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Identification of hydroxy fatty acid and triacylglycerol metabolism-related genes in lesquerella through seed transcriptome analysis

机译:通过种子转录组分析鉴定小菜蛾中的羟基脂肪酸和三酰基甘油代谢相关基因

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Castor oil is the only commercial source of hydroxy fatty acid that has industrial value. The production of castor oil is hampered by the presence of the toxin ricin in its seed. Lesquerella seed also accumulates hydroxy fatty acid and is free of ricin, and thus it is being developed as a new crop for hydroxy fatty acid production. A high-throughput, large-scale sequencing of transcripts from developing lesquerella seeds was carried out by 454 pyrosequencing to generate a database for quality improvement of seed oil and other agronomic traits. Deep mining and characterization of acyl-lipid genes were conducted to uncover candidate genes for further studies of mechanisms underlying hydroxy fatty acid and seed oil synthesis. A total of 651 megabases of raw sequences from an mRNA sample of developing seeds was acquired. Bioinformatic analysis of these sequences revealed 59,914 transcripts representing 26,995 unique genes that include nearly all known seed expressed genes. Based on sequence similarity with known plant proteins, about 74% (19,861) genes matched with annotated coding genes. Among them, 95% (18,868) showed highest sequence homology with Arabidopsis genes, which will allow translation of genomics and genetics findings from Arabidopsis to lesquerella. Using Arabidopsis acyl-lipid genes as queries, we searched the transcriptome assembly and identified 615 lesquerella genes involved in all known pathways of acyl-lipid metabolism. Further deep mining the transcriptome assembly led to identification of almost all lesquerella genes involved in fatty acid and triacylglycerol synthesis. Moreover, we characterized the spatial and temporal expression profiles of 15 key genes using the quantitative PCR assay. We have built a lesquerella seed transcriptome that provides a valuable reference in addition to the castor database for discovering genes involved in the synthesis of triacylglycerols enriched with hydroxy fatty acids. The information obtained from data mining and gene expression profiling will provide a resource not only for the study of hydroxy fatty acid metabolism, but also for the biotechnological production of hydroxy fatty acids in existing oilseed crops.
机译:蓖麻油是具有工业价值的羟基脂肪酸的唯一商业来源。蓖麻油的生产因其种子中毒素蓖麻毒素的存在而受到阻碍。莱斯奎拉氏菌种子也积累羟基脂肪酸,不含蓖麻毒蛋白,因此正被开发为生产羟基脂肪酸的新作物。通过454焦磷酸测序对来自发展中的小槲寄生种子的转录本进行了高通量的大规模测序,从而生成了一个用于改善种子油和其他农艺性状的数据库。进行了深度挖掘和酰基脂质基因的表征,以发现候选基因,以进一步研究羟基脂肪酸和种子油合成的机制。从发育中的种子的mRNA样品中获得了总共651兆碱基的原始序列。这些序列的生物信息学分析显示59,914个转录本,代表26,995个独特基因,其中包括几乎所有已知的种子表达基因。基于与已知植物蛋白的序列相似性,约74%(19,861)个基因与带注释的编码基因匹配。其中,有95%(18,868)显示与拟南芥基因的最高序列同源性,这将使基因组学和遗传学发现从拟南芥转化为lesquerella。使用拟南芥酰基脂质基因作为查询,我们搜索了转录组,并鉴定了615种参与所有已知脂质酰基代谢途径的lesquerella基因。进一步深入挖掘转录组的装配,导致鉴定出几乎所有与脂肪酸和三酰基甘油合成有关的莱斯克雷菌基因。此外,我们使用定量PCR分析表征了15个关键基因的时空表达谱。我们已经建立了莱斯克雷氏菌种子转录组,除了蓖麻数据库以外,它还为发现与富含羟基脂肪酸的三酰甘油合成有关的基因提供了有价值的参考。从数据挖掘和基因表达谱分析中获得的信息将不仅为研究羟基脂肪酸代谢提供资源,而且为现有油料作物中羟基脂肪酸的生物技术生产提供资源。

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