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Seed Transcriptomics Analysis in Camellia oleifera Uncovers Genes Associated with Oil Content and Fatty Acid Composition

机译:油茶种子转录组学分析揭示了与油含量和脂肪酸组成相关的基因

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摘要

Camellia oleifera is a major tree species for producing edible oil. Its seed oil is well known for the high level of oleic acids; however, little is known regarding the molecular mechanism of lipid biosynthesis in C. oleifera. Here, we measured the oil contents and fatty acid (FA) compositions at four developmental stages and investigated the global gene expression profiles through transcriptomics sequencing. We identified differentially-expressed genes (DEGs) among the developmental stages and found that the distribution of numbers of DEGs was associated with the accumulation pattern of seed oil. Gene Ontology (GO) enrichment analysis revealed some critical biological processes related to oil accumulation, including lipid metabolism and phosphatidylcholine metabolism. Furthermore, we investigated the expression patterns of lipid biosynthesis genes. We showed that most of the genes were identified with single or multiple copies, and some had correlated profiles along oil accumulation. We proposed that the higher levels of stearoyl-ACP desaturases (SADs) coupled with lower activities of fatty acid desaturase 2 (FAD2) might be responsive to the boost of oleic acid at the late stage of C. oleifera seeds’ development. This work presents a comprehensive transcriptomics study of C. oleifera seeds and uncovers valuable DEGs that are associated with the seed oil accumulation.
机译:油茶是生产食用油的主要树种。它的种子油以高含量的油酸而闻名。然而,关于油茶中脂质生物合成的分子机制知之甚少。在这里,我们测量了四个发育阶段的油含量和脂肪酸(FA)组成,并通过转录组学测序研究了全球基因表达谱。我们确定了发育阶段之间的差异表达基因(DEGs),并发现DEG数量的分布与种子油的积累模式有关。基因本体论(GO)富集分析揭示了一些与油脂积累相关的关键生物学过程,包括脂质代谢和磷脂酰胆碱代谢。此外,我们调查了脂质生物合成基因的表达模式。我们表明,大多数基因被鉴定为单拷贝或多拷贝,并且其中一些沿油藏具有相关的特征。我们建议,较高水平的硬脂酰ACP脱氢酶(SAD)加上较低的脂肪酸脱氢酶2(FAD2)活性,可能是对油茶种子发育后期油酸增强的反应。这项工作提出了对油茶种子的全面转录组学研究,并发现了与种子油积累相关的有价值的DEG。

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