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

机译:解开Buglossoides arvensis发育中种子中富含硬脂酸的三酰甘油生物合成途径:转录组学景观

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摘要

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.
机译:Buglossoides arvensis是一种新兴的油料作物,富含硬脂酸(SDA),在人类健康和营养中具有多种潜在应用。由于缺乏基因组信息,该植物中SDA生物合成的分子基础仍然未知。为了揭示涉及富含SDA的三酰基甘油(TAG)生物合成的关键基因,我们使用Illumina NextSeq平台对来自B. arvensis种子五个发育阶段的合并mRNA进行了转录组测序。从头转录组组装程序从3983万个高质量读段中生成了102,888个簇状转录本。其中,分别使用Uniprot-Viridiplantae和KOG数据库对62.1%和55.54%的转录本进行功能注释。使用MISA工具鉴定了总共10021个含SSR的序列。使用计算机软件对转录组组装进行深入挖掘,从而鉴定出与脂肪酸和TAG生物合成有关的基因。涉及脂肪酸去饱和和TAG生物合成的17个关键转录物的表达谱显示出特定于发育阶段的表达模式,该模式与发育中种子中的多不饱和脂肪酸蓄积正相关。这项首次全面的转录组分析为进一步研究了解B. arvensis中富含SDA的TAG分子机制提供了基础,并有助于其他油料作物中SDA的生物技术生产。

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