Wahaab Abdul, Alvarez Jaime Manzano, Minh Hieu Tran Nguyen, Benoit Joshua B, Rasgon Jason L
Department of Entomology, Pennsylvania State University, University Park, PA 16802, USA.
Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
bioRxiv. 2025 Jun 16:2025.06.16.660000. doi: 10.1101/2025.06.16.660000.
is a competent vector for a variety of mosquito-borne viruses including Zika, chikungunya, Mayaro, yellow fever, and dengue, which cause debilitating diseases in animals and humans. It is highly invasive and is widely distributed across Asia, Europe, Oceania, and the Americas. Climatic factors such as relative humidity (RH) can have substantial effects on mosquito biological characteristics and the dynamics of pathogen spread. Low RH leads to dehydration in mosquitoes causing modifications in behavioral and physiological responses pertaining to pathogen spread, such as host-seeking behavior and blood-feeding patterns. Here, we evaluated the effects of prolonged dehydration stress on Mayaro virus infection and vector competence in mosquitoes. Our findings suggest that prolonged dehydration stress following Mayaro virus infection alters viral dissemination dynamics in mosquitoes, indicating that humidity may modulate intra-vector viral dissemination potentially impacting vector competence and pathogen spread. The previously observed effects of higher feeding and altered survival and our current observations on altered vector competence suggest that the impact of dehydration on viral transmission is expected to be complex and will be crucial to understanding the dynamic disease patterns of mosquito-borne viruses across diverse climatic conditions.
是多种蚊媒病毒的有效载体,包括寨卡病毒、基孔肯雅病毒、马亚罗病毒、黄热病病毒和登革热病毒,这些病毒会在动物和人类中引发使人衰弱的疾病。它具有高度的入侵性,广泛分布于亚洲、欧洲、大洋洲和美洲。诸如相对湿度(RH)等气候因素会对蚊子的生物学特性以及病原体传播动态产生重大影响。低相对湿度会导致蚊子脱水,从而引起与病原体传播相关的行为和生理反应的改变,例如寻找宿主行为和吸血模式。在此,我们评估了长时间脱水应激对蚊子感染马亚罗病毒及媒介能力的影响。我们的研究结果表明,马亚罗病毒感染后的长时间脱水应激会改变蚊子体内病毒传播动态,这表明湿度可能会调节媒介体内病毒传播,进而潜在地影响媒介能力和病原体传播。先前观察到的更高摄食率、生存改变以及我们目前对媒介能力改变的观察结果表明,脱水对病毒传播的影响预计会很复杂,这对于理解不同气候条件下蚊媒病毒的动态疾病模式至关重要。