过表达显着富集了较小的OB,并使种子油含量增加了10.6%。在转基因大豆和对照大豆之间进行的时程转录组学分析表明,GmOLEO1通过影响三酰基甘油的代谢而积极增强了油的积累。我们的结果还表明,在GmOLEO1的启动子区域发生了强烈的人工选择,这导致其在栽培大豆中相对于野生大豆高表达,从而导致种子油积累增加。 GmOLEO1基因座可作为基因工程和大豆油改良选择的直接目标。

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