Greppi Chloe, Frank Kyle, Saltz Victoria, Duvall Laura B
bioRxiv. 2025 Aug 29:2025.08.25.672111. doi: 10.1101/2025.08.25.672111.
After a blood meal, female mosquitoes suppress host-seeking while converting ingested nutrients into yolk protein for egg development. Neuropeptide Y-like Receptor 7 (NPYLR7) is required for this behavioral switch, but its physiological role and sites of action were unknown. We identify a specialized, non-neuronal population of -expressing cells in the rectal pads of the mosquito hindgut. While this tissue is associated with fluid and ion balance, mutants maintain fluid regulation but show impaired oocyte provisioning. These cells display neuroendocrine features, including calcium responses to the NPYLR7 ligand RYamide and amino acids, as well as expression of neurotransmitter synthesis and vesicle release machinery. Vesicle recruitment occurs in these cells post-blood meal in wild-type, but not mutants. Our findings reveal an unexpected role for NPYLR7 in a rectal cell population senses nutritional cues and communicates with the nervous system to regulate reproductive physiology, paralleling gut-brain circuits in mammals.
吸食血液后,雌性蚊子会抑制寻找宿主行为,同时将摄取的营养物质转化为卵黄蛋白以促进卵子发育。神经肽Y样受体7(NPYLR7)是这种行为转变所必需的,但其生理作用和作用位点尚不清楚。我们在蚊子后肠的直肠垫中鉴定出一群表达特定基因的非神经元细胞。虽然该组织与体液和离子平衡有关,但突变体维持了体液调节,但卵子供应受损。这些细胞表现出神经内分泌特征,包括对NPYLR7配体RYamide和氨基酸的钙反应,以及神经递质合成和囊泡释放机制的表达。在野生型中,吸血后这些细胞会发生囊泡募集,但突变体中则不会。我们的研究结果揭示了NPYLR7在直肠细胞群体中的一个意想不到的作用,即感知营养线索并与神经系统进行通信以调节生殖生理,这与哺乳动物的肠-脑回路相似。