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不同的殖民浪潮是中欧阿尔卑斯山地区淡水狗鱼(Cottus gobio)多样化的基础。

Distinct colonization waves underlie the diversification of the freshwater sculpin (Cottus gobio) in the Central European Alpine region.

机构信息

Department of Environmental Sciences, University of Basel, Basel, Switzerland.

Department of Aquatic Ecology and Macroevolution, Institute of Ecology and Evolution, University of Bern, Bern, Switzerland.

出版信息

J Evol Biol. 2018 Sep;31(9):1254-1267. doi: 10.1111/jeb.13339. Epub 2018 Jul 5.

Abstract

Ecological speciation and adaptive radiation are key processes shaping northern temperate freshwater fish diversity. Both often involve parapatric differentiation between stream and lake populations and less often, sympatric intralacustrine diversification into habitat- and resource-associated ecotypes. However, few taxa have been studied, calling for studies of others to investigate the generality of these processes. Here, we test for diversification within catchments in freshwater sculpins in a network of peri-Alpine lakes and streams. Using 8047 and 13 182 restriction site-associated (RADseq) SNPs, respectively, we identify three deeply divergent phylogeographic lineages associated with different major European drainages. Within the Aare catchment, we observe populations from geographically distant lakes to be genetically more similar to each other than to populations from nearby streams. This pattern is consistent with two distinct colonization waves, rather than by parapatric ecological speciation after a single colonization wave. We further find two distinct depth distribution modes in three lakes of the Aare catchment, one in very shallow and one in very deep water, and significant genomewide differentiation between these in one lake. Sculpins in the Aare catchment appear to represent an early-stage adaptive radiation involving the evolution of a lacustrine lineage distinct from parapatric stream sculpins and the repeated onset of depth-related intralacustrine differentiation.

摘要

生态物种形成和适应辐射是塑造北温带淡水鱼类多样性的关键过程。这两个过程通常涉及溪流和湖泊种群的并系分化,较少涉及同域湖泊内的栖息地和资源相关生态型的分化。然而,只有少数类群得到了研究,因此需要对其他类群进行研究,以调查这些过程的普遍性。在这里,我们在阿尔卑斯山周边湖泊和溪流网络中研究了淡水拟鮈属鱼类的流域内分化。我们分别使用 8047 个和 13182 个基于限制位点的关联 (RADseq) SNP 来识别与不同主要欧洲水系相关的三个深度分化的系统发育谱系。在阿勒尔流域,我们观察到来自地理上遥远湖泊的种群彼此之间的遗传相似性比来自附近溪流的种群更高。这种模式与两次不同的殖民浪潮一致,而不是单一殖民浪潮后并系的生态物种形成。我们还在阿勒尔流域的三个湖泊中发现了两种不同的深度分布模式,一种在极浅水中,另一种在极深水中,在其中一个湖中,这些模式与深度相关的基因组分化显著。阿勒尔流域的拟鮈属鱼类似乎代表了一个早期的适应辐射过程,涉及与并系溪流拟鮈属鱼类不同的湖泊谱系的进化,以及与深度相关的湖泊内分化的多次发生。

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