Warren Donald T, Donelson Jennifer M, McCormick Mark I
Department of Marine Biology and Aquaculture, James Cook University, Townsville, Queensland, Australia.
ARC Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, Queensland, Australia.
PeerJ. 2017 Aug 18;5:e3652. doi: 10.7717/peerj.3652. eCollection 2017.
The threat of predation, and the prey's response, are important drivers of community dynamics. Yet environmental temperature can have a significant effect on predation avoidance techniques such as fast-start performance observed in marine fishes. While it is known that temperature increases can influence performance and behaviour in the short-term, little is known about how species respond to extended exposure during development. We produced a startle response in two species of damselfish, the lemon damsel and the Ambon damselfish by the repeated use of a drop stimulus. We show that the length of thermal exposure of juveniles to elevated temperature significantly affects this escape responses Short-term (4d) exposure to warmer temperature affected directionality and responsiveness for both species. After long-term (90d) exposure, only showed beneficial plasticity, with directionality returning to control levels. Responsiveness also decreased in both species, possibly to compensate for higher temperatures. There was no effect of temperature or length of exposure on latency to react, maximum swimming speed, or escape distance suggesting that the physical ability to escape was maintained. Evidence suggests that elevated temperature may impact some fish species through its effect on the behavioural responses while under threat rather than having a direct influence on their physical ability to perform an effective escape response.
捕食威胁以及猎物的反应是群落动态的重要驱动因素。然而,环境温度会对诸如海洋鱼类中观察到的快速启动表现等捕食规避技巧产生重大影响。虽然已知温度升高会在短期内影响表现和行为,但对于物种在发育过程中对长期暴露的反应却知之甚少。我们通过反复使用滴水刺激,在两种雀鲷(柠檬雀鲷和安汶雀鲷)中引发了惊吓反应。我们发现,幼鱼在高温下的热暴露时长会显著影响这种逃避反应。短期(4天)暴露于较温暖温度会影响两种雀鲷的方向性和反应能力。长期(90天)暴露后,只有柠檬雀鲷表现出有益的可塑性,其方向性恢复到对照水平。两种雀鲷的反应能力也都有所下降,可能是为了补偿更高的温度。温度或暴露时长对反应潜伏期、最大游泳速度或逃避距离没有影响,这表明逃避的身体能力得以维持。有证据表明,高温可能通过影响鱼类在受到威胁时的行为反应来影响某些鱼类物种,而不是直接影响它们进行有效逃避反应的身体能力。