An aquaporin and an aquaglyceroporin have roles in low temperature adaptation of mosquitoes (Anopheles sinensis)

Yong-Qiao Zhao, Yi-Ying Tang, Ju-Ping Hu,Yu-Zheng Huang, Kai Wan,Mei-Hua Zhang,Ju-Lin Li,Guo-Ding Zhu,Jian-Xia Tang

INSECT SCIENCE(2024)

引用 0|浏览1
暂无评分
摘要
Mosquitoes (Anopheles sinensis), widely geographically distributed in Asia including China, are the primary vector of the malaria parasite Plasmodium vivax and other parasitic diseases such as Malayan filariasis. An. sinensis can survive through low winter temperatures. Aquaporin channels are found in all life forms, where they facilitate environmental adaptation by allowing rapid trans-cellular movement of water (classical aquaporins) or water and solutes such as glycerol (aquaglyceroporins). Here, we identified and characterized 2 aquaporin (AQP) homologs in An. sinensis: AsAQP2 (An. sinensis aquaglyceroporin) and AsAQP4 (An. sinensis aquaporin). When expressed in frog (Xenopus laevis) oocytes, AsAQP2 transported water, glycerol, and urea; AsAQP4 transported only water. Water permeation through AsAQP2 and AsAQP4 was inhibited by mercuric chloride. AsAQP2 expression was slightly higher in adult female mosquitoes than in males, and AsAQP4 expression was significantly higher in adult males. The 2 AsAQPs were highly expressed in Malpighian tubules and midgut. AsAQP2 and AsAQP4 expression was up-regulated by blood feeding compared with sugar feeding. At freezing point (0 degree celsius), the AsAQP4 expression level increased and An. sinensis survival time reduced compared with those at normal temperature (26 degree celsius). At low temperature (8 degree celsius), the AsAQP2 and AsAQP4 expression levels decreased and survival time was significantly longer compared with those at 26 degree celsius. These results suggest that AsAQP2 and AsAQP4 have roles in water homeostasis during blood digestion and in low temperature adaptation of A. sinensis. Together, our results show that the 2 AQPs are important for mosquito diuresis after blood feeding and when exposed to low temperatures.
更多
查看译文
关键词
aquaporin,aquaglyceroporin,Anopheles sinensis,blood digestion,low temperature adaption
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要