...
首页> 外文期刊>Biology >Combined Effects of Acute Temperature Change and Elevated p CO 2 on the Metabolic Rates and Hypoxia Tolerances of Clearnose Skate ( Rostaraja eglanteria ), Summer Flounder ( Paralichthys dentatus ), and Thorny Skate ( Amblyraja radiata )
【24h】

Combined Effects of Acute Temperature Change and Elevated p CO 2 on the Metabolic Rates and Hypoxia Tolerances of Clearnose Skate ( Rostaraja eglanteria ), Summer Flounder ( Paralichthys dentatus ), and Thorny Skate ( Amblyraja radiata )

机译:急性温度变化和P CO 2升高对透明冰床(罗斯塔拉省Eglanteria),夏季比目鱼(Paralichthys Dentatus)的代谢率和缺氧公差的综合作用及棘手滑冰(Amblyraja Radiata)

获取原文

摘要

Understanding how rising temperatures, ocean acidification, and hypoxia affect the performance of coastal fishes is essential to predicting species-specific responses to climate change. Although a population’s habitat influences physiological performance, little work has explicitly examined the multi-stressor responses of species from habitats differing in natural variability. Here, clearnose skate ( Rostaraja eglanteria ) and summer flounder ( Paralichthys dentatus ) from mid-Atlantic estuaries, and thorny skate ( Amblyraja radiata ) from the Gulf of Maine, were acutely exposed to current and projected temperatures (20, 24, or 28 °C; 22 or 30 °C; and 9, 13, or 15 °C, respectively) and acidification conditions (pH 7.8 or 7.4). We tested metabolic rates and hypoxia tolerance using intermittent-flow respirometry. All three species exhibited increases in standard metabolic rate under an 8 °C temperature increase (Q 10 of 1.71, 1.07, and 2.56, respectively), although this was most pronounced in the thorny skate. At the lowest test temperature and under the low pH treatment, all three species exhibited significant increases in standard metabolic rate (44–105%; p 0.05) and decreases in hypoxia tolerance (60–84% increases in critical oxygen pressure; p 0.05). This study demonstrates the interactive effects of increasing temperature and changing ocean carbonate chemistry are species-specific, the implications of which should be considered within the context of habitat.
机译:了解温度上升,海洋酸化和缺氧如何影响沿海鱼类的表现对于预测对气候变化的特异性响应至关重要。虽然人口的栖息地影响生理绩效,但很少的工作已经明确地检查了物种对自然变异性不同的栖息地的多重压力响应。这里,来自大西洋河口的芦荟冰鞋(罗斯塔拉省Eglanteria)和夏季比目鱼(Paralichthys dentatus)以及来自缅因湾的棘手的滑冰(Amblyraja radiata),急剧暴露于电流和投影温度(20,24或28° C; 22或30℃;和9,13或15℃,分别)和酸化条件(pH7.8或7.4)。我们使用间歇流动呼吸测定法测试代谢率和缺氧耐受性。所有三种物种在8°C温度升高(分别为1.71,1.07和2.56的Q 10)下表现出标准代谢率的增加,尽管在棘手的滑冰中最为明显。在最低测试温度和低pH处理下,所有三种物种都表现出标准代谢率的显着增加(44-105%; P <0.05),缺氧耐受降低(60-84%的临界氧气压力增加; P < 0.05)。本研究表明,越来越多的海洋碳酸盐化学的互动影响是特异性的,其意义应在栖息地的背景下被认为。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号