存水弯(水管)
灭蚊
载体(分子生物学)
生物
讨厌的人
气味
病毒学
生态学
免疫学
疟疾
环境科学
环境工程
神经科学
重组DNA
生物化学
基因
作者
Jing Wu,Lijun Cai,Hu Ke,Yiquan Cai,Zetian Lai,Siyu Zhao,Hongkai Liu,Bin Li,Yuchao Rong,Lu Gan,Xiao‐Guang Chen
摘要
Abstract BACKGROUND Vector mosquito control is important for preventing and controlling mosquito‐borne infectious diseases. This study designed and developed a mosquito killer (MK) with a specific light wavelength, simulated human body temperature, human odor, and a photocatalyst to stimulate CO 2 based on the physiological characteristics and ecological habits of mosquitoes. We tested the trapping effect of individual and multiple mosquito‐trapping elements of the MK through two‐way selection experiments and compared them with several commercial mosquito traps. RESULTS The 365 nm wavelength MK was significantly more effective than the 395 nm ( Cx. quinquefasciatus : 62.00% vs. 34.25%; Ae. albopictus : 50.75% vs 45.00%, An. sinensis : 49.75% vs 39.00%). Mosquitoes captured by the MK with heaters at 365 nm were significantly more than those captured by the MK without heaters at 365 nm. A trap with a 365 nm wavelength, heating element, and lure showed significantly better capture effectiveness than MK with a 365 nm wavelength, heating element, but without lure ( Cx. quinquefasciatus : 67.00% vs. 29.75%, Ae. albopictus : 60.25% vs 36.25%, An. sinensis : 49.75% vs 39.75%). The coated photocatalyst trap with a 365 nm wavelength, heating element, and lure showed significantly better capture effectiveness than the trap without coating ( Cx. quinquefasciatus : 54.25% vs. 42.50%; Ae. albopictus : 53.50% vs 44.00%, An. sinensis : 50.00% vs 41.25%). This trap demonstrated a significantly better capture advantage for Cx. quinquefasciatus and Ae. albopictus compared to the three commercial products. CONCLUSION The developed mosquito trap with multiple attractant factors significantly enhanced the capture effectiveness of common mosquitoes. © 2024 Society of Chemical Industry.
科研通智能强力驱动
Strongly Powered by AbleSci AI