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转录组分析和鉴定, 种子油中羟基脂肪酸的遗传资源中的脂质基因。

Transcriptome Analysis and Identification of Lipid Genes in , a Genetic Resource for Hydroxy Fatty Acids in Seed Oil.

机构信息

Western Regional Research Center, Agricultural Research Service, U.S. Department of Agriculture, Albany, CA 94710, USA.

Department of Bioindustry and Bioresource Engineering, Sejong University, Seoul 05006, Korea.

出版信息

Int J Mol Sci. 2021 Jan 6;22(2):514. doi: 10.3390/ijms22020514.

Abstract

Hydroxy fatty acids (HFAs) have numerous industrial applications but are absent in most vegetable oils. accumulating 85% HFA in its seed oil makes it a valuable resource for engineering oilseed crops for HFA production. To discover lipid genes involved in HFA synthesis in , transcripts from developing seeds at various stages, as well as leaf and flower buds, were sequenced. Ninety-seven percent clean reads from 552,614,582 raw reads were assembled to 129,633 contigs (or transcripts) which represented 85,948 unique genes. Gene Ontology analysis indicated that 60% of the contigs matched proteins involved in biological process, cellular component or molecular function, while the remaining matched unknown proteins. We identified 42 genes involved in fatty acid and seed oil biosynthesis, and 39 of them shared 78-100% nucleotide identity with Arabidopsis orthologs. We manually annotated 16 key genes and 14 of them contained full-length protein sequences, indicating high coverage of clean reads to the assembled contigs. A detailed profiling of the 16 genes revealed various spatial and temporal expression patterns. The further comparison of their protein sequences uncovered amino acids conserved among HFA-producing species, but these varied among non-HFA-producing species. Our findings provide essential information for basic and applied research on HFA biosynthesis.

摘要

羟基脂肪酸 (HFAs) 在许多工业应用中都有应用,但在大多数植物油中都不存在。通过在其种子油中积累 85%的 HFA,它成为了工程油料作物生产 HFA 的宝贵资源。为了在 中发现参与 HFA 合成的脂质基因,我们对不同发育阶段的种子、叶片和花芽的转录本进行了测序。从 552,614,582 条原始reads 中获得的 97%的clean reads 被组装成 129,633 条contigs(或转录本),代表 85,948 个独特的基因。GO 分析表明,60%的contigs 匹配参与生物过程、细胞成分或分子功能的蛋白质,而其余的匹配未知蛋白质。我们鉴定了 42 个参与脂肪酸和种子油生物合成的基因,其中 39 个与拟南芥同源基因具有 78-100%的核苷酸同一性。我们对 16 个关键基因进行了手动注释,其中 14 个基因含有全长蛋白序列,表明 clean reads 对组装 contigs 的高覆盖率。对 16 个基因的详细分析揭示了它们在不同时空的表达模式。对它们的蛋白质序列的进一步比较揭示了在 HFA 产生物种中保守的氨基酸,但在非 HFA 产生物种中则有所不同。我们的发现为 HFA 生物合成的基础和应用研究提供了重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9af/7825617/b62a80fd2492/ijms-22-00514-g001.jpg

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