首页> 外文期刊>Journal of Chemical Ecology >Presence of Long-Lasting Peripheral Adaptation in Oblique-Banded Leafroller, Choristoneura rosaceana and Absence of Such Adaptation in Redbanded Leafroller, Argyrotaenia velutinana
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Presence of Long-Lasting Peripheral Adaptation in Oblique-Banded Leafroller, Choristoneura rosaceana and Absence of Such Adaptation in Redbanded Leafroller, Argyrotaenia velutinana

机译:斜带卷叶菜长叶蔷薇的持久性外周适应的存在和红带卷叶菜长叶紫罗兰的持久适应性的缺乏

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摘要

Pre-exposure of male oblique-banded leafrollers, Choristoneura rosaceana (Harris), to the main component of their pheromone blend and traces of its geometric isomer (Z11–14:Ac and E11–14:Ac, respectively) at 36 ± 12 ng/ml air for durations of 15 and 60 min in sealed Teflon chambers with continuous air exchange significantly reduced peripheral sensory responses to these compounds as measured by electroantennograms (EAGs). The EAG responses of C. rosaceana to all tested dosages of pheromonal stimuli and blank controls were lowered by 55–58% and made a linear recovery to 70–100% of the pre-exposure amplitude within 12.5 min at a rate of 3–4 %/min. Exposures of 5 min were insufficient to maximally adapt C. rosaceana; however, exposures of 15 and 60 min reduced sensory responsiveness to the same minimum. In contrast, EAG responses of redbanded leafroller, Argyrotaenia velutinana (Walker), after identical pheromone exposure for 5 and 60 min yielded no long-lasting peripheral sensory adaptation as measured by EAGs, even though this species shares the same main pheromone components with C. rosaceana. We postulate that the long-lasting peripheral adaptation observed for C. rosaceana is a mechanism that impedes central nervous system habituation in this species. In contrast, A. velutinana may be more susceptible to central nervous system habituation because it lacks the capacity for minutes-long adaptation. We propose that long-lasting adaptation may be a mechanism explaining some of the variation in efficacy of pheromone-based mating disruption across taxa.
机译:在36±12 ng的浓度下,将雄性斜带卷叶虫(Choristoneura rosaceana,Harris)暴露于其信息素混合物的主要成分及其几何异构体的痕迹(分别为Z11-14:Ac和E11-14:Ac)。在密闭的特氟龙室中,每毫升空气持续15和60分钟的时间,并进行连续的空气交换,这通过电心电图(EAG)显着降低了对这些化合物的周围感觉反应。酒渣鼻对所有测试剂量的信息素刺激和空白对照组的EAG反应降低了55–58%,并在12.5分钟内以3-4的速率线性恢复至接触前振幅的70–100%。 %/分钟5分钟的暴露不足以最大程度地适应酒渣鼻弯曲杆菌。但是,暴露15分钟和60分钟将感觉反应降低到相同的最小值。相比之下,用EAG测得的相同信息素暴露5分钟和60分钟后,红带卷叶植物Argyrotaenia velutinana(Walker)的EAG响应不会产生持久的外周感觉适应性,即使该物种与C共享相同的主要信息素成分。酒渣鼻。我们推测观察到的酒渣鼻念珠菌具有持久的外周适应能力,是该物种中枢神经系统习惯化的一种机制。相比之下,velutinana可能更不容易适应中枢神经系统,因为它缺乏几分钟的适应能力。我们提出,长期的适应可能是一种解释跨类群的基于信息素的交配破坏功效的机制。

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