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Does global warming intensify cost of antipredator reaction? A case study of freshwater amphipods

机译:全球变暖是否加剧了反应的成本?淡水零下的案例研究

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摘要

Global warming is a worldwide phenomenon affecting the functioning of diverse ecosystems, including fresh waters. Temperature increase affects physiology and behaviour of ectotherms due to growing energetic demands necessary to sustain increased metabolic rate. Anti-predator responses may resemble temperature-induced changes in organisms, suggesting synergism between these factors. To check how temperature shapes physiological and behavioural responses of ectotherms to predation risk, we exposed amphipods: Dikerogammarus villosus and Gammarusjazdzewskii to fish kairomones at 10,17 or 24 °C Animals were placed in tanks where temperature was gradually adjusted to the desired test temperature and acclimated under such conditions for 3 subsequent days. Then they were exposed to the predator cue (the Eurasian perch kairomone) for 35 min to test their acute responses. We measured metabolic rate (as respiration), antioxidant defence (CAT: catalase activity, TAS: total antioxidant status), oxidative molecules (TOS: total oxidative status), oxidative damage (TBARS: thio-barbituric acid reactive substances) and behaviour (locomotor activity). Amphipods increased respiration with raising temperature and when exposed to predation risk (all temperatures). Only G. jazdzewskii exhibited increased TOS when exposed to 24 °C or to predation risk at all temperatures. Antioxidant defence increased with raising temperature (CAT. TAS) and decreased under predation risk (CAT). Cellular damage increased in G. jazdzewskii under predation risk at 10 and 24 °C, but raised temperature itself did not generate any damage. Amphipods reduced locomotor activity at 24 °C. Thus, at elevated temperatures, amphipods minimized their cellular damage at the cost of increased antioxidant defence and lower locomotor activity (potentially disadvantageous under higher energetic demands). Under predation risk, the performance of antioxidant systems was reduced, probably due to energy allocation into anti-predatory mechanisms, leading to increased cellular damage at suboptimum temperatures. Thus, negative consequences of elevated temperature for organisms may be amplified by changes in behaviour (compromising food acquisition) and non-consumptive predator effects.
机译:全球变暖是一个影响各种生态系统的运作的全球现象,包括新鲜水域。由于越来越多的性能需求来维持代谢率,温度升高会影响异常的生理学和行为。抗捕食者反应可能类似于生物体的温度诱导的变化,表明这些因素之间的协同作用。为了检查温度如何形状的外立温度与捕食风险的生理和行为应对,我们暴露于Amphipods:Dikerogammarus villosus和Gammarusjazdzewskii在10,17或24°C动物中捕鱼护氏素,将温度逐渐调节到所需的试验温度和温度在此条件下适应3个后续日期。然后他们接触到捕食者提示(欧亚鲈鱼Kairomone)35分钟,以测试他们的急性反应。我们测得代谢率(作为呼吸),抗氧化防御(猫:过氧化氢酶活性,TAS:总抗氧化剂状态),氧化分子(TOS:总氧化地位),氧化损伤(TBARS:TBAR-巴比妥酸反应性物质)和行为(运动活动)。 Amphipods随着饲养温度和暴露于捕食风险(所有温度)而增加呼吸。只有G. Jazdzewskii在暴露于24°C时表现出增加TO或在所有温度下捕食风险。抗氧化防御随着升高的温度(猫.TAS)增加,并在捕食风险下减少(猫)。在10和24°C的捕食风险下,G.Jazdzewskii的细胞损伤增加,但升高的温度本身并没有产生任何损坏。 Amphipods在24℃下减少运动活性。因此,在升高的温度下,Amphipods以增加的抗氧化防御和较低的运动活动(在高能量需求下可能不利)以增加它们的细胞损伤。在捕食风险下,降低了抗氧化系统的性能,可能是由于能量分配成抗掠夺机制,导致次次温度下的细胞损伤增加。因此,可以通过行为的变化(损害食物采集)和非消耗捕食者效应,扩增生物体升高的负面后果。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|140474.1-140474.9|共9页
  • 作者单位

    Nicolaus Copernicus University Faculty of Biological and Veterinary Sciences Department of Ecology and Biogeography Lwowska 1 87-100 Torun Poland;

    Nicolaus Copernicus University Faculty of Biobgical and Veterinary Sciences Department of Animal Physiology Lwowska 7 87-700 Torun Poland;

    Nicolaus Copernicus University Faculty of Biological and Veterinary Sciences Department of Ecology and Biogeography Lwowska 1 87-100 Torun Poland;

    Nicolaus Copernicus University Faculty of Biobgical and Veterinary Sciences Department of Animal Physiology Lwowska 7 87-700 Torun Poland;

    Nicolaus Copernicus University Faculty of Biological and Veterinary Sciences Department of Invertebrate Zoology and Parasitology Lwowska 1 87-100 Torun Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate change; Increased temperature; Predation risk; Metabolic rate; Oxidative stress; Invasive species;

    机译:气候变化;温度增加;掠夺风险;代谢速率;氧化胁迫;侵袭性物种;

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