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From record performance to hypoxia tolerance: respiratory transition in damselfish larvae settling on a coral reef

机译:从创纪录的表现到低氧耐受性:定居在珊瑚礁上的雀鲷幼虫的呼吸过渡

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摘要

The fastest swimming fishes in relation to size are found among coral reef fish larvae on their way to settle on reefs. By testing two damselfishes, Chromis atripectoralis and Pomacentrus amboinensis, we show that the high swimming speeds of the pre-settlement larvae are accompanied by the highest rates of oxygen uptake ever recorded in ectothermic vertebrates. As expected, these high rates of oxygen uptake occur at the cost of poor hypoxia tolerance. However, hypoxia tolerance is needed when coral reef fishes seek nocturnal shelter from predators within coral colonies, which can become severely hypoxic microhabitats at night. When the larvae settle on the reef, we found that they go through a striking respiratory transformation, i.e. the capacity for rapid oxygen uptake falls, while the ability for high-affinity oxygen uptake at low oxygen levels is increased. This transition to hypoxia tolerance is needed when they settle on the reef; this was strengthened by our finding that small resident larvae of Acanthochromis polyacanthus, a damselfish lacking a planktonic larval stage, do not display such a transition, being well adapted to hypoxia and showing relatively low maximum rates of oxygen uptake that change little with age.
机译:在珊瑚礁鱼幼虫定居于礁石的过程中,发现了相对于大小而言最快的游泳鱼。通过测试两种雀鲷,Chromis atripectoralis和Pomacentrus amboinensis,我们表明,沉降前幼虫的高游泳速度伴随着在吸热脊椎动物中有最高的吸氧率。如所预期的,这些高的氧气吸收率是以不良的低氧耐受性为代价的。但是,当珊瑚礁鱼类在珊瑚群内寻求掠食者的夜间庇护时,就需要低氧耐受性,夜间它们可能会变成严重缺氧的微生境。当幼虫定居在珊瑚礁上时,我们发现它们经历了惊人的呼吸转换,即快速吸氧的能力下降,而在低氧水平下高亲和力吸氧的能力增加了。当他们定居在珊瑚礁上时,需要向低氧耐受性过渡。我们的发现进一步增强了这一点,即缺乏浮游性幼体阶段的雀鲷的小食虫棘尾small幼虫没有显示出这种转变,它很好地适应了低氧,并且显示出相对较低的最大摄氧率,且随年龄的增长而变化不大。

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