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首页> 外文期刊>Scientific reports. >Effects of oil-film layer and surfactant on the siphonal respiration and survivorship in the fourth instar larvae of Aedes togoi mosquito in laboratory conditions
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Effects of oil-film layer and surfactant on the siphonal respiration and survivorship in the fourth instar larvae of Aedes togoi mosquito in laboratory conditions

机译:油膜层和表面活性剂对多哥伊蚊在实验室条件下第四龄幼虫虹吸呼吸和存活的影响

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摘要

Mosquitoes transmit various diseases; thus, controlling them is necessary to prevent mosquito-borne infections. Unlike flying adult mosquitoes, those in the immature stages are easy to control because of being restricted to their habitats found in an aquatic environment. In this study, we aimed to evaluate of respiration and survivorship in the larvae of Aedes togoi. The mechanism of actions of the oil-film layer and the surfactant as well as their effects on the siphonal respiration of submerged Aedes togoi larvae were analyzed by checking the survival time of mosquito larvae against oil-film layer and surfactant, and conducting experiments using a siphon-model. Compared with an impermeable membrane used for reference (762.4?min; average time in all cases), the survival time of mosquito larvae was 5% longer for the oil-film layer (808.1?min) and 40% longer for the surfactant (1086.9?min). The surface of the siphon was changed from hydrophobic to hydrophilic by addition of a surfactant. In addition, the surface tension and wettability have a significant influence on the opening and closing of siphon. This study would be helpful for understanding the basic mechanism of physical control measures for disturbing the siphonal respiration of mosquito larvae in a way of dissolved oxygen and surface tension. The present results would guide the establishment of effective control measures for mosquitoes.
机译:蚊子传播各种疾病;因此,控制它们对于预防蚊子传播是必要的。与成年蚊子不同,处于不成熟阶段的蚊子由于受到水生环境中栖息地的限制而易于控制。在这项研究中,我们旨在评估多毛伊蚊幼虫的呼吸和存活率。通过检查蚊子幼虫对油膜层和表面活性剂的存活时间,并通过使用虹吸模型。与作为参考的不渗透膜相比(762.4?min;所有情况下的平均时间),油膜层的蚊虫幼虫的存活时间延长了5%(808.1?min),表面活性剂的存活时间延长了40%(1086.9)分钟)。通过添加表面活性剂,虹吸管的表面从疏水性变为亲水性。另外,表面张力和润湿性对虹吸管的打开和关闭有重要影响。这项研究将有助于了解物理控制措施的基本机制,以溶解氧和表面张力的方式干扰蚊子幼虫的虹吸呼吸。目前的结果将指导建立有效的蚊子控制措施。

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