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在粉纹夜蛾(Trichoplusia ni (Hübner),鳞翅目:夜蛾科)中,PBAN是否在控制性信息素释放方面发挥了其他作用?

Does PBAN play an alternative role of controlling pheromone emission in the cabbage looper moth, Trichoplusia ni (Hübner) (Lepidoptera: Noctuidae)?

作者信息

Haynes K F., Zhang Zhao J

机构信息

Department of Entomology, University of Kentucky, Lexington, U.S.A.

出版信息

J Insect Physiol. 1997 Jul;43(7):695-700. doi: 10.1016/s0022-1910(97)00003-6.

Abstract

There is an active process by which sex pheromone reserves of female cabbage looper moths, Trichoplusia ni, are transported to the gland's surface during the nocturnal period of calling. We hypothesized that this mobilization was controlled by a head factor, possibly related to the pheromone biosynthesis activating neuropeptides (PBAN) that in other species stimulate pheromone synthesis. We evaluated the impact of head extracts of T. ni on pheromone emission and glandular content of pheromone. During the photophase injected head extracts stimulated an increased pheromone emission rate in females, but glandular content of pheromone was not affected. Head extracts of H. virescens, a species with known PBAN activity, and synthetic PBAN stimulated an increased pheromone emission rate in T. ni. There was some specificity of the response of female T. ni to PBAN, in that several other unrelated polypeptides did not stimulate this type of response. Previously it had been determined that brain factors do not play a role in stimulating pheromone biosynthesis in T. ni. Our results indicate that there may be additional avenues by which PBAN or related neuropeptides control pheromone emission, including transport of pheromone reserves to the surface of the sex pheromone gland.

摘要

在夜间求偶期间,雌性粉纹夜蛾(Trichoplusia ni)的性信息素储备会通过一个活跃的过程被运输到腺体表面。我们推测这种调动是由一种头部因子控制的,可能与在其他物种中刺激信息素合成的信息素生物合成激活神经肽(PBAN)有关。我们评估了粉纹夜蛾头部提取物对信息素释放和腺体中信息素含量的影响。在光照阶段注射头部提取物会刺激雌性粉纹夜蛾的信息素释放率增加,但腺体中的信息素含量不受影响。具有已知PBAN活性的绿棉铃虫(H. virescens)的头部提取物和合成PBAN会刺激粉纹夜蛾的信息素释放率增加。粉纹夜蛾雌性对PBAN的反应具有一定的特异性,因为其他几种不相关的多肽不会刺激这种反应类型。此前已经确定,脑因子在刺激粉纹夜蛾的信息素生物合成中不起作用。我们的结果表明,PBAN或相关神经肽可能通过其他途径控制信息素释放,包括将信息素储备运输到性信息素腺体表面。

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