Comparative and phylogenetic analysis of the complete chloroplast genomes of 10 Artemisia selengensis resources based on high-throughput sequencing
Yuhang Wang, Qingying Wei, Tianyuan Xue, Sixiao He, Jiao Fang, Changli Zeng

TL;DR
This study compares the chloroplast genomes of 10 Artemisia selengensis plants to understand their genetic structure and evolutionary relationships.
Contribution
The study provides a detailed comparative and phylogenetic analysis of A. selengensis chloroplast genomes using high-throughput sequencing.
Findings
The chloroplast genomes of A. selengensis are highly conserved in gene content and structure.
Eight genes showed signs of positive selection, and variable regions were mainly in single copy regions.
A. selengensis forms a monophyletic group with other Artemisia species, clarifying its evolutionary placement.
Abstract
Artemisia selengensis, classified within the genus Artemisia of the Asteraceae family, is a perennial herb recognized for its dual utility in culinary and medicinal domains. There are few studies on the chloroplast genome of A. selengensis, and the phylogeographic classification is vague, which makes phylogenetic analysis and evolutionary studies very difficult. The chloroplast genomes of 10 A. selengensis in this study were highly conserved in terms of gene content, gene order, and gene intron number. The genome lengths ranged from 151,148 to 151,257 bp and were typical of a quadripartite structure with a total GC content of approximately 37.5%. The chloroplast genomes of all species encode 133 genes, including 88 protein-coding genes, 37 tRNA genes, and 8 rRNA genes. Due to the contraction and expansion of the inverted repeats (IR), the overlap of ycf1 and ndhF genes occurred at the…
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Taxonomy
TopicsEthics and bioethics in healthcare · Palliative and Oncologic Care · Ethics in medical practice
