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Metabolic responses to high pCO2 conditions at a CO2 vent site in juveniles of a marine isopod species assemblage

机译:在海洋等足动物物种集合中CO2排放位点对高pCO2条件的代谢反应

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摘要

We are starting to understand the relationship between metabolic rate responses and species’ ability to respond to exposure to high pCO2. However, most of our knowledge has come from investigations of single species. The examination of metabolic responses of closely related species with differing distributions around natural elevated CO2 areas may be useful to inform our understanding of their adaptive significance. Furthermore, little is known about the physiological responses of marine invertebrate juveniles to high pCO2, despite the fact they are known to be sensitive to other stressors, often acting as bottlenecks for future species success. We conducted an in situ transplant experiment using juveniles of isopods found living inside and around a high pCO2 vent (Ischia, Italy): the CO2 ‘tolerant’ Dynamene bifida and ‘sensitive’ Cymodoce truncata and Dynamene torelliae. This allowed us to test for any generality of the hypothesis that pCO2 sensitive marine invertebrates may be those that experience trade-offs between energy metabolism and cellular homoeostasis under high pCO2 conditions. Both sensitive species were able to maintain their energy metabolism under high pCO2 conditions, but in C. truncata this may occur at the expense of [carbonic anhydrase], confirming our hypothesis. By comparison, the tolerant D. bifida appeared metabolically well adapted to high pCO2, being able to upregulate ATP production without recourse to anaerobiosis. These isopods are important keystone species; however, given they differ in their metabolic responses to future pCO2, shifts in the structure of the marine ecosystems they inhabit may be expected under future ocean acidification conditions.Electronic supplementary materialThe online version of this article (doi:10.1007/s00227-016-2984-x) contains supplementary material, which is available to authorized users.
机译:我们开始了解代谢率反应与物种对暴露于高pCO2的反应能力之间的关系。但是,我们的大部分知识都来自对单个物种的调查。检查自然升高的CO2区域周围分布不同的密切相关物种的代谢反应可能有助于我们了解其适应性意义。此外,对海洋无脊椎动物幼体对高pCO2的生理反应知之甚少,尽管事实是已知它们对其他胁迫因素敏感,常常成为未来物种成功的瓶颈。我们使用发现在高pCO2排放口内和周围的异足类鱼的幼体进行了原位移植实验(意大利伊斯基亚):耐CO2的Dynamene bifida和“敏感的” Cymodoce truncata和Dynamene torelliae。这使我们能够检验以下假设的任何一般性:pCO2敏感的海洋无脊椎动物可能是在高pCO2条件下能量代谢与细胞同质化之间权衡取舍的假说。两种敏感物种都能够在高pCO2条件下维持其能量代谢,但是在C. truncata中,这可能会以[碳酸酐酶]为代价发生,这证实了我们的假设。相比之下,耐受的双歧杆菌在代谢上似乎很好地适应了高pCO2,能够在不依赖厌氧菌的情况下上调ATP的产生。这些等足动物是重要的关键物种。但是,由于它们对未来pCO2的代谢反应不同,因此在未来的海洋酸化条件下,他们所居住的海洋生态系统的结构可能会发生变化。电子补充材料本文的在线版本(doi:10.1007 / s00227-016-2984) -x)包含补充材料,授权用户可以使用。

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