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苏云金芽孢杆菌以色列变种δ-内毒素对 Pertinax 蚋幼虫(双翅目,蚋科)中肠的组织病理学和超微结构影响

Histopathological and ultrastructural effects of delta-endotoxins of Bacillus thuringiensis serovar israelensis in the midgut of Simulium pertinax larvae (Diptera, Simuliidae).

作者信息

Cavados C F G, Majerowicz S, Chaves J Q, Araújo-Coutinho C J P C, Rabinovitch L

机构信息

Departamento de Bacteriologia, Instituto Oswaldo Cruz-Fiocruz, Av. Brasil 4365, 21045-900 Rio de Janeiro, RJ, Brazil.

出版信息

Mem Inst Oswaldo Cruz. 2004 Aug;99(5):493-8. doi: 10.1590/s0074-02762004000500006. Epub 2004 Nov 3.

Abstract

The bacterium Bacillus thuringiensis (Bt) produces parasporal crystals containing delta-endotoxins responsible for selective insecticidal activity on larvae. Upon ingestion, these crystals are solubilized in the midgut lumen and converted into active toxins that bind to receptors present on the microvilli causing serious damage to the epithelial columnar cells. We investigated the effect of these endotoxins on larvae of the Simulium pertinax, a common black fly in Brazil, using several concentrations during 4 h of the serovar israelensis strain IPS-82 (LFB-FIOCRUZ 584), serotype H-14 type strain of the Institute Pasteur, Paris. Light and electron microscope observations revealed, by time and endotoxin concentration, increasing damages of the larvae midgut epithelium. The most characteristic effects were midgut columnar cell vacuolization, microvilli damages, epithelium cell contents passing into the midgut lumen and finally the cell death. This article is the first report of the histopathological effects of the Bti endotoxins in the midgut of S. pertinax larvae and the data obtained may contribute to a better understanding of the mode of action of this bacterial strain used as bioinsecticide against black fly larvae.

摘要

苏云金芽孢杆菌(Bt)能产生伴胞晶体,其中含有δ-内毒素,对幼虫具有选择性杀虫活性。幼虫摄食后,这些晶体会在中肠腔中溶解,并转化为活性毒素,与微绒毛上的受体结合,对上皮柱状细胞造成严重损害。我们使用巴黎巴斯德研究所血清型H-14的以色列变种IPS-82菌株(LFB-FIOCRUZ 584)的几种浓度,在4小时内研究了这些内毒素对巴西常见黑蝇——嗜人按蚊幼虫的影响。光学显微镜和电子显微镜观察显示,随着时间和内毒素浓度的增加,幼虫中肠上皮的损伤加剧。最典型的影响是中肠柱状细胞空泡化、微绒毛损伤、上皮细胞内容物进入中肠腔,最终细胞死亡。本文首次报道了Bti内毒素对嗜人按蚊幼虫中肠的组织病理学影响,所获得的数据可能有助于更好地理解该菌株作为生物杀虫剂对抗黑蝇幼虫的作用模式。

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