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首页> 外文期刊>Marine biology >Predicted Impact Of Ocean Acidification On A Marine Invertebrate: Elevated Co_2 Alters Response To Thermal Stress In Sea Urchin Larvae
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Predicted Impact Of Ocean Acidification On A Marine Invertebrate: Elevated Co_2 Alters Response To Thermal Stress In Sea Urchin Larvae

机译:海洋酸化对海洋无脊椎动物的预测影响:升高的Co_2改变了海胆幼虫对热应力的响应

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Ocean acidification (OA) and the biological consequences of altered seawater chemistry have emerged as a significant environmental threat to healthy marine ecosystems. Because a more acidic ocean interferes with fixation of calcium carbonate to form shells or calcified skeletons, future ocean chemistry may significantly alter the physiology of calcifying marine organisms. These alterations may manifest themselves directly in the calcification process, or have synergistic effects with other environmental factors such as elevated temperatures. New tools permit us to explore subtle changes in gene expression patterns in response to environmental conditions. We raised sea urchins (Strongylocentrotus franciscanus) under conditions simulating future atmospheric CO_2 levels of 540 and 970 ppm. When larvae raised under elevated CO_2 conditions were subjected to 1-h acute temperature stress, their ability to mount a physiological response (as measured by expression of the molecular chaperone hsp70) was reduced relative to those raised under ambient CO_2 conditions. These results represent the first use of gene expression assays to study the effects of OA on sea urchin development. They highlight the importance of looking at multiple environmental factors simultaneously as this approach may reveal previously unsuspected biological impacts of atmospheric changes.
机译:海洋酸化(OA)和海水化学变化的生物学后果已经成为对健康海洋生态系统的重大环境威胁。由于酸性较强的海洋会干扰碳酸钙的固定,从而形成贝壳或钙化的骨骼,因此未来的海洋化学可能会显着改变钙化海洋生物的生理。这些变化可能直接在钙化过程中表现出来,或与其他环境因素(例如高温)产生协同效应。新工具使我们能够探索环境条件下基因表达模式的细微变化。我们在模拟未来大气CO_2浓度为540和970 ppm的条件下饲养了海胆(Strongylocentrotus franciscanus)。当在升高的CO_2条件下饲养的幼虫受到1-h急性温度胁迫时,它们相对于在环境CO_2条件下饲养的幼虫的生理反应能力(通过分子伴侣hsp70的表达测量)降低。这些结果代表了基因表达测定法首次用于研究OA对海胆发育的影响。他们强调了同时考虑多种环境因素的重要性,因为这种方法可能揭示出大气变化以前未曾预料到的生物影响。

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