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Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts

Global climatic transitions and Tibetan Plateau uplifts are hypothesized to have profoundly impacted biodiversity in southeastern Asia. To further test the hypotheses related to the impacts of these incidents, we investigated the diversification patterns of the newt genus Tylototriton sensu lato, di...

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Detalles Bibliográficos
Autores principales: Wang, Bin, Nishikawa, Kanto, Matsui, Masafumi, Nguyen, Truong Quang, Xie, Feng, Li, Cheng, Khatiwada, Janak Raj, Zhang, Baowei, Gong, Dajie, Mo, Yunming, Wei, Gang, Chen, Xiaohong, Shen, Youhui, Yang, Daode, Xiong, Rongchuan, Jiang, Jianping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853667/
https://www.ncbi.nlm.nih.gov/pubmed/29576937
http://dx.doi.org/10.7717/peerj.4384
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author Wang, Bin
Nishikawa, Kanto
Matsui, Masafumi
Nguyen, Truong Quang
Xie, Feng
Li, Cheng
Khatiwada, Janak Raj
Zhang, Baowei
Gong, Dajie
Mo, Yunming
Wei, Gang
Chen, Xiaohong
Shen, Youhui
Yang, Daode
Xiong, Rongchuan
Jiang, Jianping
author_facet Wang, Bin
Nishikawa, Kanto
Matsui, Masafumi
Nguyen, Truong Quang
Xie, Feng
Li, Cheng
Khatiwada, Janak Raj
Zhang, Baowei
Gong, Dajie
Mo, Yunming
Wei, Gang
Chen, Xiaohong
Shen, Youhui
Yang, Daode
Xiong, Rongchuan
Jiang, Jianping
author_sort Wang, Bin
collection PubMed
description Global climatic transitions and Tibetan Plateau uplifts are hypothesized to have profoundly impacted biodiversity in southeastern Asia. To further test the hypotheses related to the impacts of these incidents, we investigated the diversification patterns of the newt genus Tylototriton sensu lato, distributed across the mountain ranges of southeastern Asia. Gene-tree and species-tree analyses of two mitochondrial genes and two nuclear genes revealed five major clades in the genus, and suggested several cryptic species. Dating estimates suggested that the genus originated in the early-to-middle Miocene. Under different species delimitating scenarios, diversification analyses with birth-death likelihood tests indicated that the genus held a higher diversification rate in the late Miocene-to-Pliocene era than that in the Pleistocene. Ancestral area reconstructions indicated that the genus originated from the northern Indochina Peninsula. Accordingly, we hypothesized that the Miocene Climatic Transition triggered the diversification of the genus, and the reinforcement of East Asian monsoons associated with the stepwise uplifts of the Tibetan Plateau promoted the radiation of the genus in southeastern Asia during the Miocene-to-Pliocene period. Quaternary glacial cycles likely had limited effects on speciation events in the genus, but mainly had contributions on their intraspecific differentiations.
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spelling pubmed-58536672018-03-24 Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts Wang, Bin Nishikawa, Kanto Matsui, Masafumi Nguyen, Truong Quang Xie, Feng Li, Cheng Khatiwada, Janak Raj Zhang, Baowei Gong, Dajie Mo, Yunming Wei, Gang Chen, Xiaohong Shen, Youhui Yang, Daode Xiong, Rongchuan Jiang, Jianping PeerJ Biodiversity Global climatic transitions and Tibetan Plateau uplifts are hypothesized to have profoundly impacted biodiversity in southeastern Asia. To further test the hypotheses related to the impacts of these incidents, we investigated the diversification patterns of the newt genus Tylototriton sensu lato, distributed across the mountain ranges of southeastern Asia. Gene-tree and species-tree analyses of two mitochondrial genes and two nuclear genes revealed five major clades in the genus, and suggested several cryptic species. Dating estimates suggested that the genus originated in the early-to-middle Miocene. Under different species delimitating scenarios, diversification analyses with birth-death likelihood tests indicated that the genus held a higher diversification rate in the late Miocene-to-Pliocene era than that in the Pleistocene. Ancestral area reconstructions indicated that the genus originated from the northern Indochina Peninsula. Accordingly, we hypothesized that the Miocene Climatic Transition triggered the diversification of the genus, and the reinforcement of East Asian monsoons associated with the stepwise uplifts of the Tibetan Plateau promoted the radiation of the genus in southeastern Asia during the Miocene-to-Pliocene period. Quaternary glacial cycles likely had limited effects on speciation events in the genus, but mainly had contributions on their intraspecific differentiations. PeerJ Inc. 2018-03-12 /pmc/articles/PMC5853667/ /pubmed/29576937 http://dx.doi.org/10.7717/peerj.4384 Text en ©2018 Wang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Biodiversity
Wang, Bin
Nishikawa, Kanto
Matsui, Masafumi
Nguyen, Truong Quang
Xie, Feng
Li, Cheng
Khatiwada, Janak Raj
Zhang, Baowei
Gong, Dajie
Mo, Yunming
Wei, Gang
Chen, Xiaohong
Shen, Youhui
Yang, Daode
Xiong, Rongchuan
Jiang, Jianping
Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title_full Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title_fullStr Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title_full_unstemmed Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title_short Phylogenetic surveys on the newt genus Tylototriton sensu lato (Salamandridae, Caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
title_sort phylogenetic surveys on the newt genus tylototriton sensu lato (salamandridae, caudata) reveal cryptic diversity and novel diversification promoted by historical climatic shifts
topic Biodiversity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853667/
https://www.ncbi.nlm.nih.gov/pubmed/29576937
http://dx.doi.org/10.7717/peerj.4384
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