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首页> 外文期刊>Invertebrate systematics >Setting a morphological framework for the genus Verhoeffiella (Collembola, Entomobryidae) for describing new troglomorphic species from the Dinaric karst (Western Balkans)
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Setting a morphological framework for the genus Verhoeffiella (Collembola, Entomobryidae) for describing new troglomorphic species from the Dinaric karst (Western Balkans)

机译:为verhoeffiella(Collermbola,entomobryidae)的形态框架来说,用于描述来自二元喀斯特(西方巴尔干西部)的新孕制物种

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摘要

Recent research of cave Collembola in Dinaric karst resulted in discovery of high regional diversification of the genus Verhoeffiella Absolon, 1900. The most striking feature of Verhoeffiella species is the high number of troglomorphic traits, which makes this genus a good model for studying morphological diversification and adaptation in subterranean environments. We explore the expression of various morphological modifications assumed to be linked to subterranean life, through detailed descriptions of four new species and redescription of two species including the type species of the genus. Species delimitations are confirmed by single locus (cytochrome c oxidase I) tree-based (Poisson tree processes) and distance-based (automatic barcode gap discovery) species delimitation approaches, which gave identical results. Morphological changes classically considered as adaptive for cave life and new, potentially troglomorphic characters for Collembola are discussed. For several of these characters, high morphological diversity between species and large decoupling in the development of different traits within species are recorded. Such a decoupling is also illustrated in the finding of two cases of Verhoeffiella species pairs at different levels of troglomorphy living in syntopy. We further provide several new differential characters of specific and possibly generic or supra-generic importance and describe for the first time among Collembola an original distal organ' on Ant. IV.
机译:最近对十六宫喀尔斯特洞穴联合杆菌的研究导致了verhoeffiella Assoon,1900年的高区域多样化.Verhoeffiella物种的最引人注目的特点是巨大的颅旋状性状,这使得该属成为研究形态多样化的良好模型适应地下环境。我们探讨假定在四种新物种的详细描述和两个物种包括本体类别的型物种的详细描述,表达了各种形态学修改的表达。物种分歧通过单个基因座(细胞色素C氧化酶I)基于树(泊松树工艺)和基于距离的(自动条形码间隙发现)物种划界方法进行确认,这给出了相同的结果。讨论了典型的形态学变化被认为是对洞穴生命的适应性和新的,潜在的,潜在的,潜在的联合栓栓的特征。对于几个这些角色,记录了物种之间的高形态多样性,在物种内不同特征的发展中的大量去耦。还在治疗术语中的不同水平的术级术患者的verhoeffiella物种对中的两种情况下说明了这种去耦。我们进一步提供了几种特定的和可能是通用的新差分特征,或可能是通用的或超通用重要性,并在蚂蚁上第一次描述Collembola原始远端器官的第一次。 IV。

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