Zhang Jianyun, Gu Xian, Zhao Yanyun, Zheng Yuguang, Wang Qian, Zheng Kaiyan, Fang Huiyong
Traditional Chinese Medicine Processing Technology Innovation Center of Hebei Province; College of Pharmacy, Hebei University of Chinese Medicine, Shijiazhuang 050200, Hebei, China.
Hebei Chemical and Pharmaceutical College, Shijiazhuang 050026, Hebei, China.
Can J Microbiol. 2022 May;68(5):353-366. doi: 10.1139/cjm-2021-0262. Epub 2022 Jan 26.
Koidz. (AMK) is widely used in traditional Chinese medicine owing to its pharmacological activity. Here, we aimed to characterize the differentially expressed genes (DEGs) of one- and three-year growth (OYG and TYG) rhizomes of AMK, combined with endophytic bacterial diversity analysis using high-throughput RNA sequencing. A total of 114 572 unigenes were annotated using six public databases. In all, 3570 DEGs revealed a clear difference, of which 936 and 2634 genes were upregulated and downregulated, respectively. The results of KEGG pathway analysis indicated that DEGs corresponding to terpenoid synthesis gene were downregulated in TYG rhizomes. In addition, 414 424 sequences corresponding to the 16S rRNA gene were divided into 1267 operational taxonomic units (OTUs). Moreover, the diversity of endophytic bacteria changed with species in the OYG (773) and TYG (1201) rhizomes at the OTU level, and Proteobacteria, Actinobacteria, and Bacteroidetes were the dominant phyla. A comparison of species differences among different growth years revealed that some species were significantly different, such as , , and . Interestingly, the decrease in the function-related metabolism of terpenoids and polyketides was correlated with the low expression of terpene synthesis genes in TYG rhizomes, as assessed using PICRUSt2. These data provide a scientific basis for elucidating the mechanisms underlying metabolite accumulation and endophytic bacterial diversity in relation to the growth years in AMK.
莪术(AMK)因其药理活性而在传统中药中被广泛应用。在此,我们旨在通过高通量RNA测序结合内生细菌多样性分析,对莪术一年生和三年生根茎(OYG和TYG)的差异表达基因(DEGs)进行表征。使用六个公共数据库对总共114572个单基因进行了注释。总共3570个DEGs显示出明显差异,其中分别有936个和2634个基因上调和下调。KEGG通路分析结果表明,与萜类合成基因相对应的DEGs在TYG根茎中下调。此外,对应于16S rRNA基因的414424个序列被分为1267个操作分类单元(OTUs)。而且,在OTU水平上,内生细菌的多样性在OYG(773)和TYG(1201)根茎中随物种而变化,变形菌门、放线菌门和拟杆菌门是优势菌门。不同生长年份之间物种差异的比较表明,一些物种存在显著差异,如 , ,和 。有趣的是,使用PICRUSt2评估发现,萜类和聚酮类功能相关代谢的减少与TYG根茎中萜烯合成基因的低表达相关。这些数据为阐明莪术生长年份与代谢物积累及内生细菌多样性相关的潜在机制提供了科学依据。