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  4. Exploring Paleogene Tibet's warm temperate environments through target enrichment and phylogenetic niche modelling of Himalayan spiny frogs (Paini, Dicroglossidae)
 
Verlagslink DOI
10.1111/mec.17446

Exploring Paleogene Tibet's warm temperate environments through target enrichment and phylogenetic niche modelling of Himalayan spiny frogs (Paini, Dicroglossidae)

Veröffentlichungsdatum
2024-08
Autoren
Hofmann, Sylvia  
Rödder, Dennis  
Andermann, Tobias  
Matschiner, Michael  
Riedel, Jendrian  
Baniya, Chitra B  
Flecks, Morris  
Yang, Jianhuan  
Jiang, Ke  
Jianping, Jiang  
Litvinchuk, Spartak  
Martin, Sebastian  
Masroor, Rafaqat  
Nothnagel, Michael  
Vershinin, Vladimir  
Zheng, Yuchi  
Jablonski, Daniel  
Schmidt, Joachim  
Podsiadlowski, Lars  
Zusammenfassung
The Cenozoic topographic development of the Himalaya-Tibet orogen (HTO) substantially affected the paleoenvironment and biodiversity patterns of High Asia. However, concepts on the evolution and paleoenvironmental history of the HTO differ massively in timing, elevational increase and sequence of surface uplift of the different elements of the orogen. Using target enrichment of a large set of transcriptome-derived markers, ancestral range estimation and paleoclimatic niche modelling, we assess a recently proposed concept of a warm temperate paleo-Tibet in Asian spiny frogs of the tribe Paini and reconstruct their historical biogeography. That concept was previously developed in invertebrates. Because of their early evolutionary origin, low dispersal capacity, high degree of local endemism, and strict dependence on temperature and humidity, the cladogenesis of spiny frogs may echo the evolution of the HTO paleoenvironment. We show that diversification of main lineages occurred during the early to Mid-Miocene, while the evolution of alpine taxa started during the late Miocene/early Pliocene. Our distribution and niche modelling results indicate range shifts and niche stability that may explain the modern disjunct distributions of spiny frogs. They probably maintained their (sub)tropical or (warm)temperate preferences and moved out of the ancestral paleo-Tibetan area into the Himalaya as the climate shifted, as opposed to adapting in situ. Based on ancestral range estimation, we assume the existence of low-elevation, climatically suitable corridors across paleo-Tibet during the Miocene along the Kunlun, Qiangtang and/or Gangdese Shan. Our results contribute to a deeper understanding of the mechanisms and processes of faunal evolution in the HTO.
Schlagwörter
Himalaya

; 

Paini

; 

Tibetan Plateau

; 

biogeography

; 

niche modelling

; 

paleoenvironment

; 

uplift
Verlag
Wiley
Institution
Hochschule Bremen  
Fachbereich
Hochschule Bremen - Fakultät 5: Natur und Technik  
Dokumenttyp
Artikel/Aufsatz
Zeitschrift/Sammelwerk
Molecular Ecology  
Band
33
Heft
15
Startseite
e17446
Sprache
Englisch

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