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Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)

The ultrastructure of androconia and their surrounding scales of nine species in nine genera across four subfamilies of Hesperiidae is studied. This provides a basis for the classification and identification of some genera and species. The wing surface of the scent glands patches was cut with scisso...

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Autores principales: Pan, Yue, Yu, Zhuoshu, Yuan, Xiangqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pensoft Publishers 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8813864/
https://www.ncbi.nlm.nih.gov/pubmed/35233165
http://dx.doi.org/10.3897/zookeys.1084.78883
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author Pan, Yue
Yu, Zhuoshu
Yuan, Xiangqun
author_facet Pan, Yue
Yu, Zhuoshu
Yuan, Xiangqun
author_sort Pan, Yue
collection PubMed
description The ultrastructure of androconia and their surrounding scales of nine species in nine genera across four subfamilies of Hesperiidae is studied. This provides a basis for the classification and identification of some genera and species. The wing surface of the scent glands patches was cut with scissors, observed and photographed under an S-4800 scanning electron microscope (at 10.0 kV accelerated pressure). There were significant differences in the types of scent glands patches across subfamilies. The scent glands patches of Pyrginae and Dudaminae are mainly in the costal fold of the forewing, while those of Coeliadinae and Hesperiinae are mainly in the line or circular stigma on the wing surface. The length, breadth and aperture of the androconia were further measured and the data are analysed by variance and multiple comparisons. There are significant differences amongst the subfamilies, except for Dudaminae and Pyrginae. In Hesperiinae, Telicotacolon (Fabricius, 1775) and Ampittiavirgata (Leech, 1890) have no significant difference in the aperture of the androconia, but are significantly different from Thymelicusleoninus (Butler, 1878). There are significant differences in the aperture between Pyrgusalveus’s (Hübner, 1803) androconium and the second androconium of Loboclabifasciata (Bremer & Grey, 1853), but not with the first androconium of Loboclabifasciata. The morphology of androconia in the scent glands patches is very similar in Hesperiinae; all are rod-shaped and paddle-like. The scale types around the scent glands patches are different, but there are one or two similar types. To a certain extent, the aperture of the androconia reflects the genetic relationships between subfamilies and species. The differences in scale type and structure of scent glands patches can be used as a reference for the classification of subfamilies and genera in Hesperiidae.
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spelling pubmed-88138642022-02-28 Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera) Pan, Yue Yu, Zhuoshu Yuan, Xiangqun Zookeys Research Article The ultrastructure of androconia and their surrounding scales of nine species in nine genera across four subfamilies of Hesperiidae is studied. This provides a basis for the classification and identification of some genera and species. The wing surface of the scent glands patches was cut with scissors, observed and photographed under an S-4800 scanning electron microscope (at 10.0 kV accelerated pressure). There were significant differences in the types of scent glands patches across subfamilies. The scent glands patches of Pyrginae and Dudaminae are mainly in the costal fold of the forewing, while those of Coeliadinae and Hesperiinae are mainly in the line or circular stigma on the wing surface. The length, breadth and aperture of the androconia were further measured and the data are analysed by variance and multiple comparisons. There are significant differences amongst the subfamilies, except for Dudaminae and Pyrginae. In Hesperiinae, Telicotacolon (Fabricius, 1775) and Ampittiavirgata (Leech, 1890) have no significant difference in the aperture of the androconia, but are significantly different from Thymelicusleoninus (Butler, 1878). There are significant differences in the aperture between Pyrgusalveus’s (Hübner, 1803) androconium and the second androconium of Loboclabifasciata (Bremer & Grey, 1853), but not with the first androconium of Loboclabifasciata. The morphology of androconia in the scent glands patches is very similar in Hesperiinae; all are rod-shaped and paddle-like. The scale types around the scent glands patches are different, but there are one or two similar types. To a certain extent, the aperture of the androconia reflects the genetic relationships between subfamilies and species. The differences in scale type and structure of scent glands patches can be used as a reference for the classification of subfamilies and genera in Hesperiidae. Pensoft Publishers 2022-01-27 /pmc/articles/PMC8813864/ /pubmed/35233165 http://dx.doi.org/10.3897/zookeys.1084.78883 Text en Yue Pan, Zhuoshu Yu, Xiangqun Yuan https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Pan, Yue
Yu, Zhuoshu
Yuan, Xiangqun
Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title_full Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title_fullStr Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title_full_unstemmed Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title_short Ultrastructure of androconia and surrounding scales of nine species of Hesperiidae (Lepidoptera)
title_sort ultrastructure of androconia and surrounding scales of nine species of hesperiidae (lepidoptera)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8813864/
https://www.ncbi.nlm.nih.gov/pubmed/35233165
http://dx.doi.org/10.3897/zookeys.1084.78883
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