Phylogenetic discordance arises from incomplete lineage sorting and pre-speciation introgression during erosionmediated radiation of Asian warty newtsOA
The genus Paramesotriton Chang,1935,comprising 15 species classified into two groups,exhibits the broadest geographical distribution among modern Asian newts,extending across southern China from west to east and representing a prominent example of adaptive radiation.Despite this success,intrageneric phylogenetic relationships among species remain unresolved,with particularly poor resolution within the Paramesotriton caudopunctatus species group(PCSG).In this study,restriction-site-associated DNA sequencing from five representative PCSG species was combined with previously published mitochondrial genomes to generate a genome-scale phylogenomic framework.The resulting analyses yielded robust support for interspecific relationships within PCSG.Gene tree discordance was primarily attributable to incomplete lineage sorting,with additional contributions from pre-speciation gene flow,as indicated by ASTRAL,HyDe,Dsuite,and PhyloNet.Evidence also supported hybridization between P.longliensis and an unidentified Paramesotriton lineage,consistent with a hybrid origin for P.zhijinensis.Comparative genomic and biogeographic inference further indicated that erosional isolation associated with exposure of carbonate sedimentary rocks facilitated allopatric divergence among PCSG lineages.Moreover,divergence timing aligned PCSG origin and diversification with Miocene paleoclimatic variability and progressive erosion of carbonate substrates,directly implicating karst landscape evolution in lineage formation within Asian warty newts.An erosion-driven speciation framework is therefore supported,in which recurrent episodes of geomorphological restructuring of karst mountain systems repeatedly imposed geographic isolation,driving successive allopatric diversification during both tectonically active and tectonically stable periods.
Tao Luo;Jia-Jia Wang;Ming-Yuan Xiao;Mei Liao;Huai-Qing Deng;Ning Xiao;Jiang Zhou
School of Karst Science,Guizhou Normal University,Guiyang,Guizhou 550025,China School of Life Sciences,Yunnan University,Kunming,Yunnan 650091,ChinaSchool of Karst Science,Guizhou Normal University,Guiyang,Guizhou 550025,ChinaSchool of Life Sciences,Guizhou Normal University,Guiyang,Guizhou 550025,ChinaSchool of Karst Science,Guizhou Normal University,Guiyang,Guizhou 550025,ChinaSchool of Life Sciences,Guizhou Normal University,Guiyang,Guizhou 550025,ChinaGuiyang Kangyang University,Guiyang,Guizhou 550081,ChinaSchool of Karst Science,Guizhou Normal University,Guiyang,Guizhou 550025,China
生物科学
PhylogenomicsIncomplete lineage sortingHybridizationRadiationRock erosion
《Zoological Research》 2026 (2)
P.471-486,16
supported by the Endangerment Processes and Mechanisms of Endangered Flagship Animals(2022YFF1301502)Diversity and Distribution Survey of Chiroptera Species in China(2021FY100302)Guizhou Normal University Academic Emerging Talent Fund Project(Qianshi Xin Miao(2021)20).
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