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首页> 外文期刊>Biology Open >Projected near-future CO2 levels increase activity and alter defensive behaviours in the tropical squid Idiosepius pygmaeus
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Projected near-future CO2 levels increase activity and alter defensive behaviours in the tropical squid Idiosepius pygmaeus

机译:预计未来的二氧化碳水平会增加热带鱿鱼Idiosepius pygmaeus的活动并改变其防御行为

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Carbon dioxide (CO2) levels projected to occur in the oceans by the end of this century cause a range of behavioural effects in fish, but whether other highly active marine organisms, such as cephalopods, are similarly affected is unknown. We tested the effects of projected future CO2 levels (626 and 956 μatm) on the behaviour of male two-toned pygmy squid, Idiosepius pygmaeus . Exposure to elevated CO2 increased the number of active individuals by 19–25% and increased movement (number of line-crosses) by nearly 3 times compared to squid at present-day CO2. Squid vigilance and defensive behaviours were also altered by elevated CO2 with 80% of individuals choosing jet escape responses over defensive arm postures in response to a visual startle stimulus, compared with 50% choosing jet escape responses at control CO2. In addition, more escape responses were chosen over threat behaviours in body pattern displays at elevated CO2 and individuals were more than twice as likely to use ink as a defence strategy at 956 μatm CO2, compared with controls. Increased activity could lead to adverse effects on energy budgets as well as increasing visibility to predators. A tendency to respond to a stimulus with escape behaviours could increase survival, but may also be energetically costly and could potentially lead to more chases by predators compared with individuals that use defensive postures. These results demonstrate that projected future ocean acidification affects the behaviours of a tropical squid species.
机译:预计到本世纪末海洋中会发生二氧化碳(CO2)水平,从而对鱼类产生一系列行为影响,但是未知其他高活性海洋生物(如头足类)是否受到类似影响。我们测试了预计的未来CO2水平(626和956μatm)对雄性两吨侏儒乌贼Idiosepius pygmaeus行为的影响。与当今的CO2相比,暴露于高水平的CO2使活跃个体的数量增加了19–25%,运动(线叉数)增加了近3倍。鱿鱼的警惕性和防御行为也因CO2升高而改变,超过80%的人选择视觉逃逸刺激而不是防御手臂姿势做出喷射逃逸反应,而50%的人选择对照CO2做出逃逸反应。此外,在二氧化碳浓度升高的情况下,针对人体模式显示中的威胁行为选择了更多的逃避响应,与对照组相比,在956μatm的二氧化碳浓度下,使用墨水作为防御策略的可能性是个人的两倍以上。活动的增加可能导致对能源预算的不利影响,并使捕食者的知名度增加。对逃避行为的刺激做出反应的趋势可能会增加生存率,但在能量上也要付出高昂的代价,与使用防御姿势的人相比,掠夺者可能会追逐更多的追逐者。这些结果表明,预计未来的海洋酸化会影响热带鱿鱼的行为。

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