Lipophorin receptor regulates the cuticular hydrocarbon accumulation and adult fecundity of the pea aphid Acyrthosiphon pisum

桃红蓟马 生物 蚜虫 豌豆 RNA干扰 干燥 表皮(毛发) 植物 基因 生殖力 蚜虫科 生物化学 遗传学 核糖核酸 有害生物分析 同翅目 人口 人口学 社会学
作者
Jianwen Qiao,Yongliang Fan,Tian‐Tian Bai,Bingjin Wu,Xiao‐Jin Pei,Dun Wang,Tong‐Xian Liu
出处
期刊:Insect Science [Wiley]
卷期号:28 (4): 1018-1032 被引量:16
标识
DOI:10.1111/1744-7917.12828
摘要

Abstract Cuticular hydrocarbons form a barrier that protects terrestrial insects from water loss via the epicuticle. Lipophorin loads and transports lipids, including hydrocarbons, from one tissue to another. In some insects, the lipophorin receptor (LpR), which binds to lipophorin and accepts its lipid cargo, is essential for female fecundity because it mediates the incorporation of lipophorin by developing oocytes. However, it is unclear whether LpR is involved in the accumulation of cuticular hydrocarbons and its precise role in aphid reproduction remains unknown. We herein present the results of our molecular characterization, phylogenetic analysis, and functional annotation of the pea aphid ( Acyrthosiphon pisum ) LpR gene ( ApLpR ). This gene was transcribed throughout the A. pisum life cycle, but especially during the embryonic stage and in the abdominal cuticle. Furthermore, we optimized the RHA interference (RNAi) parameters by determining the ideal dose and duration for gene silencing in the pea aphid. We observed that the RNAi‐based ApLpR suppression significantly decreased the internal and cuticular hydrocarbon contents as well as adult fecundity. Additionally, a deficiency in cuticular hydrocarbons increased the susceptibility of aphids to desiccation stress, with decreased survival rates under simulated drought conditions. Moreover, ApLpR expression levels significantly increased in response to the desiccation treatment. These results confirm that ApLpR is involved in transporting hydrocarbons and protecting aphids from desiccation stress. Furthermore, this gene is vital for aphid reproduction. Therefore, the ApLpR gene of A. pisum may be a novel RNAi target relevant for insect pest management.
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