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Effects of ultraviolet radiation on metabolic rate and fitness of Aedes albopictus and Culex pipiens mosquitoes

机译:紫外线对白纹伊蚊和淡色库蚊蚊子代谢率和适应性的影响

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摘要

Natural and anthropogenic changes (e.g., land use change, pollution) will alter many environmental factors in the coming years, including the amount of solar radiation reaching the earth’s surface. Alterations in solar radiation exposure is likely to impact the ecologies of many living organisms, including invertebrates that inhabit aquatic habitats. In this study, we assessed the effect of UV-B radiation on the metabolic rates and fitness (survival, development time, body size) of Aedes albopictus and Culex pipiens mosquitoes and the activity of their microbial food resources in experimental aquatic microcosms. We exposed single-species cohorts of newly hatched Ae. albopictus and Cx. pipiens larvae and a control treatment with no larvae to three UV-B conditions that mimicked those in full-sun and shade in the field and to a control condition with no UV-B radiation. Our results indicated that UV-B radiation affected the metabolic rates of both Ae. albopictus and Cx. pipiens larvae, with significantly higher rates found in full-sun compared to shade and no-UV conditions, 8 and 15 days after exposure began. Ae. albopictus and Cx. pipiens survival was also affected by UV-B radiation condition, with significantly lower survival in full-sun compared to shade and no UV-B conditions. Microbial metabolic rates were consistently significantly lower in full-sun compared to shade and no-UV conditions, especially at 8 days of exposure. These results show that UV-B radiation at levels found in open spaces showed strong and important impacts on the metabolic rates and survival of Ae. albopictus and Cx. pipiens larvae. Decreased survival of Ae. albopictus and Cx. pipiens with higher UV-B radiation levels may be caused by both direct exposure to radiation as well as the indirect effects of reduced microbial food, resulting in greater metabolic demands and stress. Negative impacts of UV-B radiation on the survival of Ae. albopictus and Cx. pipiens are likely to have important implications for the distribution and abundance of these mosquitoes, and the transmission of pathogens that these two broadly distributed mosquitoes vector.
机译:未来几年,自然和人为的变化(例如土地使用变化,污染)将改变许多环境因素,包括到达地球表面的太阳辐射量。太阳辐射暴露的变化可能会影响许多生物的生态,包括栖息在水生生境中的无脊椎动物。在这项研究中,我们评估了UV-B辐射对白纹伊蚊和淡色库蚊蚊子的代谢率和适应性(生存期,发育时间,体型)的影响以及它们在实验水生微生物世界中微生物食物资源的活性。我们暴露了刚孵出的Ae的单物种种群。 albopictus和Cx。 pipiens幼虫和没有幼虫的对照处理,可模仿三种UV-B条件(模仿野外日照和阴暗条件下的条件),并达到无UV-B辐射的对照条件。我们的结果表明,UV-B辐射会影响两种Ae的代谢率。 albopictus和Cx。 pipiens幼虫,在暴露开始后的8天和15天,与遮荫和无紫外线条件相比,在全日光照下的比率显着更高。 e albopictus和Cx。 pipiens的生存也受到UV-B辐射条件的影响,与遮荫和无UV-B条件相比,全日照的生存率明显降低。与阴凉和无紫外线条件相比,在全日照下微生物的代谢率始终显着降低,尤其是在暴露8天时。这些结果表明,在开放空间中发现的UV-B辐射水平对Ae的代谢率和存活率具有强烈而重要的影响。 albopictus和Cx。 pipiens幼虫。 Ae的存活率降低。 albopictus和Cx。紫外线辐射较高的pipiens可能是由于直接暴露于辐射以及微生物食物减少的间接影响所致,导致更大的代谢需求和压力。 UV-B辐射对Ae生存的负面影响。 albopictus和Cx。 pipiens可能对这些蚊子的分布和丰度以及这两种蚊子分布广泛的病原体的传播具有重要意义。

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