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生态免疫学与寒冷:免疫在塑造变温动物越冬生存中的作用。

Eco-immunology in the cold: the role of immunity in shaping the overwintering survival of ectotherms.

机构信息

Department of Biology, Acadia University, Wolfville, NS, Canada B4P 2R6

Department of Environmental and Biological Sciences, University of Eastern Finland, PO Box 111, FI-80101 Joensuu, Finland.

出版信息

J Exp Biol. 2018 Jul 1;221(Pt 13):jeb163873. doi: 10.1242/jeb.163873.

Abstract

The effect of temperature on physiology mediates many of the challenges that ectotherms face under climate change. Ectotherm immunity is thermally sensitive and, as such, environmental change is likely to have complex effects on survival, disease resistance and transmission. The effects of temperature on immunity will be particularly profound in winter because cold and overwintering are important triggers and regulators of ectotherm immune activity. Low temperatures can both suppress and activate immune responses independent of parasites, which suggests that temperature not only affects the rate of immune responses but also provides information that allows overwintering ectotherms to balance investment in immunity and other physiological processes that underlie winter survival. Changing winter temperatures are now shifting ectotherm immunity, as well as the demand for energy conservation and protection against parasites. Whether an ectotherm can survive the winter will thus depend on whether new immune phenotypes will shift to match the conditions of the new environment, or leave ectotherms vulnerable to infection or energy depletion. Here, we synthesise patterns of overwintering immunity in ectotherms and examine how new winter conditions might affect ectotherm immunity. We then explore whether it is possible to predict the effects of changing winter conditions on ectotherm vulnerability to the direct and indirect effects of parasites.

摘要

温度对生理机能的影响介导了变温动物在气候变化下面临的许多挑战。变温动物的免疫力对温度敏感,因此,环境变化很可能对其生存、疾病抵抗力和传播产生复杂的影响。温度对免疫的影响在冬季尤为明显,因为寒冷和越冬是变温动物免疫活动的重要触发因素和调节因素。低温不仅可以独立于寄生虫抑制和激活免疫反应,这表明温度不仅影响免疫反应的速度,还提供了信息,使越冬变温动物能够平衡免疫投资和其他支持冬季生存的生理过程。冬季温度的变化正在改变变温动物的免疫力,以及对节能和抵御寄生虫的需求。因此,变温动物是否能在冬季存活将取决于新的免疫表型是否会转移以适应新环境的条件,或者使变温动物容易受到感染或能量消耗的影响。在这里,我们综合了变温动物越冬免疫的模式,并研究了新的冬季条件如何影响变温动物的免疫力。然后,我们探讨了是否有可能预测气候变化对变温动物易受寄生虫直接和间接影响的脆弱性的影响。

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