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鞘翅目象甲科(Coleoptera:Tenebrionidae)的多刺象甲(Blaps polycresta)精子形成中的超微结构改变作为土壤重金属污染的生物监测指标。

Ultrastructural alterations in sperm formation of the beetle, Blaps polycresta (Coleoptera: Tenebrionidae) as a biomonitor of heavy metal soil pollution.

机构信息

Department of Zoology, Faculty of Science, Alexandria University, Alexandria, Egypt.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(8):7896-7906. doi: 10.1007/s11356-017-1172-y. Epub 2018 Jan 3.

Abstract

Little is known about ultrastructural alterations induced by heavy metals pollution in insects. Therefore, the main objective of the present study is to elucidate ultrastructural changes in sperm formation of the tenebrionid beetle, Blaps polycresta as a biomonitor of heavy metal soil pollution. Metal percentages in testicular tissues of adult insects collected from reference and polluted sites were estimated using energy-dispersive X-ray microanalysis (EDX). Only cadmium, among eight detected metals, showed significantly higher percentages in the polluted testes compared with the reference ones. Ultrastructure investigation revealed severe alterations both in spermatogenic and spermiogenic stages of the polluted insects. Some cells were totally eroded. No spermatozoa were observed in all the examined cysts. Most degenerations were confined to the flagella of spermatids having enlarged vacuolated cytoplasm and malformed mitochondrial derivatives. Groups of multiple axial filaments were appeared in the form of bi-and tetra-flagellate spermatids. Electron dense vesicles were observed in almost all stages of the polluted testes. It is a novel trend in which ultrastructural alterations in sperm formation of insects could be used as a promising biomonitoring and risk assessment tool for heavy metal soil pollution.

摘要

关于重金属污染对昆虫的超微结构改变,人们知之甚少。因此,本研究的主要目的是阐明作为土壤重金属污染生物监测器的暗黑鳃金龟精子发生中超微结构的变化。采用能谱微分析(EDX)法测定取自对照和污染地区成虫睾丸组织中的金属百分比。在所检测的 8 种金属中,只有镉在污染睾丸中的百分比明显高于对照睾丸。超微结构研究显示,污染昆虫的精子发生和精子形成阶段都受到严重影响。一些细胞完全被侵蚀。在所有检查的囊泡中都没有观察到精子。大多数退化仅限于具有扩大的空泡化细胞质和畸形线粒体衍生物的精原细胞的鞭毛。多轴丝组以双鞭毛和四鞭毛精原细胞的形式出现。在污染睾丸的几乎所有阶段都观察到电子致密小泡。这是一种新的趋势,昆虫精子发生中超微结构的改变可以作为土壤重金属污染的一种很有前途的生物监测和风险评估工具。

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