Liao Rong-Jun, Yang Yang, Ye Bi-Huan, Li Nan, Chen You-Wu, Weng Yong-Fa, DU Guo-Jian, Li Hai-Bo
Quzhou City Forestry Technology Popularization Station Quzhou 324002, China.
Zhejiang Agriculture and Forestry University Hangzhou 311300, China.
Zhongguo Zhong Yao Za Zhi. 2020 Apr;45(7):1648-1656. doi: 10.19540/j.cnki.cjcmm.20200205.102.
To enrich the transcriptome data in rhizome of Polygonatum cyrtonema seedlings, identify candidate functional genes involved in steroidal saponin biosynthesis and provide genetic resources for the research on anabolism pathway and regulatory mechanism of active components in P. cyrtonema, Illumina platform was applied to perform transcriptomic sequencing of rhizome of P. cyrtonema, followed by a series of bioinformatics analysis on RNA-seq data, including de novo assembly, annotation, classification and metabolic pathway analysis of the assembled unigene. Meanwhile, a deep analysis on the steroidal saponin biosynthesis in secondary metabolism pathway was performed. The results showed a total of 126 546 unigene were obtained by de novo transcriptome assembly, of which 47 226 were annotated. Of these, 16 499 unigene were mapped to 132 specific pathways, of which 2 768 were identified to be involved in 22 secondary metabolic pathways. One hundred and thirteen unigene were identified from the transcriptome database, which encoded 27 metabolic enzymes associated with steroidal saponin biosynthesis and shared similarity with 45 functional genes in Arabidopsis thaliana. In conclusion, a series of candidate functional genes, which might be involved in steroidal saponin biosynthesis, were selected from the transcriptome database of P. cyrtonema rhizome. Further investigation of these candidate genes will provide insight into their actual functions in the steroidal saponin biosynthetic pathway in P. cyrtonema. In addition, this study also provide abunant reference data for transcriptome characterization of P. cyrtonema and has important significance for functional genomics of P. cyrtonema.
为丰富黄精幼苗根茎的转录组数据,鉴定参与甾体皂苷生物合成的候选功能基因,并为黄精活性成分合成途径及调控机制的研究提供遗传资源,采用Illumina平台对黄精根茎进行转录组测序,并对RNA-seq数据进行一系列生物信息学分析,包括从头组装、注释、分类及组装单基因的代谢途径分析。同时,对次生代谢途径中的甾体皂苷生物合成进行深入分析。结果显示,通过从头转录组组装共获得126546个单基因,其中47226个得到注释。其中,16499个单基因映射到132条特定途径,其中2768个被鉴定参与22条次生代谢途径。从转录组数据库中鉴定出113个单基因,它们编码与甾体皂苷生物合成相关的27种代谢酶,并与拟南芥中的45个功能基因具有相似性。总之,从黄精根茎转录组数据库中筛选出一系列可能参与甾体皂苷生物合成的候选功能基因。对这些候选基因的进一步研究将有助于深入了解它们在黄精甾体皂苷生物合成途径中的实际功能。此外,本研究还为黄精转录组特征提供了丰富的参考数据,对黄精功能基因组学具有重要意义。