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The likely effects of thermal climate change on vertebrate skeletal muscle mechanics with possible consequences for animal movement and behaviour

机译:气候变化对脊椎动物骨骼肌力学的可能影响可能对动物的活动和行为产生影响

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摘要

Climate change can involve alteration in the local temperature that an animal is exposed to, which in turn may affect skeletal muscle temperature. The underlying effects of temperature on the mechanical performance of skeletal muscle can affect organismal performance in key activities, such as locomotion and fitness-related behaviours, including prey capture and predator avoidance. The contractile performance of skeletal muscle is optimized within a specific thermal range. An increased muscle temperature can initially cause substantial improvements in force production, faster rates of force generation, relaxation, shortening, and production of power output. However, if muscle temperature becomes too high, then maximal force production and power output can decrease. Any deleterious effects of temperature change on muscle mechanics could be exacerbated by other climatic changes, such as drought, altered water, or airflow regimes that affect the environment the animal needs to move through. Many species will change their location on a daily, or even seasonal basis, to modulate the temperature that they are exposed to, thereby improving the mechanical performance of their muscle. Some species undergo seasonal acclimation to optimize muscle mechanics to longer-term changes in temperature or undergo dormancy to avoid extreme climatic conditions. As local climate alters, species either cope with the change, adapt, avoid extreme climate, move, or undergo localized extinction events. Given that such outcomes will be determined by organismal performance within the thermal environment, the effects of climate change on muscle mechanics could have a major impact on the ability of a population to survive in a particular location.
机译:气候变化可能涉及动物所接触的局部温度的变化,进而可能影响骨骼肌温度。温度对骨骼肌机械性能的潜在影响会影响关键活动(例如运动和与健身有关的行为,包括捕食和避免捕食)中的生物性能。骨骼肌的收缩性能在特定的热范围内得到优化。升高的肌肉温度最初会导致力量产生,力产生,放松,缩短和产生动力输出的速度更快的实质性改善。但是,如果肌肉温度过高,则最大力量产生和功率输出会降低。温度变化对肌肉力学的任何有害影响都可能因其他气候变化而加剧,例如干旱,水的变化或影响动物需要穿越的环境的气流状态。许多物种会每天甚至季节性改变其位置,以调节其所处的温度,从而改善其肌肉的机械性能。一些物种经过季节性适应,以优化肌肉力学以适应长期温度变化,或者进行休眠以避免极端的气候条件。随着当地气候的变化,物种要么应对变化,要么适应,避免极端气候,迁移或经历局部灭绝事件。鉴于这些结果将由热环境中的生物表现决定,因此气候变化对肌肉力学的影响可能会对人群在特定位置生存的能力产生重大影响。

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