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Functional responses of North Atlantic fish eggs to increasing temperature

机译:北大西洋鱼卵对温度升高的功能反应

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摘要

Temperature increase associated with global climate change can be expected to directly influence the spawning success of fish species, with implications for abundance and distribution. We conducted a meta-analysis to investigate and compare responses of development time, cumulative degree-days and survival of fish eggs from 32 populations of 17 species in the North Atlantic to different temperatures in order to determine potential consequences of global warming for these species. The response of development time exhibited a similar decreasing trend with respect to temperature across species. The similar slopes of regression lines relating lntransformed development time and temperature indicate similar sensitivity to temperature changes. Across-species differences were mainly driven by intercept values, indicating up to 8-fold differences in development time at given temperature. There was an overall decrease, across species, in an index of thermal requirement (cumulative degree-days) for egg development with increasing temperature. Within an empirically derived optimal thermal range for egg survival, the thermal requirement was more variable in species adapted to cold waters compared to species adapted to warmer waters. Moreover, the sensitivity of survival of eggs from different species to increases in temperature differed, reflecting a pattern of sensitivity along a stenotherm-eurytherm gradient of vulnerability to temperature among species. The results quantify physiological effects of temperature on the eggs, and we propose that such effects are major factors leading to a close correspondence between the physiological optimal temperature for survival and observed temperature at spawning sites. Temperature during egg development appears to be a key evolutionary force affecting spawning time and location.
机译:预计与全球气候变化有关的温度升高将直接影响鱼类的产卵成功,并影响其数量和分布。我们进行了荟萃分析,以调查和比较北大西洋17个物种的32个种群的鱼卵在不同温度下的发育时间,累积度数-天数和存活率,以确定这些物种全球变暖的潜在后果。发育时间的响应相对于整个物种的温度表现出相似的下降趋势。与未转化的显影时间和温度有关的回归线的相似斜率表明对温度变化的敏感性相似。跨物种差异主要由截距值驱动,表明在给定温度下发育时间的差异高达8倍。在整个物种中,随着温度的升高,鸡蛋发育所需的热量需求指数(累计度数天数)总体下降。在根据经验得出的蛋生存最佳温度范围内,与适应较暖水域的物种相比,适应冷水物种的热需求变化更大。此外,不同物种的卵对温度升高的存活敏感性也不同,这反映出沿着物种之间温度易受伤害的温度-温度曲线的敏感性模式。结果量化了温度对卵的生理影响,我们认为,这种影响是导致生存的生理最佳温度与产卵部位观察到的温度密切相关的主要因素。卵发育期间的温度似乎是影响产卵时间和产卵位置的关键进化力。

著录项

  • 来源
    《Marine ecology progress series》 |2016年第18期|151-165|共15页
  • 作者单位

    Tech Univ Denmark, Natl Inst Aquat Resources, DTU Aqua, Ctr Macroecol Evolut & Climate, Kavalergarden 6, DK-2920 Charlottenlund, Denmark;

    Tech Univ Denmark, Natl Inst Aquat Resources, DTU Aqua, Ctr Ocean Life, Kavalergarden 6, DK-2920 Charlottenlund, Denmark;

    Tech Univ Denmark, Natl Inst Aquat Resources, DTU Aqua, Ctr Macroecol Evolut & Climate, Kavalergarden 6, DK-2920 Charlottenlund, Denmark|Tech Univ Denmark, Natl Inst Aquat Resources, DTU Aqua, Ctr Ocean Life, Kavalergarden 6, DK-2920 Charlottenlund, Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Degree-days; Development time; Fish eggs; Global warming; North Atlantic; Survival; Temperature effects;

    机译:度日;发育时间;鱼卵;全球变暖;北大西洋;生存;温度效应;

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