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慢性类二十烷酸生物合成抑制对大蜡螟和其外寄生蜂金小蜂生活史的影响。

The influence of chronic eicosanoid biosynthesis inhibition on life history of the greater waxmoth, Galleria mellonella and its ectoparasitoid, Bracon hebetor.

机构信息

Department of Biology, Faculty of Arts and Science, Karaelmas University, 67100 Incivez, Zonguldak, Turkey.

出版信息

J Insect Physiol. 2011 Apr;57(4):501-7. doi: 10.1016/j.jinsphys.2011.01.015. Epub 2011 Feb 15.

DOI:10.1016/j.jinsphys.2011.01.015
PMID:21303676
Abstract

Eicosanoids are oxygenated metabolites of three C20 polyunsaturated fatty acids, mainly arachidonic acid (AA; 20:4n-6), but also 20:3n-6 and 20:5n-3. Aside from their importance in biomedicine, eicosanoids act in invertebrate biology. Prostaglandins (PGs) influence salt and water transport physiology in insect rectal epithelia and in Malpighian tubules. PGs also influence a few insect behaviors, including releasing oviposition behavior and behavioral fever. Eicosanoids act in ovarian development and in insect immunity. Because eicosanoids act in several areas of insect biology, we posed the hypothesis that chronic inhibition of eicosanoid biosynthesis, in the absence of microbial challenge, can influence insect life table parameters, including developmental time, survival, adult longevity and parasitoid fecundity. Here we report that inhibiting eicosanoid biosynthesis throughout the larval life exerted minor influences on some life table parameters of the greater wax moth, Galleria mellonella and its ectoparasitoid, Bracon hebetor, however, the inhibitors strongly reduced the production and hatchability of the parasitoids' eggs. The significance of the work relates to the potentials of understanding and targeting eicosanoid systems as a platform for developing new technologies of insect pest management. As seen here, the impact of targeting eicosanoid systems is seen in crucial moments of insect life histories, such as reproduction or immune challenge rather than in overall larval development.

摘要

类二十烷酸是三种 C20 多不饱和脂肪酸(主要是花生四烯酸(AA;20:4n-6)、20:3n-6 和 20:5n-3)的含氧代谢产物。类二十烷酸除了在生物医学方面的重要性外,还在无脊椎动物生物学中发挥作用。前列腺素(PGs)影响昆虫直肠上皮和马氏管中的盐和水运输生理学。PGs 还影响一些昆虫行为,包括释放产卵行为和行为发热。类二十烷酸在卵巢发育和昆虫免疫中起作用。由于类二十烷酸在昆虫生物学的几个领域起作用,我们假设在没有微生物挑战的情况下,慢性抑制类二十烷酸的生物合成可以影响昆虫生命表参数,包括发育时间、生存、成虫寿命和寄生蜂的繁殖力。在这里,我们报告说,在幼虫期整个生命周期中抑制类二十烷酸的生物合成对大蜡螟和其外寄生蜂 Bracon hebetor 的一些生命表参数的影响较小,但抑制剂强烈降低了寄生蜂卵的产量和孵化率。这项工作的意义在于理解和靶向类二十烷酸系统的潜力,作为开发昆虫害虫管理新技术的平台。如前所述,靶向类二十烷酸系统的影响在昆虫生命史的关键时刻显现,例如繁殖或免疫挑战,而不是在整个幼虫发育过程中显现。

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