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Defective skeletogenesis and oversized otoliths in fish early stages in

机译:鱼类早期骨骼的骨骼发生缺陷和超大耳石。

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摘要

Early life stages of many marine organisms are being challenged by rising seawater temperature and CO2 concentrations, but their physiological responses to these environmental changes still remain unclear. In the present study, we show that future predictions of ocean warming (+4 degrees C) and acidification (Delta pH=0.5 units) may compromise the development of early life stages of a highly commercial teleost fish, Solea senegalensis. Exposure to future conditions caused a decline in hatching success and larval survival. Growth, metabolic rates and thermal tolerance increased with temperature but decreased under acidified conditions. Hypercapnia and warming amplified the incidence of deformities by 31.5% (including severe deformities such as lordosis, scoliosis and kyphosis), while promoting the occurrence of oversized otoliths (109.3% increase). Smaller larvae with greater skeletal deformities and larger otoliths may face major ecophysiological challenges, which might potentiate substantial declines in adult fish populations, putting in jeopardy the species' fitness under a changing ocean
机译:海水温度和二氧化碳浓度的升高正挑战着许多海洋生物的早期生命阶段,但是它们对这些环境变化的生理反应仍然不清楚。在本研究中,我们表明海洋变暖(+4摄氏度)和酸化(Delta pH = 0.5单位)的未来预测可能会损害高度商业化硬骨鱼Solea senegalensis的早期生命阶段。暴露于未来条件导致孵化成功率和幼虫存活率下降。生长,代谢率和热耐受性随温度增加而在酸化条件下降低。高碳酸血症和变暖使畸形的发生率增加了31.5%(包括严重畸形,如脊柱前凸,脊柱侧弯和后凸畸形),同时促进了超长耳石的发生(增加了109.3%)。具有较大骨骼畸形和较大耳石的较小幼体可能面临主要的生态生理挑战,这可能会导致成年鱼类种群大量减少,从而在不断变化的海洋中危害该物种的适应性

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