Centre for Chemical Biology, Universiti Sains Malaysia, Bayan Lepas, Penang, Malaysia.
Urban Entomology Laboratory, Vector Control Research Unit, School of Biological Sciences, Universiti Sains Malaysia, Minden, Penang, Malaysia.
PLoS One. 2019 Jun 17;14(6):e0218343. doi: 10.1371/journal.pone.0218343. eCollection 2019.
Many insect species display daily variation of sensitivity to insecticides when they are exposed to the same concentration at different times during the day. To date, this has not been investigated in bed bugs. To address this, we explored circadian rhythms in insecticide susceptibility, xenobiotic metabolizing (XM) gene expressions, and metabolic detoxification in the common bed bug, Cimex lectularius. An insecticide susceptible Monheim strain of C. lectularius was most tolerant of deltamethrin during the late photophase at ZT9 (i.e. nine hours after light is present in the light-dark cycle (LD) cycle) and similarly repeated at CT9 (i.e. nine hours into the subjective day in constant darkness (DD)) suggesting endogenous circadian involvement in susceptibility to deltamethrin. No diel rhythm was observed against imidacloprid insecticide despite significant daily susceptibility in both LD and DD conditions. Rhythmic expressions of metabolic detoxification genes, GSTs1 and CYP397A1 displayed similar expression patterns with total GST and P450 enzyme activities in LD and DD conditions, respectively. The oscillation of mRNA levels of GSTs1 and CYP397A1 was found consistent with peak phases of deltamethrin susceptibility in C. lectularius. This study demonstrates that circadian patterns of metabolic detoxification gene expression occur within C. lectularius. As a consequence, insecticide efficacy can vary dramatically throughout a 24 hour period.
许多昆虫物种在一天中不同时间暴露于相同浓度的同一杀虫剂时,其敏感性会表现出昼夜变化。迄今为止,这在臭虫中尚未得到研究。为了解决这个问题,我们研究了常见臭虫 Cimex lectularius 的杀虫剂敏感性、外来物质代谢 (XM) 基因表达和代谢解毒的昼夜节律。在光照-黑暗 (LD) 周期中,具有杀虫剂敏感性的 Monheim 品系 C. lectularius 在 ZT9(即光照存在于 LD 周期中的 9 小时后)时对溴氰菊酯的耐受性最强,在 CT9(即持续黑暗中的主观日的 9 小时)时也同样如此,这表明内源性昼夜节律参与了对溴氰菊酯的敏感性。尽管在 LD 和 DD 条件下,对拟除虫菊酯杀虫剂的敏感性存在显著的昼夜变化,但对拟除虫菊酯杀虫剂没有昼夜节律。代谢解毒基因 GSTs1 和 CYP397A1 的昼夜表达模式与 LD 和 DD 条件下的总 GST 和 P450 酶活性相似。GSTs1 和 CYP397A1 的 mRNA 水平的波动与 C. lectularius 对溴氰菊酯敏感性的高峰阶段一致。本研究表明,代谢解毒基因表达的昼夜节律模式发生在 C. lectularius 中。因此,杀虫剂的功效在 24 小时内可能会有很大的变化。