Author:
Zhang Dongjuan,Ren Jing,Jiang Hui,Wanga Vincent Okelo,Dong Xiang,Hu Guangwan
Abstract
AbstractPolygonatum Miller belongs to the tribe Polygonateae of Asparagaceae. The horizontal creeping fleshy roots of several species in this genus serve as traditional Chinese medicine. Previous studies have mainly reported the size and gene contents of the plastomes, with little information on the comparative analysis of the plastid genomes of this genus. Additionally, there are still some species whose chloroplast genome information has not been reported. In this study, the complete plastomes of six Polygonatum were sequenced and assembled, among them, the chloroplast genome of P. campanulatum was reported for the first time. Comparative and phylogenetic analyses were then conducted with the published plastomes of three related species. Results indicated that the whole plastome length of the Polygonatum species ranged from 154,564 bp (P. multiflorum) to 156,028 bp (P. stenophyllum) having a quadripartite structure of LSC and SSC separated by two IR regions. A total of 113 unique genes were detected in each of the species. Comparative analysis revealed that gene content and total GC content in these species were highly identical. No significant contraction or expansion was observed in the IR boundaries among all the species except P. sibiricum1, in which the rps19 gene was pseudogenized owing to incomplete duplication. Abundant long dispersed repeats and SSRs were detected in each genome. There were five remarkably variable regions and 14 positively selected genes were identified among Polygonatum and Heteropolygonatum. Phylogenetic results based on chloroplast genome strongly supported the placement of P. campanulatum with alternate leaves in sect. Verticillata, a group characterized by whorled leaves. Moreover, P. verticillatum and P. cyrtonema were displayed as paraphyletic. This study revealed that the characters of plastomes in Polygonatum and Heteropolygonatum maintained a high degree of similarity. Five highly variable regions were found to be potential specific DNA barcodes in Polygonatum. Phylogenetic results suggested that leaf arrangement was not suitable as a basis for delimitation of subgeneric groups in Polygonatum and the definitions of P. cyrtonema and P. verticillatum require further study.
Funder
National Science & Technology Fundamental Resources Investigation Program of China
Second Tibetan Plateau Scientific Expedition and Research (STEP) program
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Reference89 articles.
1. Iv, A. P. G. An update of the angiosperm phylogeny group classification for the orders and families of flowering plants: APG IV. Bot. J. Linn. Soc. 181, 1–20 (2016).
2. Chen, S. C. & Tamura, M. N. Flora of China Vol. 24, 223–232 (Science Press & Missouri Botanical Garden Press, 2000).
3. Therman, E. Chromosomal evolution in the genus Polygonatum. Hereditas 39, 277–288 (1953).
4. Tamura, M. N., Schwarzbach, A. E., Kruse, S. & Reski, R. Biosystematic studies on the genus Polygonatum (Convallariaceae) IV. Molecular phylogenetic analysis based on restriction site mapping of the chloroplast gene trnK. Feddes Repertorium 108, 159–168 (1997).
5. Pharmacopoeia Commission. The Pharmacopoeia of the People’s Republic of China 319 (China Medical Science Press, 2015).
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