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Evolution and diversity of two cisco forms in an outlet of glacial Lake Algonquin

机译:两种思科形式的进化和多样性在冰川湖藻泉出口中形成

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The diversity of Laurentian Great Lakes ciscoes ( Coregonus artedi , sensu lato) arose via repeated local adaptive divergence including deepwater ciscoes that are now extirpated or threatened. The nigripinnis form, or Blackfin Cisco, is extirpated from the Great Lakes and remains only in Lake Nipigon. Putative nigripinnis populations were recently discovered in sympatry with artedi in a historical drainage system of glacial Lake Algonquin, the precursor of lakes Michigan and Huron. Given the apparent convergence on Great Lakes form, we labeled this form blackfin. Here, we test the hypothesis that nigripinnis may have colonized this area from the Great Lakes as a distinct lineage. It would then represent a relict occurrence of the historical diversity of Great Lakes ciscoes. Alternatively, blackfin could have evolved in situ in several lakes. We captured more than 600 individuals in the benthic or pelagic habitat in 14 lakes in or near Algonquin Provincial Park (Ontario, Canada). Fish were compared based on habitat, morphology, and genetic variation at 6,676 SNPs. Contrary to our expectations, both cisco and blackfin belonged to an Atlantic lineage that colonized the area from the east, not from the Great Lakes. Sympatric cisco and blackfin were closely related while fish from different lakes were genetically differentiated, strongly suggesting the repeated in situ origin of each form. Across lakes, there was a continuum of ecological, morphological, and genetic differentiation that could be associated with alternative resources and lake characteristics. This study uncovers a new component of cisco diversity in inland lakes of Canada that evolved independently from ciscoes of the Laurentian Great lakes. The diversity of cisco revealed in this study and across their Canadian range presents a challenge for designating conservation units at the intraspecific level within the framework of the Committee on the Status of Endangered Wildlife in Canada (COSEWIC).
机译:劳伦特伟大的湖泊思科(Coregonus Artedi,Sensu Lato)的多样性通过重复的本地自适应分歧,包括现在突出或威胁的深水Ciscoes。 Nigripinnis形式或Blackfin Cisco突出了大湖泊,只留在尼基尼湖。最近在冰川湖藻泉的历史引流系统中发现了艺术艺术品的Sympatry群体,湖泊湖奎因斯的历史排水系统中发现。鉴于大湖泊形式的明显融合,我们标记了这表称Blackfin。在这里,我们测试Nigripinnis可能从大湖中殖民的假设,作为一个不同的血统。然后,它将代表大湖思科的历史多样性的遗传发生。或者,Blackfin可以在几个湖泊中原位进化。在Algonquin省级公园(加拿大安大略省)的14湖或附近的14湖中,我们捕获了超过600人的底栖或骨盆栖息地。基于6,676个SNP的栖息地,形态和遗传变异进行比较鱼。与我们的期望相反,思科和黑鳍金属于大西洋谱系,殖民地从东方殖民地,而不是来自大湖泊。 SympaTric Cisco和Blackfin密切相关,而来自不同湖泊的鱼在遗传上分化,强烈地表明每种形式的原位起源。横跨湖泊,有一个永恒的生态,形态和遗传分化,可能与替代资源和湖泊特征有关。本研究揭示了加拿大内陆湖泊思科多样性的新成分,从劳伦特伟大的湖泊的思科独立发展。思科的多样性在本研究中透露,在加拿大范围内揭示了在加拿大濒危野生动物委员会框架内的内部内部水平中指定保护单位的挑战呈现出挑战性群体(COSEWIC)。

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