Nowińska Agnieszka, Chen Ping-Ping, Brożek Jolanta
Institute of Biology, Biotechnology and Environmental Protection, University of Silesia in Katowice, Bankowa 9, 40-007 Katowice, Poland.
Naturalis Biodiversity Center, P.O. Box 9517, NL-2300 RA Leiden, The Netherlands.
Insects. 2020 Oct 27;11(11):734. doi: 10.3390/insects11110734.
The goal of this study was to analyze the types and distributional patterns of sensilla in Corixoidea, which is part of the approach to the phylogeny study of Nepomorpha, based on the morphological characters of sensilla. This paper presents the results of the study, with the use of a scanning electron microscope (SEM), on the antennae of species from the families Corixidae and Micronectidae. The antennal sensilla of eleven species from Corixidae and two species from Micronectidae were studied. Five main types of sensilla with several subtypes of sensilla trichodea were found and described. The study has shown that the family Corixidae has a strong uniformity when it comes to antennal sensilla (similar patterns of sensilla trichodea and basiconica), and a similarity to the types and distributions of sensilla in two species of the family Micronectidae. However, significant differences between the families were also discovered (differences in sensilla presence on the first and second antennomeres, lack of sensilla coeloconica on the third antennomere in Micronectidae), which leads to a supportive conclusion of the systematic position of Micronectidae as a family.
本研究的目的是基于感器的形态特征,分析仰蝽总科中感器的类型和分布模式,这是蝎蝽次目系统发育研究方法的一部分。本文介绍了利用扫描电子显微镜(SEM)对仰蝽科和小仰蝽科物种触角进行研究的结果。研究了仰蝽科的11个物种和小仰蝽科的2个物种的触角感器。发现并描述了5种主要类型的感器以及毛形感器的几个亚型。研究表明,仰蝽科在触角感器方面具有很强的一致性(毛形感器和锥形感器的模式相似),并且与小仰蝽科两个物种的感器类型和分布相似。然而,也发现了科之间的显著差异(第一和第二触角节上感器存在差异,小仰蝽科第三触角节上没有腔锥感器),这为小仰蝽科作为一个科的系统地位提供了支持性结论。