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首页> 外文期刊>The Journal of Heredity >Genome-Wide Association Study of Arabidopsis thaliana Identifies Determinants of Natural Variation in Seed Oil Composition
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Genome-Wide Association Study of Arabidopsis thaliana Identifies Determinants of Natural Variation in Seed Oil Composition

机译:拟南芥全基因组关联研究确定了种子油成分的自然变异决定因素

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The renewable source of highly reduced carbon provided by plant triacylglycerols (TAGs) fills an ever increasing demand for food, biodiesel, and industrial chemicals. Each of these uses requires different compositions of fatty acid proportions in seed oils. Identifying the genes responsible for variation in seed oil composition in nature provides targets for bioengineering fatty acid proportions optimized for various industrial and nutrition goals. Here, we characterized the seed oil composition of 391 world-wide, wild accessions of Arabidopsis thaliana, and performed a genome-wide association study (GWAS) of the 9 major fatty acids in the seed oil and 4 composite measures of the fatty acids. Four to 19 regions of interest were associated with the seed oil composition traits. Thirty-four of the genes in these regions are involved in lipid metabolism or transport, with 14 specific to fatty acid synthesis or breakdown. Eight of the genes encode transcription factors. We have identified genes significantly associated with variation in fatty acid proportions that can be used as a resource across the Brassicaceae. Two-thirds of the regions identified contain candidate genes that have never been implicated in lipid metabolism and represent potential new targets for bioengineering.
机译:植物三酰基甘油(TAG)提供的高度还原的碳可再生资源满足了对食品,生物柴油和工业化学品的不断增长的需求。这些用途中的每一种都需要种子油中脂肪酸比例的不同组成。鉴定造成自然中种子油成分变化的基因可为针对各种工业和营养目标优化的生物工程脂肪酸比例提供目标。在这里,我们表征了391种拟南芥野生种的世界范围内的种子油成分,并对种子油中的9种主要脂肪酸和4种脂肪酸的复合量度进行了全基因组关联研究(GWAS)。 4至19个感兴趣的区域与种子油成分特征相关。这些区域中的34个基因参与脂质代谢或转运,其中14个对脂肪酸合成或分解具有特异性。其中八个基因编码转录因子。我们已经鉴定出与脂肪酸比例变化显着相关的基因,可以用作十字花科的一种资源。所确定的区域的三分之二包含从未参与脂质代谢的候选基因,并代表了生物工程的潜在新靶标。

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