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Complex Interactions between Temperature and Relative Humidity on Water Balance of Adult Tsetse (Glossinidae Diptera): Implications for Climate Change

机译:温度和相对湿度对采采蝇成虫水分平衡的复杂相互作用(GlossinidaeDiptera):对气候变化的影响

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摘要

Insect water balance plays an important role in determining energy budgets, activity patterns, survival, and population dynamics and, hence, geographic distribution. Tsetse (Glossina spp.) are important vectors of human and animal disease occupying a wide range of habitats in Africa and are notable for their desiccation resistance in xeric environments. Here, we measure water balance and related traits [water loss rate (WLR), body water content (BWC), body lipid content (BLC) and body mass] in adult flies across a range of temperature (20–30°C) and relative humidity (0–99%) combinations in four tsetse species from both xeric and mesic habitats. WLRs were significantly affected by measurement under different temperature and relative humidity combinations, while BWC, BLC, and body mass were less affected. These results provide support for mass-independent inter- and intra-specific variation in WLRs and survival times. Furthermore, water balance responses to variation in temperature and relative humidity are complex in Glossina, and this response varies within and among species, subgroups, and ecotypes in terms of both magnitude of effects and the direction of change. Different effects of temperature and relative humidity within and among experimental conditions and species suggests cuticular permeability and saturation deficit are likely to be key factors in forecasting tsetse water balance responses to climate variability. This complicates potential forecasting of tsetse distribution in the face of climate change.
机译:昆虫的水平衡在确定能源预算,活动模式,生存和种群动态以及地理分布方面起着重要作用。采采蝇(Gsetina spp。)是人类和动物疾病的重要媒介,在非洲的许多生境中都占有重要地位,并且在干燥环境中具有抗干燥性。在这里,我们测量了温度(20–30°C)和温度范围内成年果蝇的水分平衡和相关性状[失水率(WLR),身体水分含量(BWC),身体脂质含量(BLC)和体重]。干燥和中生生境的四种采采蝇种类的相对湿度(0–99%)组合。在不同的温度和相对湿度组合下,WLR受测量影响显着,而BWC,BLC和体重受到的影响较小。这些结果为WLR和生存时间的质量独立的种间和种内变异提供了支持。此外,在格洛西纳(Glossina),水平衡对温度和相对湿度变化的响应是复杂的,并且在影响程度和变化方向方面,该响应在物种,亚组和生态型内和之间也有所不同。在实验条件和物种之间以及之间的温度和相对湿度的不同影响表明,表皮渗透率和饱和度不足可能是预测采采蝇水平衡对气候变化响应的关键因素。面对气候变化,这可能会使采采蝇分布的预测变得复杂。

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