首页> 外文期刊>Journal of Insect Physiology >The ectoparasitic wasp Eulophus pennicornis (Hymenoptera: Eulophidae) uses instar-specific endocrine disruption strategies to suppress the development of its host Lacanobia oleracea (Lepidoptera: Noctuidae)
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The ectoparasitic wasp Eulophus pennicornis (Hymenoptera: Eulophidae) uses instar-specific endocrine disruption strategies to suppress the development of its host Lacanobia oleracea (Lepidoptera: Noctuidae)

机译:外寄生性黄蜂Eulophus pennicornis(膜翅目:Eulophidae)使用龄期特有的内分泌干扰策略来抑制其寄主油菜(Lapanobia oleracea)的发育(鳞翅目:夜蛾科)

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摘要

To successfully complete its development, the gregarious ectoparasitoid Eulophus pennicornis must inhibit the moult of its host, Lacanobia oleracea. In the present study, we examined the possibility that moult- and metamorphosis-associated endocrine events may be disrupted in caterpillars parasitized as newly moulted last (sixth) instars. Juvenile hormone (JH) titres on days 2 and 5 of the final stadium were significantly higher (100 fold) in parasitized than in non-parasitized hosts, in which JH was essentially absent. Elevated JH levels were associated with reduced haemolymph JH esterase (JHE) activity (down by 99.8%) and enhanced in vitro JH biosynthesis by the corpora allata (CA) (up to 4.5 fold). Wasp adults and/or larvae, in which we measured high levels of JH III (up to 2.7ng/g), but little or no JH I or JH II, were not seen as likely sources of JH in parasitized hosts, in which we found mostly JH I and JH II. In addition, removal of parasitoid eggs or larvae after oviposition did not prevent the rise in JH titres seen in parasitoid-laden hosts, suggesting that wasp venom may be responsible for the observed hormonal dysfunction. Host haemolymph 20-hydroxyecdysone (20-E) levels were largely unaffected by parasitism during the final stadium although they were observed to increase earlier and decrease more rapidly in parasitized insects. We compare these results with those reported earlier for L. oleracea larvae parasitized by E. pennicornis as penultimate (fifth) instars, which display significantly depressed 20-E titres relative to control larvae. We conclude that E. pennicornis employs host endocrine-disruption strategies that differ according to whether the host is parasitized as a penultimate or final-stadium larva.
机译:为了成功完成其发育,群居的类外寄生物Eulophus pennicornis必须抑制其寄主Lacanobia oleracea的蜕变。在本研究中,我们研究了在新近换羽的第六龄幼虫被寄生的毛毛虫中,与蜕变和变态相关的内分泌事件可能被破坏的可能性。最终体育场的第2天和第5天的幼虫激素(JH)滴度在未寄生虫宿主中显着更高(> 100倍),在非寄生虫宿主中,JH基本上不存在。 JH水平升高与血淋巴JH酯酶(JHE)活性降低(下降了99.8%)和体集(CA)的体外JH生物合成增强(高达4.5倍)相关。在寄生虫寄主中,黄蜂成虫和/或幼虫的JH III水平较高(最高2.7ng / g),但JH I或JH II很少或没有,这被认为不是JH的可能来源。发现主要是JH I和JH II。此外,在产卵后去除寄生卵或幼虫并不能阻止在寄生寄生虫宿主中看到的JH滴度升高,这表明黄蜂毒液可能是所观察到的激素功能障碍的原因。尽管观察到寄主血淋巴20-羟基蜕皮酮(20-E)的水平在寄生虫中较早增加而下降得更快,但在最终体育场内基本上不受寄生虫的影响。我们将这些结果与较早前报道的被油青霉E. pennicornis寄生为倒数第二(第五)龄的油茶幼虫的结果进行比较,相对于对照幼虫,其显示出显着降低的20-E滴度。我们得出的结论是,E。pennicornis采用宿主内分泌干扰策略,具体取决于宿主是否被寄生为倒数第二个或最终体育场的幼虫。

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