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Elevated carbon dioxide affects behavioural lateralization in a coral reef fish

机译:二氧化碳含量升高会影响珊瑚鱼的行为偏侧化

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摘要

Elevated carbon dioxide (CO2) has recently been shown to affect chemosensory and auditory behaviour, and activity levels of larval reef fishes, increasing their risk of predation. However, the mechanisms underlying these changes are unknown. Behavioural lateralization is an expression of brain functional asymmetries, and thus provides a unique test of the hypothesis that elevated CO2 affects brain function in larval fishes. We tested the effect of near-future CO2 concentrations (880 µatm) on behavioural lateralization in the reef fish, Neopomacentrus azysron. Individuals exposed to current-day or elevated CO2 were observed in a detour test where they made repeated decisions about turning left or right. No preference for right or left turns was observed at the population level. However, individual control fish turned either left or right with greater frequency than expected by chance. Exposure to elevated-CO2 disrupted individual lateralization, with values that were not different from a random expectation. These results provide compelling evidence that elevated CO2 directly affects brain function in larval fishes. Given that lateralization enhances performance in a number of cognitive tasks and anti-predator behaviours, it is possible that a loss of lateralization could increase the vulnerability of larval fishes to predation in a future high-CO2 ocean.
机译:最近已表明,升高的二氧化碳(CO2)会影响化学感觉和听觉行为以及幼体礁鱼的活动水平,从而增加其捕食风险。但是,这些变化的潜在机制尚不清楚。行为偏侧化是大脑功能不对称性的一种表达,因此提供了一个独特的假设,即二氧化碳含量升高会影响幼体鱼脑功能的假说。我们测试了近来的CO2浓度(880 µatm)对珊瑚鱼Neopomacentrus azysron行为偏侧化的影响。在绕行测试中观察了暴露于当前二氧化碳浓度或升高的二氧化碳的个人,他们反复做出了左右转向的决定。在人口水平上未观察到偏向右转或偏左转。但是,个别控制鱼向左或向右转的频率比偶然预期的要大。暴露于升高的CO 2会破坏个体的偏侧化,其值与随机预期值没有差异。这些结果提供了令人信服的证据,表明二氧化碳浓度升高直接影响幼体鱼的脑功能。考虑到偏侧化增强了许多认知任务和反捕食行为的性能,偏侧化的丧失可能会增加幼鱼在未来高二氧化碳海洋中对捕食的脆弱性。

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