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核和线粒体 DNA 序列数据揭示了巴尔布斯鱼(鲤科)在巴尔干半岛古湖系统中的进化历史。

Nuclear and mitochondrial DNA sequence data reveal the evolutionary history of Barbus (Cyprinidae) in the ancient lake systems of the Balkans.

机构信息

Laboratory of Fish Genetics, Department of Vertebrate Evolutionary Biology and Genetics, Institute of Animal Physiology and Genetics, Academy of Sciences of the Czech Republic, 277 21 Libechov, Czech Republic.

出版信息

Mol Phylogenet Evol. 2010 May;55(2):488-500. doi: 10.1016/j.ympev.2010.01.030. Epub 2010 Feb 6.

Abstract

Freshwater fauna of ancient lakes frequently contain endemic taxa thought to have originated during the long existence of these lakes, yet uncertainties remain as to whether they represent distinct genetic lineages with respect to more widespread relatives and to the relative roles of isolation and dispersal in their evolution. Phylogenetic analyses of sequence variation at nuclear and mitochondrial genes were used to examine these issues for the freshwater fish genus Barbus in two European ancient lake systems on the Balkan Peninsula. The nuclear and mitochondrial data yielded concordant phylogeographic patterns though incomplete sorting of nuclear haplotypes between some mitochondrial clades was detected. The distributions of two currently recognized species investigated here do not match the distributions of evolutionary lineages revealed by phylogenetic analyses. The Prespa barbel, Barbus prespensis, is not endemic to the lakes Prespa as previously thought but is instead found to be widespread in the south-eastern Adriatic Sea basin, with a distribution largely corresponding to the basin of the now extinct Lake Maliq historically connected with Lake Prespa. On the other hand, a cryptic phylogenetic subdivision in a widespread species, B. rebeli, was discovered to be more distant from B. rebeli than from other Barbus species and to be endemic to the system of connected lakes Ohrid and Shkodra. The division coincides with the hydrogeographical boundary delimiting distributions of other freshwater fishes, and we suggest that this newly discovered evolutionary lineage represents a distinct species. These findings support the emerging pattern that endemic taxa have evolved not through isolation of individual lakes, but in systems of currently and historically interconnected lakes and their wider basins.

摘要

淡水古湖中的动物群常常包含被认为是在这些湖泊长期存在过程中起源的特有分类群,但仍存在不确定性,即它们相对于更广泛的亲缘关系以及隔离和扩散在其进化中的相对作用,是否代表独特的遗传谱系。我们利用核基因和线粒体基因序列变异的系统发育分析,研究了巴尔干半岛两个欧洲古湖系统中的淡水鱼类属巴氏鱼的这些问题。尽管在一些线粒体支系之间检测到核单倍型不完全分离,但核和线粒体数据产生了一致的系统地理格局。这里研究的两个目前公认的物种的分布与系统发育分析揭示的进化谱系的分布不匹配。以前认为普雷斯帕鲃是普雷斯帕湖的特有种,但实际上它广泛分布于东南亚得里亚海盆地,其分布范围与历史上与普雷斯帕湖相连的现已灭绝的马利克湖的流域大致相符。另一方面,在广泛分布的物种巴氏鱼 B. rebeli 中发现了一个隐秘的系统发育分支,它与巴氏鱼 B. rebeli 的距离比与其他巴氏鱼的距离更远,并且是连接的奥赫里德湖和什科德拉湖系统的特有种。这种划分与划分其他淡水鱼类分布的水文地理边界相吻合,我们认为这种新发现的进化谱系代表了一个独特的物种。这些发现支持了一个新兴模式,即特有分类群不是通过单个湖泊的隔离进化而来,而是在当前和历史上相互连接的湖泊及其更广泛的流域系统中进化而来。

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