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在蟑螂中促进和抑制求偶行为的交互式平行性信息素回路。

Interactive parallel sex pheromone circuits that promote and suppress courtship behaviors in the cockroach.

作者信息

Tateishi Kosuke, Watanabe Takayuki, Domae Mana, Ugajin Atsushi, Nishino Hiroshi, Nakagawa Hiroyuki, Mizunami Makoto, Watanabe Hidehiro

机构信息

Department of Earth System Science, Faculty of Science, Fukuoka University, 8-19-1 Nanakuma, Jonan-ku, Fukuoka 814-0180, Fukuoka, Japan.

School of Biological and Environmental Sciences, Kwansei Gakuin University, 1 Gakuen Uegahara, Sanda 669-1330, Hyogo, Japan.

出版信息

PNAS Nexus. 2024 Apr 15;3(4):pgae162. doi: 10.1093/pnasnexus/pgae162. eCollection 2024 Apr.

Abstract

Many animals use multicomponent sex pheromones for mating, but the specific function and neural processing of each pheromone component remain unclear. The cockroach is a model for studying sex pheromone communication, and an adult female emits major and minor sex pheromone components, periplanone-B and -A (PB and PA), respectively. Attraction and courtship behaviors (wing-raising and abdominal extension) are strongly expressed when adult males are exposed to PB but weakly expressed when they are exposed to PA. When major PB is presented together with minor PA, behaviors elicited by PB were impaired, indicating that PA can both promote and suppress courtship behaviors depending on the pheromonal context. In this study, we identified the receptor genes for PA and PB and investigated the effects of knocking down each receptor gene on the activities of PA- and PB-responsive sensory neurons (PA- and PB-SNs), and their postsynaptic interneurons, and as well as effects on courtship behaviors in males. We found that PB strongly and PA weakly activate PB-SNs and their postsynaptic neurons, and activation of the PB-processing pathway is critical for the expression of courtship behaviors. PA also activates PA-SNs and the PA-processing pathway. When PA and PB are simultaneously presented, the PB-processing pathway undergoes inhibitory control by the PA-processing pathway, which weakens the expression of courtship behaviors. Our data indicate that physiological interactions between the PA- and PB-processing pathways positively and negatively mediate the attraction and courtship behaviors elicited by sex pheromones.

摘要

许多动物利用多组分性信息素来进行交配,但每种信息素组分的具体功能和神经处理过程仍不清楚。蟑螂是研究性信息素通讯的模型,成年雌性蟑螂分别释放主要和次要性信息素组分,即 periplanone-B 和 -A(PB 和 PA)。成年雄性蟑螂暴露于 PB 时,吸引和求偶行为(举翅和腹部伸展)强烈表现,但暴露于 PA 时则表现较弱。当主要的 PB 与次要的 PA 同时出现时,PB 引发的行为会受到损害,这表明 PA 根据信息素背景既能促进也能抑制求偶行为。在本研究中,我们鉴定了 PA 和 PB 的受体基因,并研究了敲除每个受体基因对 PA 和 PB 反应性感觉神经元(PA-SNs 和 PB-SNs)及其突触后中间神经元活性的影响,以及对雄性求偶行为的影响。我们发现 PB 强烈激活且 PA 微弱激活 PB-SNs 及其突触后神经元,PB 处理通路的激活对于求偶行为的表达至关重要。PA 也激活 PA-SNs 和 PA 处理通路。当 PA 和 PB 同时呈现时,PB 处理通路受到 PA 处理通路的抑制性控制,这会削弱求偶行为的表达。我们的数据表明,PA 和 PB 处理通路之间的生理相互作用正向和负向介导了性信息素引发的吸引和求偶行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb95/11058470/85bc24f6ea39/pgae162f1.jpg

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