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首页> 外文期刊>Journal of Thermal Biology >Impacts of increased ocean temperatures on a low-latitude coral reef fish - Processes related to oxygen uptake and delivery
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Impacts of increased ocean temperatures on a low-latitude coral reef fish - Processes related to oxygen uptake and delivery

机译:增加海洋温度对低纬度珊瑚礁鱼类的影响 - 与氧气吸收和交付有关的过程

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Increasing temperatures are expected to significantly affect the physiological performance of ectotherms, particularly in tropical locations. The shape of an organism's thermal reaction norm can provide important information on its capacity to persist under climate change scenarios; however, difficulty lies in choosing a measurable trait that best depicts physiological performance. This study investigated the effects of elevated temperatures on processes related to oxygen uptake and delivery, including oxygen consumption, haematology, and tissue health for a low-latitude population of coral reef damselfish. Acanthochromis polyacanthus were collected from the Torres Strait (10 degrees 31-46'S, 142 degrees 20-35'E) and maintained at current average ocean temperatures (+0 C; seasonally cycling), + 1.5 degrees C and + 3 degrees C higher than present day temperatures for 10 months. Aerobic performance indicated a limit to metabolic function at + 3 degrees C (33 degrees C), following an increase in aerobic capacity at + 1.5 degrees C (31.5 degrees C). Neither haematological parameters nor gill morphology showed the same improvement in performance at + 1.5 degrees C. Gill histopathology provided the first indicator of a decline in organism health, which corresponded with mortality observations from previous research. Findings from this study suggest thermal specialisation in this low-latitude population as well as variation in thermal sensitivity, depending on the physiological trait.
机译:预期增加的温度会显着影响Ectotherms的生理性能,特别是在热带地区。有机体的热反应规范的形状可以提供关于其在气候变化方案下持续存在的重要信息;然而,难度在于选择最能描述生理性能的可衡量特性。本研究调查了温度对与氧气吸收和递送的过程的升高,包括氧气礁株式会鱼类低纬度群体的氧气消耗,血液学和组织健康。从托雷斯海峡(10℃31-46,20-35'e)收集丙蒽莫氏菌属,并保持在电流平均海洋温度(+0℃;季节性循环),+ 1.5℃和+ 3摄氏度高于现今的气温10个月。有氧性能表明,在+ 3℃(33摄氏度)的+ 3℃(33摄氏度)上的代谢功能的限制在+ 1.5℃(31.5℃)上增加。血液学参数和鳃形态都没有显示出在+ 1.5℃的性能方面的相同改善。鳃组织病理学提供了生物健康下降的第一个指标,其与来自以前研究的死亡率观察相对应。本研究的调查结果表明,根据生理特征,该研究表明,这种低纬度人口的热专业化以及热敏性的变化。

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