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首页> 外文期刊>BMC Genomics >Comparative transcriptome analysis of shoot and root tissue of Bacopa monnieri identifies potential genes related to triterpenoid saponin biosynthesis
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Comparative transcriptome analysis of shoot and root tissue of Bacopa monnieri identifies potential genes related to triterpenoid saponin biosynthesis

机译:巴氏杆菌的茎和根组织的比较转录组分析确定了与三萜皂苷生物合成相关的潜在基因

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Background Bacopa monnieri commonly known as Brahmi is utilized in Ayurveda to improve memory and many other human health benefits. Bacosides enriched standardized extract of Bacopa monnieri is being marketed as a memory enhancing agent. In spite of its well known pharmacological properties it is not much studied in terms of transcripts involved in biosynthetic pathway and its regulation that controls the secondary metabolic pathway in this plant. The aim of this study was to identify the potential transcripts and provide a framework of identified transcripts involved in bacosides production through transcriptome assembly. Results We performed comparative transcriptome analysis of shoot and root tissue of Bacopa monnieri in two independent biological replicate and obtained 22.48 million and 22.0 million high quality processed reads in shoot and root respectively. After de novo assembly and quantitative assessment total 26,412 genes got annotated in root and 18,500 genes annotated in shoot sample. Quality of raw reads was determined by using SeqQC-V2.2. Assembled sequences were annotated using BLASTX against public database such as NR or UniProt. Searching against the KEGG pathway database indicated that 37,918 unigenes from root and 35,130 unigenes from shoot were mapped to 133 KEGG pathways. Based on the DGE data we found that most of the transcript related to CYP450s and UDP-glucosyltransferases were specifically upregulated in shoot tissue as compared to root tissue. Finally, we have selected 43 transcripts related to secondary metabolism including transcription factor families which are differentially expressed in shoot and root tissues were validated by qRT-PCR and their expression level were monitored after MeJA treatment and wounding for 1, 3 and 5?h. Conclusions This study not only represents the first de novo transcriptome analysis of Bacopa monnieri but also provides information about the identification, expression and differential tissues specific distribution of transcripts related to triterpenoid sapogenin which is one of the most important pharmacologically active secondary metabolite present in Bacopa monnieri . The identified transcripts in this study will establish a foundation for future studies related to carrying out the metabolic engineering for increasing the bacosides biosynthesis and its regulation for human health benefits.
机译:背景技术在阿育吠陀中使用了通常被称为Brahmi的Bacopa monnieri,以改善记忆力和许多其他对人类健康的益处。富含茄子的Bacopa monnieri的标准化提取物已作为记忆增强剂上市。尽管它具有众所周知的药理特性,但在涉及生物合成途径的转录本及其控制该植物次级代谢途径的调控方面,并没有进行太多研究。这项研究的目的是确定潜在的转录本,并提供一个通过转录组组装参与杀虫剂生产的已鉴定转录本的框架。结果我们对Bacopa monnieri的芽和根组织进行了两个独立的生物学复制的比较转录组分析,分别获得了2,248万和2,200万高质量的芽和根加工读物。从头开始进行组装和定量评估后,在根中总共注释了26,412个基因,在枝条样品中注释了18,500个基因。原始读取的质量通过使用SeqQC-V2.2确定。使用BLASTX对公共数据库(例如NR或UniProt)注释组装的序列。通过对KEGG通路数据库的搜索,发现来自根的37,918个单基因和来自芽的35,130个单基因被映射到133个KEGG通路。根据DGE数据,我们发现与CYP450s和UDP-葡萄糖基转移酶有关的大多数转录本在根部组织中的表达均比根部组织高。最后,我们选择了与次级代谢有关的43个转录本,包括在茎和根组织中差异表达的转录因子家族,并通过qRT-PCR进行了验证,并在MeJA处理和受伤1、3和5?h后监测了它们的表达水平。结论这项研究不仅代表了巴氏杆菌的首次从头转录组分析,而且还提供了与三萜类皂苷元有关的转录物的鉴定,表达和差异组织特异性分布的信息,三萜皂甙元是存在于巴氏杆菌中最重要的药理活性次生代谢产物之一。 。在这项研究中确定的成绩单将为与进行代谢工程以增加毒苷生物合成及其对人类健康的调节相关的未来研究奠定基础。

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