基于比较形态解剖学和线粒体系统发育的诺福克岛特有微囊蜗牛系统修正(腹足纲:Stylommatophora)

IF 1.8 2区 生物学 Q3 EVOLUTIONARY BIOLOGY
I. Hyman, Jennifer Caiza, F. Köhler
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引用次数: 0

摘要

摘要诺福克岛拥有丰富的陆地蜗牛多样性,以微囊藻科和Helicanidae为主,目前有10个特有属和27个公认的物种和亚种。我们利用线粒体基因COI和16S的比较形态学和系统发育分析,全面修订了这些分类群的分类学。我们证明,大多数“螺旋虫”物种属于微囊藻科,只有一个螺旋虫科物种存在(Dendrophellia mathewsi)。诺福克岛微囊藻类包括五个主要的分支。这些分支可能已经独立地在诺福克岛群殖民;然而,只有在更广泛的系统发育背景下,结合对超界类群的研究,才能实现清晰。三个分支在原地辐射成多个特有物种。基于我们的发现,基于密切的系统发育关系,我们将先前接受的Iredaleoconcha属、Nancibella属和Roybellia属识别为Allenoconcha的初级同义词,将Mathewsconcha属和Quintalia属识别为Advena的初级同义语。此外,我们证实了之前将Lutilodix、Parcolena和Dolapex作为Fanulena的初级同义词,将Belloconcha作为Advena的同义词,使诺福克岛微囊藻属的总数达到5个。其次,我们为这些属中的每一个提供了修订后的描述。第三,我们将belli Allenooncha、A.mathewsi、A.monspittensis、A.perdepata和A.royana从与Basispiris Allenoonca的同义词中删除。我们还将Helix patescens从与Quintalia flosculus的同义词中删除,将其视为Allenooncha的一员,并将Advena campbellii nepeanensis和Quintaria stoddartii intermedia复活为可接受的亚种。基于比较形态解剖学,我们将Allenoconsha mathewsi和A.monspittensi视为Allenooncha royana的初级同义词,将A.inopina视为AlleNOconsha calographe的初级同义名词,将Fanulena fraternus视为F.amiculus的初级同义语,将Advena campbellii-charon视为Advena Campbelli-campbellii的同义词,M.compacta和M.norfolkensis是苏氏新冠病毒的初级同义词,M.elevata是灰冠病毒的次级同义词,而M.microstriatum是费城新冠病毒(Advena phillipii)的初级同义语。最后,我们描述了三个新物种,Allenoconcha evansorum sp.nov.,A.margaretee sp.nov..和A.varmani sp.novs.总之,我们接受了27个微囊藻物种和亚种,它们都是诺福克岛群的特有种。我们提供了每个物种的近期和历史分布数据,并证明有七个物种或亚种可能已经灭绝。在系统发育树中,所有物种的基部分支长度都有很好的差异,但这种差异并没有在外部形态中得到一致的反映。一些亲缘关系密切的姐妹类群在外壳形态上非常相似,而另一些则表现出高度独特的外壳。我们假设,外壳形态的这些明显差异可能是适应不同生态位的结果,但我们目前对潜在的进化机制缺乏详细的了解。ZooBank:urn:lsid:ZooBank.org/pub:BEFC0F76-4405-4EE7-9060-B7D9FB84BCB1
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Systematic revision of the microcystid land snails endemic to Norfolk Island (Gastropoda: Stylommatophora) based on comparative morpho-anatomy and mitochondrial phylogenetics
Abstract. Norfolk Island harbours a rich land snail diversity dominated by the Microcystidae and Helicarionidae that are currently represented by 10 endemic genera and 27 accepted species and subspecies. We comprehensively revise the taxonomy of these taxa using comparative morphology and phylogenetic analyses of the mitochondrial genes COI and 16S. We demonstrate that most ‘helicarionid’ species belong to Microcystidae with only a single species of Helicarionidae present (Dendrolamellaria mathewsi). The Norfolk Island microcystids comprise five major clades. These clades may have independently colonised the Norfolk Island group; however, clarity may only be achieved in a broader phylogenetic context that incorporates the study of extralimital groups. Three clades have radiated in situ into multiple endemic species. Based on our findings, we recognise the previously accepted genera Iredaleoconcha, Nancibella and Roybellia as junior synonyms of Allenoconcha, and Mathewsoconcha and Quintalia as junior synonyms of Advena, based on the close phylogenetic relationships. Furthermore, we confirm the previous treatment of Lutilodix, Parcolena and Dolapex as junior synonyms of Fanulena and Belloconcha as a synonym of Advena, bringing the total number of Norfolk Island microcystid genera to five. Secondly, we provide revised descriptions for each of these genera. Thirdly, we remove Allenoconcha belli, A. mathewsi, A. monspittensis, A. perdepressa and A. royana from the synonymy with Allenoconcha basispiralis. We also remove Helix patescens from synonymy with Quintalia flosculus, treating this as a member of Allenoconcha, and resurrect Advena campbellii nepeanensis and Quintalia stoddartii intermedia as accepted subspecies. Based on comparative morpho-anatomy, we treat Allenoconcha mathewsi and A. monspittensis as junior synonyms of Allenoconcha royana, A. inopina as a junior synonym of Allenoconcha caloraphe, Fanulena fraternus as a junior synonym of F. amiculus, Advena campbellii charon as a synonym of Advena campbellii campbellii, Mathewsoconcha belli, M. compacta and M. norfolkensis as junior synonyms of Advena suteri, M. elevata as a junior synonym of Advena grayi, and M. microstriatum as a junior synonym of Advena phillipii. Lastly, we describe three new species, Allenoconcha evansorum sp. nov., A. margaretae sp. nov. and A. varmani sp. nov. In summary, we accept 27 microcystid species and subspecies all of which are endemic to the Norfolk Island group. We provide recent and historical distribution data for each species and demonstrate that seven species or subspecies are probably extinct. All species are well differentiated in terms of basal branch lengths in the phylogenetic tree, but this distinction is not consistently reflected in the external morphology. Some closely related sister-taxa are very similar in shell morphology whereas others exhibit highly distinctive shells. We hypothesise that these stark differences in shell morphology may result from adaptation to different ecological niches, yet we currently lack a detailed understanding of the underlying evolutionary mechanisms. ZooBank: urn:lsid:zoobank.org:pub:BEFC0F76-4405-4EE7-9060-B7D9FB84BCB1
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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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