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Out of the frying pan into the air—emersion behaviour and evaporative heat loss in an amphibious mangrove fish (Kryptolebias marmoratus)

机译:从煎锅出来进入空气—两栖红树林鱼(Kryptolebias marmoratus)的发芽行为和蒸发热损失

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摘要

Amphibious fishes often emerse (leave water) when faced with unfavourable water conditions. How amphibious fishes cope with the risks of rising water temperatures may depend, in part, on the plasticity of behavioural mechanisms such as emersion thresholds. We hypothesized that the emersion threshold is reversibly plastic and thus dependent on recent acclimation history rather than on conditions during early development. Kryptolebias marmoratus were reared for 1 year at 25 or 30°C and acclimated as adults (one week) to either 25 or 30°C before exposure to an acute increase in water temperature. The emersion threshold temperature and acute thermal tolerance were significantly increased in adult fish acclimated to 30°C, but rearing temperature had no significant effect. Using a thermal imaging camera, we also showed that emersed fish in a low humidity aerial environment (30°C) lost significantly more heat (3.3°C min−1) than those in a high humidity environment (1.6°C min−1). In the field, mean relative humidity was 84%. These results provide evidence of behavioural avoidance of high temperatures and the first quantification of evaporative cooling in an amphibious fish. Furthermore, the avoidance response was reversibly plastic, flexibility that may be important for tropical amphibious fishes under increasing pressures from climatic change.
机译:当面临不利的水质条件时,两栖鱼类常常会出水(离开水面)。两栖鱼类如何应对水温上升的风险可能部分取决于行为机制(如浮现阈值)的可塑性。我们假设出现的阈值是可逆的,因此取决于最近的适应历史,而不是取决于早期发育的条件。在25或30°C的条件下,将mar丽蝇饲养一年,成年后(一周)适应25或30°C的温度,然后暴露于水温急剧升高的环境中。适应30°C的成年鱼的出苗阈值温度和急性热耐受性均显着提高,但饲养温度无明显影响。使用热像仪,我们还发现,在低湿度空中环境(30°C)中发芽的鱼的热量散发(3.3°C min -1 )比高湿度环境中的发热量大得多( 1.6°C min -1 )。在田间,平均相对湿度为84%。这些结果提供了行为避免高温的证据,并首次量化了两栖鱼类的蒸发冷却。此外,回避反应是可逆的可塑性,灵活性,在气候变化带来的日益增加的压力下,这对于热带两栖鱼类可能很重要。

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