Molecular phylogeny and genetic diversity of some Lepidagathis species (Acanthaceae) based on nuclear and chloroplast regions

S. Kadam, A. Tamboli, R. Mane, Akshay P. Jangam, S. Yadav, Y. Choo, J. Pak
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Abstract

Abstract Lepidagathis Wild., a pantropical genus belonging to the tribe Barlerieae, contains ∼147 species. Considerable morphological work has been done on Lepidagathis, but some taxonomical doubts and contrasting interpretations still persist. Molecular analysis is the best tool to resolve the taxonomic doubts, but few nucleotide sequence data are available to date on Lepidagathis. Recently, some phylogenetic and morphological studies have proposed the inclusion of Teliostachya and Lophostachys in Lepidagathis. This work constitutes the first phylogenetic analysis of some Lepidagathis species based on chloroplast and nuclear regions. Both Bayesian and Maximum Likelihood phylogenetic analyses divide studied Lepidagathis species into two main clades, i.e. Clade A and B and place the Indian endemic Lepidagathis in Clade A with strong support. Phylogeny based on combined data resolve Lepidagathis, Barleria, and Crabbea lineages with stronger support than nrITS and cpDNA phylogenies. This phylogenetic study supports previous systematic revisions about the inclusion of Lophostachys and Acanthura species in Lepidagathis as well as the inclusion of Golaea and Acanthostelma into Crabbea species. In conclusion, this study constitutes a baseline molecular phylogeny for Lepidagathis and, in particular, contributes to the knowledge of the genetic diversity of Indian representatives of the genus.
基于核和叶绿体区域的一些鳞翅目植物的分子系统发育和遗传多样性
野生鳞翅目;属于Barlerieae族的泛热带属,包含约147种。关于鳞蝗的形态学研究已经做了相当多的工作,但在分类学上仍存在一些疑问和不同的解释。分子分析是解决其分类问题的最佳工具,但迄今为止关于鳞蝗的核苷酸序列数据很少。近年来,一些系统发育和形态学研究已经提出在鳞翅目中包括远翅目(Teliostachya)和远翅目(Lophostachys)。本研究首次基于叶绿体和核区对一些鳞翅目植物进行系统发育分析。贝叶斯和最大似然系统发育分析均将所研究的鳞翅目划分为两个主要分支,即A枝和B枝,并将印度特有的鳞翅目置于A枝中,这有很强的支持。基于综合数据的系统发育比nrITS和cpDNA系统发育更能支持Lepidagathis, Barleria和Crabbea谱系。这一系统发育研究支持了以往关于将Lophostachys和Acanthura种纳入Lepidagathis以及将Golaea和Acanthostelma纳入Crabbea种的系统修正。总之,这项研究构成了鳞翅目植物分子系统发育的基线,特别是有助于了解该属印度代表的遗传多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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