Yu Fahong, Li Shiping, Kilpatrick William C, McGuire Peter M, He Kai, Wei Wanhong
ICBR, University of Florida, Gainesville, FL 32608, USA.
Zoolog Sci. 2012 Aug;29(8):518-26. doi: 10.2108/zsj.29.518.
We reconstructed the demographic history of the plateau pika (Ochotona curzoniae) on the Qinghai-Tibetan plateau by using genetic variation data obtained from spatially distributed populations across much of the plateau. We obtained sequence data, including cob (1,140 bp) and D-loop sequences (732 bp), from 144 individuals at sites ranging from the high-altitude interior to the relatively low-altitude northeastern plateau, and identified 37 and 42 unique haplotypes, respectively. Phylogenetic analysis and haplotype networks based on the individual and the combined datasets of cob and D-loop sequences clustered all populations into four well-supported major groups, and the interaction between vicariance, dispersal, and habitat fragmentation resulted in the current geographical distribution and genetic diversity of O. curzoniae on the plateau. Analysis of molecular variance (AMOVA) and mismatch distribution suggested that the recent continuous uplifts of the plateau contributed to the radiation and diversification of the O. curzoniae populations occurring there.
我们利用从青藏高原大部分地区空间分布的种群中获得的遗传变异数据,重建了高原鼠兔(Ochotona curzoniae)在青藏高原的种群历史。我们从海拔较高的内陆地区到海拔相对较低的高原东北部地区的144个个体中获得了序列数据,包括细胞色素b(cob,1140bp)和D-loop序列(732bp),并分别鉴定出37个和42个独特的单倍型。基于cob和D-loop序列的个体数据集及合并数据集的系统发育分析和单倍型网络,将所有种群聚类为四个得到充分支持的主要类群,隔离分化、扩散和栖息地破碎化之间的相互作用导致了高原鼠兔目前在高原上的地理分布和遗传多样性。分子方差分析(AMOVA)和失配分布分析表明,近期高原的持续隆升促成了高原鼠兔种群在那里的辐射和多样化。