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DOI10.1111/jbi.13578
Ancient habitat shifts and organismal diversification are decoupled in the African viper genus Bitis (Serpentes: Viperidae)
Barlow, Axel1; Wuster, Wolfgang1; Kelly, Christopher M. R.2; Branch, William R.3,4; Phelps, Tony5; Tolley, Krystal A.6,7
发表日期2019
ISSN0305-0270
EISSN1365-2699
卷号46期号:6页码:1234-1248
英文摘要

Aim The expansion of open habitats during the mid-Miocene has been hypothesized as a driver of allopatric speciation for many African taxa. This habitat-dependent mode of diversification has been implicated in the shift from C-3 (e.g. forest/woodland) to C-4 dominated systems (i.e. open savanna, grasslands) in a number of African squamates. We examined this hypothesis using a genus of African viperid snakes (Bitis) with both open habitat and forest-dwelling representatives. Location Africa. Methods A comprehensive multilocus dataset was used to generate a calibrated species tree using a multispecies coalescent model. Individual gene trees and patterns of nuclear allele sharing were used to assess species monophyly and isolation. To test the habitat-dependent evolution hypothesis, we generated an ancestral character state reconstruction for open and closed habitats using the dated phylogeny. This was related to the timing of open habitat expansion and forest/woodland contraction in Africa. Results The genus Bitis originated in the Oligocene, with species level diversification in the late Miocene/Pliocene. Four well-supported clades correspond to the recognized subgenera Bitis, Keniabitis, Macrocerastes and Calechidna. Several previously unrecognized lineages potentially represent cryptic species. Main conclusions Habitat-dependent evolution does not appear to have been a main driver for generic level viperine diversification: the ancestral state for Bitis was open habitat and at least one clade moved into forest in the Miocene, long after forest had contracted and fragmented. Forest-dependent species diversified only in the late Miocene, presumably as forest became further reduced in extent, fitting an allopatric model of speciation. Although our results do not favour a general pattern of habitat-dependent diversification in Bitis, cladogenesis within the subgenus Calechidna for "arenicolous" species (Bitis caudalis complex) and "rupicolous" species (B. atropos-cornuta complex), corresponds to the aridification of southwest Africa. This suggests there are subtleties not captured in the broad open habitat category, which are relevant for understanding the role of habitat-dependent evolution.


WOS研究方向Environmental Sciences & Ecology ; Physical Geography
来源期刊JOURNAL OF BIOGEOGRAPHY
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/98589
作者单位1.Bangor Univ, Environm Ctr Wales, Sch Nat Sci, Bangor, Gwynedd, Wales;
2.Graeme Coll, Phys Sci Dept, Grahamstown, South Africa;
3.Bayworld, Port Elizabeth, South Africa;
4.Nelson Mandela Univ, Dept Zool, Port Elizabeth, South Africa;
5.Cape Reptile Inst, Oudtshoorn, South Africa;
6.South African Natl Biodivers Inst, Kirstenbosch Res Ctr, Private Bag X7, ZA-7735 Cape Town, South Africa;
7.Univ Johannesburg, Ctr Ecol Genom & Wildlife Conservat, Johannesburg, South Africa
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Barlow, Axel,Wuster, Wolfgang,Kelly, Christopher M. R.,et al. Ancient habitat shifts and organismal diversification are decoupled in the African viper genus Bitis (Serpentes: Viperidae)[J],2019,46(6):1234-1248.
APA Barlow, Axel,Wuster, Wolfgang,Kelly, Christopher M. R.,Branch, William R.,Phelps, Tony,&Tolley, Krystal A..(2019).Ancient habitat shifts and organismal diversification are decoupled in the African viper genus Bitis (Serpentes: Viperidae).JOURNAL OF BIOGEOGRAPHY,46(6),1234-1248.
MLA Barlow, Axel,et al."Ancient habitat shifts and organismal diversification are decoupled in the African viper genus Bitis (Serpentes: Viperidae)".JOURNAL OF BIOGEOGRAPHY 46.6(2019):1234-1248.
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