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Elevated CO2 affects embryonic development and larval phototaxis in a temperate marine fish

机译:二氧化碳浓度升高会影响温带海鱼的胚胎发育和幼虫趋光性

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摘要

As an effect of anthropogenic CO2 emissions, the chemistry of the world's oceans is changing. Understanding how this will affect marine organisms and ecosystems are critical in predicting the impacts of this ongoing ocean acidification. Work on coral reef fishes has revealed dramatic effects of elevated oceanic CO2 on sensory responses and behavior. Such effects may be widespread but have almost exclusively been tested on tropical reef fishes. Here we test the effects elevated CO2 has on the reproduction and early life history stages of a temperate coastal goby with paternal care by allowing goby pairs to reproduce naturally in an aquarium with either elevated (ca 1400 μatm) CO2 or control seawater (ca 370 μatm CO2). Elevated CO2 did not affect the occurrence of spawning nor clutch size, but increased embryonic abnormalities and egg loss. Moreover, we found that elevated CO2 significantly affected the phototactic response of newly hatched larvae. Phototaxis is a vision-related fundamental behavior of many marine fishes, but has never before been tested in the context of ocean acidification. Our findings suggest that ocean acidification affects embryonic development and sensory responses in temperate fishes, with potentially important implications for fish recruitment.
机译:由于人为二氧化碳排放的影响,世界海洋的化学物质正在发生变化。理解这将如何影响海洋生物和生态系统对于预测这种持续的海洋酸化的影响至关重要。珊瑚礁鱼类研究表明,海洋二氧化碳浓度升高对感觉反应和行为产生了巨大影响。这种影响可能很普遍,但几乎只在热带珊瑚鱼上进行了测试。在这里,我们通过让虾虎鱼对在高二氧化碳(ca 1400μatm)或控制海水(ca 370μatm)的水族箱中自然繁殖,来测试二氧化碳升高对温带沿海虾虎的繁殖和早期生活史阶段的影响。二氧化碳)。较高的二氧化碳含量不会影响产卵的发生和离合器的大小,但会增加胚胎异常和卵的损失。此外,我们发现升高的CO2会显着影响新孵化的幼虫的光战术反应。趋光性是许多海洋鱼类与视觉有关的基本行为,但从未在海洋酸化的环境中进行过测试。我们的发现表明,海洋酸化会影响温带鱼类的胚胎发育和感觉反应,对鱼类的募集具有潜在的重要意义。

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