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对栖息于受污染土壤中的多食洁斑甲(鞘翅目,拟步甲科)进行的X射线金属评估及卵巢超微结构变化研究

X-ray metal assessment and ovarian ultrastructure alterations of the beetle, Blaps polycresta (Coleoptera, Tenebrionidae), inhabiting polluted soil.

作者信息

Osman Wafaa, Shonouda Mourad

机构信息

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

出版信息

Environ Sci Pollut Res Int. 2017 Jun;24(17):14867-14876. doi: 10.1007/s11356-017-9095-1. Epub 2017 May 5.

Abstract

X-ray analysis was applied to estimate the percentages of heavy metals in ovarian tissues of the tenebrionid beetle, Blaps polycresta. Calcium, phosphorus, sulfur, cadmium, copper, and zinc were the most common detected metals in ovaries of insects collected from reference and polluted sites. Only cadmium showed significantly higher percentages in the polluted ovaries compared with the reference ones. Ultrastructure investigation revealed severe alterations in polluted ovaries both in the tropharium and in the vitellarium. Contraction of nuclear membrane of trophocytes was observed; therefore, cavities and spaces appeared in the cytoplasm followed by nuclear pyknosis. In the vitellarium, fragmentation of chromatin materials in nuclei of the follicular cells was detected. The cytoplasm was poor in the rough endoplasmic reticulum and mitochondria. Damage of yolk bodies occurred in addition to break off in the layer of microvilli. Accumulation of electron-dense vesicles and multivesicular bodies were observed in both reference and polluted ovaries. These alterations in ovarian ultrastructure of B. polycresta show the severe impact of cadmium pollution on cell organelles of insects and could be used as an interesting tool for monitoring heavy metals inside the body organs due to soil pollution.

摘要

采用X射线分析来估算拟步甲科昆虫多皱鳖甲卵巢组织中重金属的百分比。钙、磷、硫、镉、铜和锌是在从对照点和污染点采集的昆虫卵巢中检测到的最常见金属。与对照卵巢相比,只有镉在污染卵巢中的百分比显著更高。超微结构研究表明,污染卵巢的营养区和卵黄发生了严重改变。观察到营养细胞的核膜收缩;因此,细胞质中出现空洞和间隙,随后出现核固缩。在卵黄中,检测到滤泡细胞核内染色质物质的碎片化。细胞质中粗面内质网和线粒体较少。卵黄小体受损,微绒毛层断裂。在对照卵巢和污染卵巢中均观察到电子致密囊泡和多囊泡体的积累。多皱鳖甲卵巢超微结构的这些改变表明镉污染对昆虫细胞器有严重影响,可作为监测土壤污染导致的体内器官中重金属的有趣工具。

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