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Effects of ocean acidification on the early life history of a tropical marine fish

机译:海洋酸化对热带海洋鱼类早期生活史的影响

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摘要

Little is known about how fishes and other non-calcifying marine organisms will respond to the increased levels of dissolved CO2 and reduced sea water pH that are predicted to occur over the coming century. We reared eggs and larvae of the orange clownfish, Amphiprion percula, in sea water simulating a range of ocean acidification scenarios for the next 50–100 years (current day, 550, 750 and 1030 ppm atmospheric CO2). CO2 acidification had no detectable effect on embryonic duration, egg survival and size at hatching. In contrast, CO2 acidification tended to increase the growth rate of larvae. By the time of settlement (11 days post-hatching), larvae from some parental pairs were 15 to 18 per cent longer and 47 to 52 per cent heavier in acidified water compared with controls. Larvae from other parents were unaffected by CO2 acidification. Elevated CO2 and reduced pH had no effect on the maximum swimming speed of settlement-stage larvae. There was, however, a weak positive relationship between length and swimming speed. Large size is usually considered to be advantageous for larvae and newly settled juveniles. Consequently, these results suggest that levels of ocean acidification likely to be experienced in the near future might not, in isolation, significantly disadvantage the growth and performance of larvae from benthic-spawning marine fishes.
机译:关于鱼类和其他非钙化海洋生物如何应对即将到来的世纪中增加的溶解二氧化碳水平和海水pH值下降的反应,人们所知甚少。我们在海水中养育了橙色小丑鱼Amphiprion percula的卵和幼虫,模拟了未来50–100年(当日,550、750和1030 ppm大气中的CO2)的一系列海洋酸化情景。 CO2酸化对胚胎的持续时间,卵的存活和孵化时的大小没有可检测的影响。相反,CO2酸化倾向于增加幼虫的生长速率。到定居时(孵化后11天),与对照相比,某些父母对的幼虫在酸化水中的长15%至18%,重47%至52%。来自其他父母的幼虫不受二氧化碳酸化的影响。 CO2升高和pH降低对沉降期幼虫的最大游泳速度没有影响。但是,长度和游泳速度之间存在弱的正相关关系。通常认为大尺寸对幼虫和新近定居的幼鱼有利。因此,这些结果表明,在不久的将来可能会发生的海洋酸化水平可能不会单独地显着不利于底栖产卵海洋鱼类的幼体生长和性能。

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