Keyes-Scott Nia I, Swade Kyle R, Allen Lena R, Vogel Kevin J
Department of Entomology, The University of Georgia, Athens, GA, United States.
Front Insect Sci. 2023 Aug 23;3:1197945. doi: 10.3389/finsc.2023.1197945. eCollection 2023.
G protein-coupled receptors (GPCRs) control numerous physiological processes in insects, including reproduction. While many GPCRs have known ligands, orphan GPCRs do not have identified ligands in which they bind. Advances in genomic sequencing and phylogenetics provide the ability to compare orphan receptor protein sequences to sequences of characterized GPCRs, and thus gain a better understanding of the potential functions of orphan GPCRs. Our study sought to investigate the functions of two orphan GPCRs, AAEL003647 and AAEL019988, in the yellow fever mosquito, . From our phylogenetic investigation, we found that AAEL003647 is orthologous to the SIFamide-2/SMYamide receptor. We also found that AAEL019988 is orthologous to the Trapped in endoderm (Tre1) receptor of . Next, we conducted a tissue-specific expression analysis and found that both receptors had highest expression in the ovaries, suggesting they may be important for reproduction. We then used RNA interference (RNAi) to knock down both genes and found a significant reduction in the number of eggs laid per individual female mosquito, suggesting both receptors are important for reproduction.
G蛋白偶联受体(GPCRs)控制昆虫体内众多生理过程,包括繁殖。虽然许多GPCRs有已知的配体,但孤儿GPCRs尚未确定其结合的配体。基因组测序和系统发育学的进展使得将孤儿受体蛋白序列与已表征的GPCRs序列进行比较成为可能,从而更好地理解孤儿GPCRs的潜在功能。我们的研究旨在调查两种孤儿GPCRs,即AAEL003647和AAEL019988,在黄热病蚊子中的功能。通过系统发育研究,我们发现AAEL003647与SIFamide-2/SMYamide受体直系同源。我们还发现AAEL019988与内胚层被困(Tre1)受体直系同源。接下来,我们进行了组织特异性表达分析,发现这两种受体在卵巢中表达最高,表明它们可能对繁殖很重要。然后我们使用RNA干扰(RNAi)敲低这两个基因,发现单个雌蚊产卵数量显著减少,表明这两种受体对繁殖都很重要。