首页> 外文期刊>BMC Genomics >Comprehensive transcriptome analysis reveals novel genes involved in cardiac glycoside biosynthesis and mlncRNAs associated with secondary metabolism and stress response in Digitalis purpurea
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Comprehensive transcriptome analysis reveals novel genes involved in cardiac glycoside biosynthesis and mlncRNAs associated with secondary metabolism and stress response in Digitalis purpurea

机译:全面的转录组分析揭示了洋地黄紫中参与心脏糖苷生物合成的新基因和与次级代谢和应激反应相关的mlncRNA

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Background Digitalis purpurea is an important ornamental and medicinal plant. There is considerable interest in exploring its transcriptome. Results Through high-throughput 454 sequencing and subsequent assembly, we obtained 23532 genes, of which 15626 encode conserved proteins. We determined 140 unigenes to be candidates involved in cardiac glycoside biosynthesis. It could be grouped into 30 families, of which 29 were identified for the first time in D. purpurea. We identified 2660 mRNA-like npcRNA (mlncRNA) candidates, an emerging class of regulators, using a computational mlncRNA identification pipeline and 13 microRNA-producing unigenes based on sequence conservation and hairpin structure-forming capability. Twenty five protein-coding unigenes were predicted to be targets of these microRNAs. Among the mlncRNA candidates, only 320 could be grouped into 140 families with at least two members in a family. The majority of D. purpurea mlncRNAs were species-specific and many of them showed tissue-specific expression and responded to cold and dehydration stresses. We identified 417 protein-coding genes with regions significantly homologous or complementary to 375 mlncRNAs. It includes five genes involved in secondary metabolism. A positive correlation was found in gene expression between protein-coding genes and the homologous mlncRNAs in response to cold and dehydration stresses, while the correlation was negative when protein-coding genes and mlncRNAs were complementary to each other. Through comprehensive transcriptome analysis, we not only identified 29 novel gene families potentially involved in the biosynthesis of cardiac glycosides but also characterized a large number of mlncRNAs. Our results suggest the importance of mlncRNAs in secondary metabolism and stress response in D. purpurea.
机译:背景洋地黄是一种重要的观赏和药用植物。探索其转录组有相当大的兴趣。结果通过高通量454测序和后续组装,我们获得了23532个基因,其中15626个编码保守蛋白。我们确定了140个单基因是参与心脏糖苷生物合成的候选基因。它可以分为30个科,其中29个是首次在紫D病中被发现。我们使用计算性mlncRNA识别管道和13种基于序列保守性和发夹结构形成能力的microRNA生产单基因,鉴定了2660个类似mRNA的npcRNA(mlncRNA)候选物,这是一类新兴的调节剂。预测将有25个蛋白质编码单基因成为这些microRNA的靶标。在mlncRNA候选物中,只有320个可分为140个家族,一个家族中至少有两个成员。紫purD。mlncRNA的大多数是物种特异性的,其中许多表现出组织特异性的表达,并对寒冷和脱水胁迫产生反应。我们确定了417个蛋白质编码基因,其与375 mlncRNA的区域具有明显的同源性或互补性。它包括与次级代谢有关的五个基因。发现蛋白质编码基因与同源mlncRNA之间的基因表达与寒冷和脱水胁迫响应呈正相关,而当蛋白质编码基因与mlncRNA相互互补时,则呈负相关。通过全面的转录组分析,我们不仅鉴定了可能参与强心苷生物合成的29个新基因家族,而且鉴定了许多mlncRNA。我们的结果表明,mlncRNA在紫斑病菌次生代谢和应激反应中的重要性。

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