首页> 外文期刊>Entomologia generalis >Effect of the frequency and magnitude of extreme temperature on the life history traits of the large cotton aphid, Acyrthosiphon gossypii (Hemiptera: Aphididae): implications for their population dynamics under global warming
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Effect of the frequency and magnitude of extreme temperature on the life history traits of the large cotton aphid, Acyrthosiphon gossypii (Hemiptera: Aphididae): implications for their population dynamics under global warming

机译:极端温度频率和幅度对大棉蚜的寿命历史特征的影响,亚吡喃(Hemiptera:Aphididae):全球变暖下的人口动态的影响

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摘要

Models of global climate change predict a greater frequency and magnitude of extreme temperature events and this will have biological consequences. Aphids are vulnerable to climate warming because ambient temperature strongly affects their life history traits. We used the large cotton aphid (Acyrthosiphon gossypii M.) as a model insect to provide insights into the responses of mid-latitude (temperate zone) aphids exposed to high temperature events. The developmental time, survival and fecundity of individual A. gossypii were measured under five temperature regimes. Even though the mean daily temperature was the same (24 degrees C) for all temperature regimes, the impact of temperature fluctuations to extreme levels (36 degrees C) on aphid fitness was clearly different to the impact of constant temperature. Negative effects on the aphid's life history traits occurred under all four fluctuating temperature regimes. Our study shows that cooler intervals may help the insect to tolerate potentially lethal high temperatures under naturally occurring conditions. The results will help us to understand the changes to aphid population dynamics likely to be associated with global warming in the future, and to design management practices for this pest species in cotton-growing areas in mid-latitudes such as central Asia.
机译:全球气候变化的模型预测了极端温度事件的更大频率和幅度,这将具有生物后果。蚜虫容易受到气候变暖的影响,因为环境温度强烈影响他们的生命历史特征。我们使用大型棉蚜(Acyrthosiphon Gossypii M.)作为模型昆虫,为中纬度(温带区)蚜虫暴露于高温事件的响应提供见解。在五个温度制度下测量单个A.Gossypii的发育时间,存活率和繁殖力。尽管所有温度制度的平均日温度相同(24摄氏度),但温度波动对蚜虫适合度的极端水平(36℃)的影响明显不同于恒定温度的影响。在所有四个波动温度制度下发生对蚜虫的生命历史特征的负面影响。我们的研究表明,冷却的间隔可以有助于昆虫在天然存在的条件下耐受潜在的致命高温。结果将有助于我们了解对未来对全球变暖有关的蚜虫种群动态的变化,以及在中亚中纬度地区的棉花生长区域中为这种害虫地区设计的管理实践。

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