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解析硬质酸丰富的三酰基甘油生物合成途径在硬紫草发育种子中的作用:转录组全景。

Unravelling a stearidonic acid-rich triacylglycerol biosynthetic pathway in the developing seeds of Buglossoides arvensis: A transcriptomic landscape.

机构信息

Department of Lipid Science, CSIR-Central Food Technological Research Institute (CSIR-CFTRI), Mysuru, 570020, India.

Academy of Scientific and Innovative Research (AcSIR), CSIR-Central Food Technological Research Institute Campus, Mysuru, 570020, India.

出版信息

Sci Rep. 2017 Sep 5;7(1):10473. doi: 10.1038/s41598-017-09882-y.

Abstract

Buglossoides arvensis is an emerging oilseed crop that is rich in stearidonic acid (SDA) and has several potential applications in human health and nutrition. The molecular basis of SDA biosynthesis in this plant remains unknown due to lack of genomic information. To unravel key genes involved in SDA-rich triacylglycerol (TAG) biosynthesis, we performed transcriptome sequencing of pooled mRNA from five different developmental stages of B. arvensis seeds using Illumina NextSeq platform. De novo transcriptome assembly generated 102,888 clustered transcripts from 39.83 million high-quality reads. Of these, 62.1% and 55.54% of transcripts were functionally annotated using Uniprot-Viridiplantae and KOG databases, respectively. A total of 10,021 SSR-containing sequences were identified using the MISA tool. Deep mining of transcriptome assembly using in silico tools led to the identification of genes involved in fatty acid and TAG biosynthesis. Expression profiling of 17 key transcripts involved in fatty acid desaturation and TAG biosynthesis showed expression patterns specific to the development stage that positively correlated with polyunsaturated fatty acid accumulation in the developing seeds. This first comprehensive transcriptome analysis provides the basis for future research on understanding molecular mechanisms of SDA-rich TAG accumulation in B. arvensis and aids in biotechnological production of SDA in other oilseed crops.

摘要

牛膝菊是一种新兴的油料作物,富含神经酸(SDA),在人类健康和营养方面有多种潜在的应用。由于缺乏基因组信息,这种植物中 SDA 生物合成的分子基础仍然未知。为了揭示 SDA 丰富的三酰基甘油(TAG)生物合成中的关键基因,我们使用 Illumina NextSeq 平台对牛膝菊种子的五个不同发育阶段的混合 mRNA 进行了转录组测序。从头组装的转录组从 3983 万个高质量读数中生成了 102888 个聚类转录本。其中,62.1%和 55.54%的转录本分别使用 Uniprot-Viridiplantae 和 KOG 数据库进行了功能注释。使用 MISA 工具鉴定了 10021 个含有 SSR 的序列。使用计算机工具对转录组组装进行深度挖掘,鉴定出了参与脂肪酸和 TAG 生物合成的基因。17 个关键转录本参与脂肪酸去饱和和 TAG 生物合成的表达谱显示出与发育阶段特异性相关的表达模式,与发育种子中多不饱和脂肪酸的积累呈正相关。这是首次对牛膝菊进行全面的转录组分析,为进一步研究 SDA 丰富的 TAG 在牛膝菊中的积累的分子机制提供了基础,并有助于在其他油料作物中生物技术生产 SDA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51fd/5585386/32fda6a77d0f/41598_2017_9882_Fig1_HTML.jpg

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