Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Environment and Plant Protection Institute, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.
Environ Sci Technol. 2022 Sep 6;56(17):12440-12451. doi: 10.1021/acs.est.2c03108. Epub 2022 Aug 9.
Ants easily accumulate cadmium (Cd) from the food web in terrestrial ecosystems. Cd contamination may cause olfactory dysfunction and consequently disorders in the social behavior of ants. To explore the molecular mechanism underlying the effect of Cd exposure on the chemosensory process of ants, we characterized the Cd-induced variations in the expression of genes involved in chemoreception and electrophysiological and behavioral sensitivity to semiochemicals by using the red imported fire ant, , as a model system. As a result, Cd exposure increased Cd accumulation and decreased the survival rate of . Cd exposure altered the expression profiles of odor binding protein genes of (SiOBPs). Specifically, SiOBP15 protein expression was upregulated upon Cd exposure. Both SiOBP7 and SiOBP15 exhibited high binding affinities to limonene, nonanal, and 2,4,6-trimethylpyridine. exposed to Cd showed less sensitive electrophysiological and behavioral response to the three chemicals but exhibited sensitive perception to undecane. Silencing of SiOBP7 and SiOBP15 abolished the behavioral response of to nonanal and undecane, respectively, suggesting that SiOBP7 and SiOBP15 play essential roles in the chemoreception of . In general, our results suggest that Cd contamination may interfere with olfactory signal transduction by altering the expression of SiOBPs, consequently evoking chemosensory dysfunction in fire ants.
蚂蚁可以很容易地从陆地生态系统的食物网中积累镉(Cd)。Cd 污染可能导致嗅觉功能障碍,并因此导致蚂蚁的社会行为紊乱。为了探索 Cd 暴露对蚂蚁化学感觉过程的影响的分子机制,我们以红火蚁( )为模型系统,对参与化学感觉的基因的 Cd 诱导表达变化进行了特征描述,以及对电生理和对信息素的行为敏感性。结果表明,Cd 暴露增加了 Cd 的积累并降低了红火蚁的存活率。Cd 暴露改变了(SiOBPs)气味结合蛋白基因的表达谱。具体而言,SiOBP15 蛋白的表达在 Cd 暴露后上调。SiOBP7 和 SiOBP15 均对柠檬烯、壬醛和 2,4,6-三甲基吡啶表现出高结合亲和力。暴露于 Cd 的昆虫对这三种化学物质的电生理和行为反应不敏感,但对十一烷表现出敏感的感知。沉默 SiOBP7 和 SiOBP15 分别消除了红火蚁对壬醛和十一烷的行为反应,表明 SiOBP7 和 SiOBP15 在红火蚁的化学感觉中发挥重要作用。总的来说,我们的结果表明,Cd 污染可能通过改变 SiOBPs 的表达来干扰嗅觉信号转导,从而导致红火蚁的化学感觉功能障碍。