Sebastian Böckmann, Marleen Seidler, Hendrik Schubert, Sandra Kube
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引用次数: 2
摘要
本研究通过来自13个不同地点的88个样本的线粒体细胞色素c氧化酶亚基I基因(COI)序列变异,以及来自大西洋和太平洋盆地的进一步发表数据,评估了波罗的海和北海Evadne nordmanni的遗传关系。来自北海和波罗的海的nordmanni E. COI序列由28个单倍型组成的集群所代表,该集群以一个中心单倍型为主,占这些海域个体的一半以上,除了来自Arkona盆地(波罗的海)的一个样本。总的来说,北海和波罗的海的人口似乎相对同质,北海似乎是波罗的海人口的来源。然而,单倍型网络还包括波罗的海单倍型的单倍型群,包括4个单倍型,分别代表21个个体,并以来自Arkona盆地的标本为主。这激发了关于波罗的海一个遗传上独特的种群的冰川后进化的讨论,这与当地特殊的盐度制度有关。波罗的海的平均单倍型多样性是北海平均多样性的两倍,h = 0.64比h = 0.30,这在一定程度上反映了独特单倍群的存在。
Population genetics of two allopatric (North Sea and Baltic Sea) populations of Evadne nordmanni (Podonidae): Similarities and differences
This study assessed the genetic relationship between Evadne nordmanni of the Baltic Sea and the North Sea from sequence variation of the mitochondrial cytochrome c oxidase subunit I gene (COI) of 88 specimens from 13 different sites, and from further published data from the Atlantic and Pacific basins. The COI sequences of E. nordmanni from the North and Baltic Seas were represented by a coherent cluster of 28 haplotypes dominated by a central haplotype that accounted for over half of the individuals from these seas, from all samples except one from the Arkona Basin (Baltic Sea). Overall, the North and Baltic Sea populations appear relatively homogenous and the North Sea plausibly represents the source population for the Baltic one. However, the haplotype network also involved a haplogroup of exclusively Baltic Sea haplotypes, comprising four haplotypes represented by 21 individuals and strongly dominated by specimens from the Arkona basin. This inspires discussion about the post-glacial evolution of a genetically distinct Baltic Sea group, related to a special local salinity regime. Partly as a reflection of the presence of the unique haplogroup, the mean haplotype diversity in the Baltic was twice as high as the mean diversity in the North Sea, h = 0.64 versus h = 0.30.
期刊介绍:
As human populations grow across the planet, water security, biodiversity loss and the loss of aquatic ecosystem services take on ever increasing priority for policy makers. International Review of Hydrobiology brings together in one forum fundamental and problem-oriented research on the challenges facing marine and freshwater biology in an economically changing world. Interdisciplinary in nature, articles cover all aspects of aquatic ecosystems, ranging from headwater streams to the ocean and biodiversity studies to ecosystem functioning, modeling approaches including GIS and resource management, with special emphasis on the link between marine and freshwater environments. The editors expressly welcome research on baseline data. The knowledge-driven papers will interest researchers, while the problem-driven articles will be of particular interest to policy makers. The overarching aim of the journal is to translate science into policy, allowing us to understand global systems yet act on a regional scale.
International Review of Hydrobiology publishes original articles, reviews, short communications, and methods papers.