Evolutionary genomics analysis reveals gene expansion and functional diversity of arylalkylamine N‐acetyltransferases in the Culicinae subfamily of mosquitoes

生物 亚科 基因复制 进化生物学 基因 谱系(遗传) 基因组 基因家族 分子进化 遗传学
作者
Yu Tang,Huaqing Chen,Zhinan Lin,Lei Zhang,Archana Upadhyay,Chenghong Liao,David J. Merkler,Qian Han
出处
期刊:Insect Science [Wiley]
卷期号:30 (2): 569-581 被引量:4
标识
DOI:10.1111/1744-7917.13100
摘要

Arylalkylamine N-acetyltransferase (aaNAT), considered a potential new insecticide target, catalyzes the acetylation of arylalkylamine substrates such as serotonin and dopamine and, hence, mediates diverse functions in insects. However, the origin of insect aaNATs (iaaNATs) and the evolutionary process that generates multiple aaNATs in mosquitoes remain largely unknown. Here, we have analyzed the genomes of 33 species to explore and expand our understanding of the molecular evolution of this gene family in detail. We show that aaNAT orthologs are present in Bacteria, Cephalochordata, Chondrichthyes, Cnidaria, Crustacea, Mammalia, Placozoa, and Teleoste, as well as those from a number of insects, but are absent in some species of Annelida, Echinozoa, and Mollusca as well as Arachnida. Particularly, more than 10 aaNATs were detected in the Culicinae subfamily of mosquitoes. Molecular evolutionary analysis of aaNAT/aaNAT-like genes in mosquitoes reveals that tandem duplication events led to gene expansion in the Culicinae subfamily of mosquitoes more than 190 million years ago. Further selection analysis demonstrates that mosquito aaNATs evolved under strongly positive pressures that generated functional diversity following gene duplication events. Overall, this study may provide novel insights into the molecular evolution of the aaNAT family in mosquitoes.
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