Dawood Abdel-Fattah D, Baz Mohamed M, Ibrahim Moustafa I
Physics Department, Faculty of Science, Benha University, Qalyubiya 13518, Egypt.
Entomology Department, Faculty of Science, Benha University, Qalyubiya 13518, Egypt.
Heliyon. 2020 Oct 21;6(10):e05314. doi: 10.1016/j.heliyon.2020.e05314. eCollection 2020 Oct.
Surface tension is a phenomenon in the liquid media and plays an important part in the development and survival of aquatic animals. Influence of Aquatain™ monomolecular film on surface tension was determined against mosquito larvae and pupae at different temperatures (10, 15, 20, 25, 30 and 35 °C) and Aquatain™ doses (0.5, 1.0 and 2.0 ml/m). In the laboratory, Aquatain™ showed larvicidal and pupicidal effects against the filarial vector . Higher mortality was observed in late and more weighted instars/stages than young ones as well as in the pupal stage. The pupal mortality reached 76.2%, 86% and 93.3% after 12 h post-treatment at 0.5, 1.0 and 2.0 ml/m, respectively, and it was completely eliminated (100%) within 24 h compared to 15.1%, 26.9% and 38.2% for 1 larval instar, respectively. Also, results showed at 0.5 ml/m with temperature range: 10, 15, 20, 25, 30 and 35 °C, the mortality reached 4.0, 6.7, 10.8, 17.3, 22.7, 29.3% and 32, 44, 54, 72, 84, 97.3% for 1 and 4 larval instar, respectively, where the surface tension (γ) was 65.6, 62.4, 58.0, 57.0, 54.2 and, 49.6 dyn/cm, while the Aquatain™ was more effective on mosquito larvae and pupae at high doses with the temperature range. On the other hand, without Aquatain™ dose, the mortality value ranged between 0.0 - 1.2%, and the surface tension (γ) was 74.5 dyne/cm, which is considered as an accidental death. Aquatain™ was effective against all aquatic phases of mosquitoes, especially against the last and weighted ones. Not only was the efficacy of Aquatain™ increased by increasing the dose, but it also increased with the increased temperature of the environment. This efficiency of Aquatain™ is due to its ability to reduce the surface tension of the water medium, preventing different stages of mosquitoes from reaching the surface for breathing thereby leading to suffocation and death. Therefore, we recommended Aquatain™ in programmes for mosquito control and other aquatic insects as a safe, cost-effective control agent.
表面张力是液体介质中的一种现象,在水生动物的发育和生存中起着重要作用。测定了Aquatain™单分子膜在不同温度(10、15、20、25、30和35℃)和不同Aquatain™剂量(0.5、1.0和2.0毫升/平方米)下对蚊虫幼虫和蛹表面张力的影响。在实验室中,Aquatain™对丝虫病传播媒介显示出杀幼虫和杀蛹作用。观察到晚期和体重较大的龄期/阶段比幼虫早期以及蛹期的死亡率更高。处理后12小时,在剂量为0.5、1.0和2.0毫升/平方米时,蛹的死亡率分别达到76.2%、86%和93.3%,与1龄幼虫分别为15.1%、26.9%和38.2%相比,24小时内完全消除(100%)。此外,结果表明,在剂量为0.5毫升/平方米、温度范围为10、15、20、25、30和35℃时,1龄和4龄幼虫的死亡率分别达到4.0%、6.7%、10.8%、17.3%、22.7%、29.3%和32%、44%、54%、72%、84%、97.3%,此时表面张力(γ)分别为65.6、62.4、58.0、57.0、54.2和49.6达因/厘米,而在该温度范围内,高剂量的Aquatain™对蚊虫幼虫和蛹更有效。另一方面,在无Aquatain™剂量时,死亡率值在0.0 - 1.2%之间,表面张力(γ)为74.5达因/厘米,这被视为意外死亡。Aquatain™对蚊子的所有水生阶段都有效,尤其是对最后和体重较大的阶段。Aquatain™的功效不仅随剂量增加而提高,还随环境温度升高而增加。Aquatain™的这种功效归因于其降低水介质表面张力的能力,阻止蚊子不同阶段到达水面呼吸,从而导致窒息死亡。因此,我们在蚊虫控制和其他水生昆虫防治计划中推荐使用Aquatain™,作为一种安全、经济有效的防治剂。