Complete Plastome of Physalis angulata var. villosa , Gene Organization, Comparative Genomics and Phylogenetic Relationships among Solanaceae.

Genes(2022)

引用 2|浏览13
暂无评分
摘要
var. , rich in withanolides, has been used as a traditional Chinese medicine for many years. To date, few extensive molecular studies of this plant have been conducted. In the present study, the plastome of var. was sequenced, characterized and compared with that of other species, and a phylogenetic analysis was conducted in the family Solanaceae. The plastome of var. was 156,898 bp in length with a GC content of 37.52%, and exhibited a quadripartite structure typical of land plants, consisting of a large single-copy (LSC, 87,108 bp) region, a small single-copy (SSC, 18,462 bp) region and a pair of inverted repeats (IR: IRA and IRB, 25,664 bp each). The plastome contained 131 genes, of which 114 were unique and 17 were duplicated in IR regions. The genome consisted of 85 protein-coding genes, eight rRNA genes and 38 tRNA genes. A total of 38 long, repeat sequences of three types were identified in the plastome, of which forward repeats had the highest frequency. Simple sequence repeats (SSRs) analysis revealed a total of 57 SSRs, of which the T mononucleotide constituted the majority, with most of SSRs being located in the intergenic spacer regions. Comparative genomic analysis among nine species revealed that the single-copy regions were less conserved than the pair of inverted repeats, with most of the variation being found in the intergenic spacer regions rather than in the coding regions. Phylogenetic analysis indicated a close relationship between and . In addition, and were paraphyletic, and clustered together in the phylogenetic tree. Our study published the first sequence and assembly of the plastome of var. , reported its basic resources for evolutionary studies and provided an important tool for evaluating the phylogenetic relationship within the family Solanaceae.
更多
查看译文
关键词
Physalis angulata var. villosa,SSRs,comparative genomics,phylogenetic relationship,plastome,repeat analysis
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要