Impacts of late Quaternary environmental change on the long-tailed ground squirrel(Urocitellus undulatus)in Mongolia

被引:0
作者
Bryan S.McLean [1 ]
Batsaikhan Nyamsuren [2 ]
ANDrey Tchabovsky [3 ]
Joseph A.Cook [4 ]
机构
[1] University of Florida, Florida Museum of Natural History
[2] Department of Biology, School of Arts and Sciences, National University of Mongolia
[3] Laboratory of Population Ecology, A.N. Severtsov Institute of Ecology and Evolution
[4] University of New Mexico, Department of Biology and Museum of Southwestern Biology
基金
美国国家科学基金会;
关键词
Central Asia; Gobi Desert; Great Lakes Depression; Mongolia; Phylogeography;
D O I
暂无
中图分类号
Q915 [古动物学];
学科分类号
0709 ; 070903 ;
摘要
Impacts of Quaternary environmental changes on mammal faunas of central Asia remain poorly understood due to a lack of comprehensive phylogeographic sampling for most species. To help address this knowledge gap, we conducted the most extensive molecular analysis to date of the long-tailed ground squirrel(Urocitellus undulatus Pallas 1778) in Mongolia, a country that comprises the southern core of this species’ range. Drawing on material from recent collaborative field expeditions,we genotyped 128 individuals at two mitochondrial genes(cytochrome b and cytochrome oxidase I;1 797 bp total). Phylogenetic inference supports the existence of two deeply divergent infraspecific lineages(corresponding to subspecies U. u. undulatus and U. u. eversmanni), a result in agreement with previous molecular investigations but discordant with patterns of range-wide craniometric and external phenotypic variation. In the widespread western eversmanni lineage, we recovered geographical y-associated clades from the:(a) Khangai,(b) Mongolian Altai, and(c) Govi Altai mountain ranges. Phylogeographic structure in U. u. eversmanni is consistent with an isolation-by-distance model; however, genetic distances are significantly lower than among subspecies, and intra-clade relationships are largely unresolved. The latter patterns, as wel as the relatively higher nucleotide polymorphism of populations from the Great Lakes Depression of northwestern Mongolia, suggest a history of range shifts into these lowland areas in response to Pleistocene glaciation and environmental change,followed by upslope movements and mitochondrial lineage sorting with Holocene aridification. Our study illuminates possible historical mechanisms responsible for U. undulatus genetic structure and contributes to a framework for ongoing exploration of mammalian response to past and present climate change in central Asia.
引用
收藏
页码:364 / 372
页数:9
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