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昆虫生长调节剂敌氟虫脲对克氏对虾表皮生化成分的影响

Impact of the insect growth regulator diflubenzuron on biochemical composition of cuticle of the shrimp Penaeus kerathurus.

作者信息

Soltani N, Lechekhab H, Smagghe G

机构信息

Département de Biologie, Université de Annaba, DZ-23000 Annaba, Algéria.

出版信息

Commun Agric Appl Biol Sci. 2009;74(1):137-41.

Abstract

Diflubenzuron (Dimilin 25WP) is an insecticide of the class of benzoylphenylurea (BPUs) and is widely used in the control of insect pest in agriculture and forestry. Typically, these chemistries prevent the moulting process by inhibiting chitin formation and thereby causing abnormal cuticular deposition and abortive moulting in insect and crustacean species. In a previous study, we have shown that diflubenzuron could cause a modification in the lamellar ultrastructural, particularly in the membranous layers, in the non-target organism, the caramote prawn or triple-grooved shrimp Penaeus kerathurus (Forskal, 1775) (Decapoda, Peneidae). Therefore, the aim of this study was to evaluate under laboratory conditions the potential side-effects of diflubenzuron on the biochemical composition of the cuticle of treated P. kerathurus. Diflubenzuron was added to the rearing seawater at a final concentration of 1 microg/L) and newly-ecdysed adult shrimps were exposed for 10 days, i.e. until stage C during the molting cycle. The most typical treatment symptoms were a significantly reduced thickness of both the principal and membranous layers, and reduced amounts of chitin in the cuticle. These symptoms help in explaining the structural alterations observed in treated cuticles, and confirm the primary mode of action of diflubenzuron to inhibit chitin biosynthesis.

摘要

除虫脲(敌灭灵25%可湿性粉剂)是苯甲酰基苯基脲类杀虫剂,广泛用于防治农林害虫。通常,这类化学物质通过抑制几丁质形成来阻止蜕皮过程,从而导致昆虫和甲壳类动物出现异常的表皮沉积和蜕皮失败。在之前的一项研究中,我们已经表明,除虫脲会导致非靶标生物卡拉莫特对虾或三沟对虾(Penaeus kerathurus,Forskal,1775)(十足目,对虾科)的片层超微结构发生改变,尤其是在膜层。因此,本研究的目的是在实验室条件下评估除虫脲对经处理的三沟对虾表皮生化组成的潜在副作用。将除虫脲以终浓度1微克/升添加到养殖海水中,新蜕皮的成年对虾暴露10天,即直到蜕皮周期的C阶段。最典型的处理症状是主层和膜层的厚度显著减小,以及表皮中几丁质含量降低。这些症状有助于解释在经处理的表皮中观察到的结构改变,并证实除虫脲抑制几丁质生物合成的主要作用方式。

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