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Phylogeographic and phylogenetic analysis for Tripterygium species delimitation

机译:雷公藤属植物划界的系统学和系统发育分析

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摘要

Tripterygium wilfordii (Celastraceae) is a traditional Chinese medicine; and the dried root and rhizome constitute the main officinal parts. Tripterygium wilfordii has been identified as a potential candidate for the treatment of systemic lupus erythematosus, rheumatoid arthritis, nephritis, asthma, leprosy, and cancer. The phylogenetic relationships within the Tripterygium genus are ambiguous; thus, our aim is to clarify the relationships within this genus using phylogeographic and phylogenetic analyses. Here, we first sequenced three plastid DNA regions (i.e., psbA‐trnH, rpl32‐trnL, and trnL‐trnF) and found that Tripterygium hypoglaucum and T. wilfordii were clustered together based on the strength of the topology in the phylogenetic analysis: T. hypoglaucum is polyphyletic, and T. wilfordii is paraphyletic. A spatial analysis of molecular variance showed that the best group value is 4, and the groups were almost consistent with the topology of in the phylogenetic analysis. The Mantel analyses of Tripterygium using IBD web showed statistically significant relationships between genetic and geographical distance distributions (r = .3479, p < .0001). The molecular dating using Fossil calibration indicated that the divergence in Tripterygium was approximately 8.13 Ma. Furthermore, we also analyzed four DNA regions (i.e., ITS2, psbA‐trnH, matK, and rbcL) that were obtained from the NCBI nucleotide database; these results showed that T. wilfordii and T. hypoglaucum clustered together, while Tripterygium regelii represented a separate cluster. Tripterygium hypoglaucum and T. wilfordii were never distinct lineages, and the species circumscriptions are artificial. We propose that T. wilfordii and T. hypoglaucum are conspecific, while T. regelii likely constitutes a separate species.
机译:雷公藤(Celastraceae)是传统中药。干燥的根和根茎是主要的药用部位。雷公藤已被确认为治疗系统性红斑狼疮,类风湿性关节炎,肾炎,哮喘,麻风病和癌症的潜在候选人。雷公藤属内的系统发育关系不明确。因此,我们的目的是通过系统地理和系统发育分析来阐明该属内的关系。在这里,我们首先对三个质体DNA区域进行了测序(即psbA-trnH,rpl32-trnL和trnL-trnF),并发现雷公藤和雷公藤基于系统发育分析中拓扑结构的强度聚在一起。猪草是多生的,而T.wilfordii是副生的。分子变异的空间分析表明,最佳组值为4,并且组与系统发育分析中的拓扑几乎一致。使用IBD网络对雷公藤的Mantel分析表明,遗传和地理距离分布之间存在统计学上的显着关系(r = .3479,p <.0001)。使用Fossil校准进行的分子测年表明, Tripterygium 的发散度约为8.13 Ma。此外,我们还分析了四个DNA区域(即ITS2, psb A‐ trn H, mat K和 rbc L)是从NCBI核苷酸数据库获得的;这些结果表明 T。 wilfordii T。胚珠成簇在一起,而 Tripterygium regelii 代表一个单独的簇。 Tripterygium hypoglaucum T。 wilfordii 从来不是不同的血统,物种的界限是人工的。我们建议该 T。 wilfordii T。胚珠是同种的,而 T是。 regelii 可能构成一个单独的物种。

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