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有系统发育考量的潜甲虫科潜水甲虫幼虫形态展望(鞘翅目:多食亚目,龙虱科)。

An outlook on larval morphology of Copelatinae diving beetles with phylogenetic considerations (Coleoptera: Adephaga, Dytiscidae).

机构信息

Department of Biology, Laurentian University, Ramsey Lake Road, Sudbury, Ontario, P3E 2C6, Canada.

University of Buenos Aires, Faculty of Exact and Natural Sciences, Department of Biodiversity and Experimental and Applied Biology (IBBEA), Buenos Aires, Argentina. .

出版信息

Zootaxa. 2022 Aug 16;5175(2):151-205. doi: 10.11646/zootaxa.5175.2.1.

Abstract

The larvae of 12 species of Copelatinae, Copelatus alternatus Sharp, 1882, C. caelatipennis princeps Young, 1963, C. glyphicus (Say, 1823), C. japonicus Sharp, 1884, C. masculinus Rgimbart, 1899, C. nakamurai Guorguiev, 1970, C. oblitus Sharp, 1882, C. parallelus Zimmermann, 1920, C. tenebrosus Rgimbart, 1880, Exocelina australiae (Clark, 1863), E. ferruginea (Sharp, 1882), and Liopterus haemorrhoidalis (Fabricius, 1787) are described or redescribed, including for the first time a detailed chaetotaxy analysis of the cephalic capsule, head appendages, legs, last abdominal segment and urogomphi. A provisional parsimony analysis based on larval characteristics of 13 copelatine species was conducted using the program TNT, which reinforces the monophyletic origin of the Copelatinae. Copelatinae larvae stand out from the remaining Dytiscidae based on several synapomorphies, including the unusual shorter length of the mesothoracic legs. Legs and urogomphi morphology suggest that Copelatinae larvae studied evolved a creeping way of life. The provisional phylogenetic analysis presented in this study provides some arguments for the validity of the taxonomic status of the genera Liopterus Dejean, 1833 and Exocelina Broun, 1886.

摘要

描述或重新描述了 12 种 Copelatinae 幼虫,包括 Cephalic Capsule、Head Appendages、Legs、Last Abdominal Segment 和 Urogomphi 的详细毛序分析。使用 TNT 程序对 13 种 Copelatinae 幼虫特征进行了临时简约分析,这加强了 Copelatinae 的单系起源。Copelatinae 幼虫与其余的 Dytiscidae 有几个独特的相似之处,包括中胸足的异常短长度,从而脱颖而出。足和尿殖突的形态表明,所研究的 Copelatinae 幼虫进化出了一种爬行的生活方式。本研究提出的临时系统发育分析为 Liopterus Dejean, 1833 和 Exocelina Broun, 1886 属的分类地位提供了一些论据。

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