Draft genome sequence of the Tibetan medicinal herb Rhodiola crenulata

红景天 生物 基因组 基因组大小 基因 计算生物学 传统医学 遗传学 进化生物学 医学 药理学 红景天苷
作者
Xiaoying Fan,Liangwei Li,Shijie Hao,Rui Guan,Guangyi Fan,Chengcheng Shi,Haibo Wan,Wenbin Chen,He Zhang,Guocheng Liu,Jihua Wang,Lulin Ma,Jianling You,Xuemei Ni,Zhen Yue,Xun Xu,Xiao Sun,Xin Liu,Simon Ming‐Yuen Lee
出处
期刊:GigaScience [Oxford University Press]
卷期号:6 (6) 被引量:39
标识
DOI:10.1093/gigascience/gix033
摘要

Rhodiola crenulata, a well-known medicinal Tibetan herb, is mainly grown in high-altitude regions of the Tibet, Yunnan, and Sichuan provinces in China. In the past few years, increasing numbers of studies have been published on the potential pharmacological activities of R. crenulata, strengthening our understanding into its putitive active ingredient composition, pharmacological activity, and mechanism of action. These findings also provide strong evidence supporting the important medicinal and economical value of R. crenulata. Consequently, some Rhodiola species are becoming endangered because of overexploitation and environmental destruction. However, little is known about the genetic and genomic information of any Rhodiola species. Here we report the first draft assembly ofthe R. crenulata genome, which was 344.5 Mb (25.7 Mb Ns), accounting for 82% of the estimated genome size, with a scaffold N50 length of 144.7 kb and a contig N50 length of 25.4 kb. The R. crenulata genome is not only highly heterozygous but also highly repetitive, with ratios of 1.12% and 66.15%, respectively, based on the k-mer analysis. Furthermore, 226.6 Mb of transposable elements were detected, of which 77.03% were long terminal repeats. In total, 31 517 protein-coding genes were identified, capturing 86.72% of expected plant genes in BUSCO. Additionally, 79.73% of protein-coding genes were functionally annotated. R. crenulata is an important medicinal plant and also a potentially interesting model species for studying the adaptability of Rhodiola species to extreme environments. The genomic sequences of R. crenulata will be useful for understanding the evolutionary mechanism of the stress resistance gene and the biosynthesis pathways of the different medicinal ingredients, for example, salidroside in R. crenulata.
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