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首页> 外文期刊>Journal of Insect Physiology >Imidazole derivative KK-42 boosts pupal diapause incidence and delays diapause termination in several insect species
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Imidazole derivative KK-42 boosts pupal diapause incidence and delays diapause termination in several insect species

机译:咪唑衍生物KK-42可以提高小di滞育的发生率并延缓几种昆虫的滞育终止

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The imidazole derivative KK-42 is a synthetic insect growth regulator known previously to be capable of averting embryonic diapause in several Lepidoptera, but whether it also affects diapauses occurring in other developmental stages remains unknown. In the present study, we examined the effect of KK-42 on pupal diapause in two species of Lepidoptera, the Chinese oak silkworm Antheraea pernyi and the corn earworm Helicoverpa zea, and in one species of Diptera, the flesh fly Sarcophaga crassipalpis. In A. pernyi, KK-42 delayed pupal diapause termination under the long day conditions that normally break diapause in this species. Likewise, in H. zea, KK-42 delayed termination of pupal diapause, a diapause that, in this species, is normally broken by high temperature. KK-42-treated pupae of these two species eventually terminated diapause and successfully emerged as adults, but the timing of diapause termination was significantly delayed. KK-42 also significantly increased the incidence of pupal diapause in H. zea and S. crassipalpis when administered to larvae that were environmentally programmed for diapause, but it was not capable of inducing pupal diapause in H. zea if larvae were reared under environmental conditions that do not normally evoke the diapause response. Experiments with H. zea showed that the effect of KK-42 on pupal diapause was dose- and stage-dependent, but not temperature-dependent. Results presented here are consistent with a link between KK-42 and the ecdysteroid signaling pathway that regulates pupal diapause. (C) 2015 Elsevier Ltd. All rights reserved.
机译:咪唑衍生物KK-42是一种合成昆虫生长调节剂,以前已知能够在几个鳞翅目中避免胚胎滞育,但是否还会影响在其他发育阶段发生的滞育仍然未知。在本研究中,我们研究了KK-42对鳞翅目两种鳞翅目p滞的影响,这两种鳞翅目为中国栎蚕An蚕和玉米耳虫Helicoverpa zea,而在双翅目的一种翅目中则为果蝇Sarcophaga crassipalpis。在peryi。A. pernyi中,KK-42在漫长的一天条件下(通常会破坏该物种的滞育期)延迟delayed滞育终止。同样,在H. zea中,KK-42延迟termination滞育的终止,这种滞育在该物种中通常被高温破坏。 KK-42处理的这两个物种的p最终终止了滞育,并成年后成功出现,但是滞育终止的时间明显延迟。 KK-42还可以显着增加在环境中编程为滞育的幼虫施用时,H。zea和C. crassipalpis中的幼仔滞育的发生率,但如果在环境条件下饲养幼虫,则它不能在H. zea中诱导幼仔滞育通常不会引起滞育反应。玉米H. zea的实验表明,KK-42对小儿滞育的作用是剂量和阶段依赖性的,而不是温度依赖性的。这里介绍的结果与KK-42和调节p滞育的蜕皮激素信号通路之间的联系是一致的。 (C)2015 Elsevier Ltd.保留所有权利。

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