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气候变化中尾蚴存活和代谢的热力学。

Thermodynamics of cercarial survival and metabolism in a changing climate.

机构信息

School of Biological Sciences, Royal Holloway, University of London, Egham, Surrey TW20 0EX, UK.

出版信息

Parasitology. 2011 Sep;138(11):1442-52. doi: 10.1017/S0031182011001272. Epub 2011 Aug 8.

Abstract

Cercariae are non-feeding free-living stages in the life cycles of trematodes, highly influenced by temperature. Their life span is brief, limited by the depletion of a non-renewable glycogen store. Warmer temperatures under the influence of climate change may promote the transmission of parasites and therefore understanding their thermobiology forms an important step in discerning the future dynamics of parasite populations. An empirical relationship exists between cercarial mean expected life span and the half-life of the population (t0·5) and therefore t0·5 is a good indicator of glycogen utilization. In this study experimental data on the effects of temperature on cercarial survival is compiled from the scientific literature and evaluated in terms of metabolism using Q10 and Arrhenius activation energy (E* or μ), common measures of temperature-mediated reaction rates. Cercariae have a variable response to temperature, which does not appear to be influenced by their life-history attributes or size. There were little differences in Q10 and E* values between most temperature ranges. In almost half the studies examined (7 of 16) cercariae demonstrated a discrete zone of thermostability over a range equivalent to typical individual mean summer temperatures. Distinct intraspecific differences in temperature responses between 3 laboratory strains of Schistosoma mansoni and 2 natural strains of Echinoparyphium recurvatum sensu stricto were apparent. The importance of these results for cercarial biology under global climate change is discussed.

摘要

尾蚴是吸虫生活史中的非摄食自由生活阶段,受温度影响很大。它们的寿命很短,受到不可再生糖原储存耗尽的限制。气候变化导致的温度升高可能会促进寄生虫的传播,因此了解它们的热生物学是辨别寄生虫种群未来动态的重要一步。尾蚴的平均预期寿命与种群半衰期(t0·5)之间存在经验关系,因此 t0·5 是糖原利用的良好指标。在这项研究中,从科学文献中汇编了关于温度对尾蚴生存影响的实验数据,并使用 Q10 和 Arrhenius 激活能(E* 或 μ)(温度介导反应速率的常用指标)从新陈代谢的角度进行了评估。尾蚴对温度的反应具有可变性,似乎不受其生活史特征或大小的影响。大多数温度范围内的 Q10 和 E* 值差异不大。在研究的几乎一半(16 项中的 7 项)中,尾蚴在相当于典型个体夏季平均温度的范围内表现出明显的热稳定性区域。曼氏血吸虫 3 个实验室株和 2 个严格意义上的棘口属复殖吸虫天然株之间的温度反应明显存在种内差异。讨论了这些结果对全球气候变化下尾蚴生物学的重要性。

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