The subarctic ancient Lake El'gygytgyn harbours the world's northernmost 'limnostygon community' and reshuffles crangonyctoid systematics (Crustacea, Amphipoda).

IF 1.8 2区 生物学 Q3 EVOLUTIONARY BIOLOGY
Denis Copilas-Ciocianu, Alexander Prokin, Evgeny Esin, Fedor Shkil, Dmitriy Zlenko, Grigorii Markevich, Dmitry Sidorov
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引用次数: 0

Abstract

The northward distribution limit of groundwater fauna is generally dictated by the extent of glacial ice sheets during the Pleistocene. However, some taxa can be found far above this limit, sometimes on isolated oceanic islands, implying long-term survival in subglacial subterranean refugia. Here we report a peculiar assemblage comprising two new depigmented and blind (stygomorphic) amphipods from the subarctic ancient lake El'gygytgyn (northern Far East): Palearcticarellus hyperboreus sp. nov. and Pseudocrangonyx elgygytgynicus sp. nov. Molecular phylogenetic analyses based on five markers confirm their affinity to Crangonyctidae and Pseudocrangonyctidae, respectively. Fossil-calibrated molecular dating indicates that the ages of both species predate the onset of Pleistocene glaciations by at least an order of magnitude. Although both species are clearly adapted for subterranean life and are related to groundwater taxa, they are only known from the lake waters (5-170-m depth). Despite being nested within Pseudocrangonyctidae, P. elgygytgynicus has an atypical third uropod that preserves a vestigial inner ramus, a trait characteristic to the monotypic sister family Crymostygidae. Given that this character was the main distinguishing feature between the two families, we propose merging Crymostygidae with Pseudocrangonyctidae. Our findings represent the world's northernmost record of stygomorphic amphipods, emphasising their relictual biogeography and the importance of Lake El'gygytgyn as a long-term, high latitude refugium for ancient pre-glacial fauna. ZooBank: urn:lsid:zoobank.org:pub:3A51D1F8-E65D-4A3A-B663-D5C40272E68B.

亚北极的古El'gygytgyn湖拥有世界上最北端的“湖沼生物群落”,并重组了crangonyctoid系统(甲壳类,片脚类)。
地下水动物群向北的分布界限一般由更新世冰川冰盖的范围决定。然而,有些分类群可以发现远远超过这个限制,有时在孤立的海洋岛屿上,这意味着长期生存在冰川下的地下避难所。本文报道了在远东北部的El’gygytgyn亚北极古湖泊中发现的一种奇特的双足动物组合:Palearcticarellus hyperboreus sp. 11和Pseudocrangonyx elgygytgynicus sp. 11。基于5个标记的分子系统发育分析分别证实了它们与Crangonyctidae和Pseudocrangonyctidae的亲缘关系。经过化石校准的分子定年表明,这两个物种的年龄至少比更新世冰期的开始要早一个数量级。虽然这两个物种都明显适应地下生活,并且与地下水分类群有关,但它们只在湖泊水域(5-170米深)中被发现。尽管P. elgygytgynicus被嵌套在Pseudocrangonyctidae中,但它有一个非典型的第三尾足,保留了一个退化的内分支,这是单型姐妹科Crymostygidae的特征。鉴于这一特征是两个科的主要区别特征,我们建议将Crymostygidae与Pseudocrangonyctidae合并。我们的发现代表了世界上最北端的stygomorphic片脚类记录,强调了它们的宗教生物地理学和El'gygytgyn湖作为古代冰川前动物的长期高纬度避难所的重要性。ZooBank: urn: lsid zoobank.org:酒吧:3 a51d1f8-e65d-4a3a-b663-d5c40272e68b。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Invertebrate Systematics
Invertebrate Systematics 生物-动物学
CiteScore
4.30
自引率
9.10%
发文量
35
审稿时长
>12 weeks
期刊介绍: Invertebrate Systematics (formerly known as Invertebrate Taxonomy) is an international journal publishing original and significant contributions on the systematics, phylogeny and biogeography of all invertebrate taxa. Articles in the journal provide comprehensive treatments of clearly defined taxonomic groups, often emphasising their biodiversity patterns and/or biological aspects. The journal also includes contributions on the systematics of selected species that are of particular conservation, economic, medical or veterinary importance. Invertebrate Systematics is a vital resource globally for scientists, students, conservation biologists, environmental consultants and government policy advisors who are interested in terrestrial, freshwater and marine systems. Invertebrate Systematics is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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