首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Functional unification of sex pheromone-receptive glomeruli in the invasive Turkestan cockroach derived from the genus Periplaneta
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Functional unification of sex pheromone-receptive glomeruli in the invasive Turkestan cockroach derived from the genus Periplaneta

机译:性信息素的功能统一,侵入式土耳其蟑螂源自Periplaneta属

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摘要

Female Periplaneta americana cockroaches emit two cooperatively working pheromone components, periplanone-B (PB) as a long-range attractant and periplanone-A (PA) as a short-range arrestant, and males develop enlarged glomeruli for processing them separately in the first-order olfactory center. Using intracellular recordings and neuronal labelings, we found that the Turkestan cockroach, Blatta lateralis, which is phylogenetically close to P. americana but having adapted to inground habitats, has an extraordinary large glomerulus. This is caused by drastic enlargement of the PB-responsive glomerulus but not the PA-responsive glomerulus during the late nymphal stage. The output neuron from the macroglomerulus is sensitive to both PA and PB, at a dose of only 0.1 fg. Nevertheless, B. lateralis males never exhibited courtship rituals in response to the presentation of periplanones or natural sex pheromone but exhibited courtship rituals in response to antennal contact with females. Our findings indicate that the unique behavioral ecology and habitats of B. lateralis are related to the functional unification of the pheromone processing system, opposite to the functional differentiation that often underlies species diversification.
机译:女性Periplaneta Americana Cockroaches散发了两个合作工作的合法组分,Periplanone-B(PB)作为远程引诱剂和Periplanone-A(PA)作为短期避难剂,并且雄性开发出扩大的肾小球,以便在第一个中分别处理它们订购嗅觉中心。使用细胞内记录和神经元贴标,我们发现土耳其群蟑螂,Blatta Landerisis,它是靠近P. Americana但适应对抗栖息地的影响,具有非凡的大肾小球。这是由PB响应性肾小球的急剧增大而不是晚期脉珠期间的PB响应性肾小球引起的。来自宏观卟啉树的输出神经元对PA和Pb敏感,剂量仅为0.1FG。尽管如此,B.左侧男性从未表现出求爱仪式,以应对Periplanones或自然性信息素的介绍,而是表现出求爱仪式,以应对抗天生素与女性接触。我们的调查结果表明,B.左侧的独特行为生态和栖息地与信息素加工系统的功能统一有关,与经常下列物种多样化的功能分化相反。

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