...
首页> 外文期刊>Progress in Oceanography >The Antarctic fish Harpagifer antarcticus under current temperatures and salinities and future scenarios of climate change
【24h】

The Antarctic fish Harpagifer antarcticus under current temperatures and salinities and future scenarios of climate change

机译:当前温度和盐度下的南极鱼木枪南极洲和气候变化的未来情景

获取原文
获取原文并翻译 | 示例
           

摘要

Antarctic coasts are highly vulnerable environments where temperature have remained very constant along millions of years. These unique environmental conditions have generated a large number of stenoic species that could be highly sensitive to future scenarios of climate change. We investigated the separate and interactive effects of increasing seawater temperature and decreasing salinity on the physiological performance of the notothenioid fish, Harpagifer antarcticus. Adult individuals were exposed to an orthogonal combination of five temperatures (2, 5, 8, 11, 14 degrees C) and three salinities (23, 28, 33 psu) for a 10-day period. A drastic increment in mortality was observed with seawater warming; the pattern in response to lower salinity was less clear. No fish died at the two lowest temperatures (2 and 5 degrees C); however, mortality increased significantly at the two highest temperatures across the salinity treatments (33.3% at 11 degrees C; 93.3% at 14 degrees C). No data were obtained at 14 degrees C that could be included in the physiological analyses. Ingestion and absorption rates were significantly affected by temperature and salinity, but not by the interaction of the two. Finally, we observed a negative effect of temperature but not of salinity or the interaction of both on the scope for growth of H. antarcticus. These results suggest that this species could cope with a moderate temperature increase (5 degrees C) in the Antarctic. However, the higher metabolic rates observed at 8 and 11 degrees C are associated with conditions beyond the natural thermal window of this species, representing a disadvantage in the face of climate change. Therefore, and even in the hypothetical case that H. antarcticus were able to disperse to sub-Antarctic areas such as the Magellan Region, current and projected scenarios of seawater temperatures might be unsuitable for the development of effective populations of this species. The results confirm the stenothermal nature of H. antarcticus, considering its high vulnerability to environmental changes and its limited ability to cope with the more severe global warming models projected for the Antarctic and Magellan regions for the end of the century (mainly temperature).
机译:南极海岸是高度脆弱的环境,温度沿着数百万年的时间仍然非常不变。这些独特的环境条件产生了大量的石峰物种,对气候变化的未来情景非常敏感。我们调查了海水温度和盐度下降的单独和互动影响,对Nothothiaid鱼类的生理性能降低,Harpagifer Antarcticus。将成年人暴露于五个温度(2,5,8,11,14℃)和三个盐度(23,28,33psu)的正交组合。海水变暖观察到死亡率激烈增量;响应较低盐度的图案不太清楚。没有鱼在两个最低温度(2和5℃)上死亡;然而,在盐度处理过的两个最高温度下,死亡率显着增加(11摄氏度为33.3%;在14℃下为93.3%)。在14摄氏度下没有获得数据,其可以包含在生理分析中。摄入和吸收率受到温度和盐度的显着影响,但不是两者的相互作用。最后,我们观察到温度的负面影响,但不具有盐度的影响或对南切生的生长的范围的相互作用。这些结果表明,该物种可以应对南极中的温度升高(5摄氏度)。然而,在8和11摄氏度下观察到的较高代谢率与该物种的天然热窗口之外的条件相关,这是面对气候变化面的缺点。因此,即使在假设案例中,即南切性能够分散到雄性区域,如麦哲伦地区,海水温度的当前和预计场景可能不适合发展本物种有效群体。结果证实了H. Antarcticus的稳定性本质,考虑到其对环境变化的高脆弱性及其在本世纪末为南极和麦哲伦地区预测的更严重的全球变暖模型(主要是温度)。

著录项

  • 来源
    《Progress in Oceanography》 |2019年第mayajuna期|37-43|共7页
  • 作者单位

    Univ Austral Chile Inst Ciencias Marinas & Limnol Valdivia Chile|Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile;

    Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile|Univ Austral Chile Inst Acuicultura Puerto Montt Chile;

    Univ Austral Chile Inst Ciencias Marinas & Limnol Valdivia Chile|Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile;

    Univ Austral Chile Inst Ciencias Marinas & Limnol Valdivia Chile|Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile;

    Univ Austral Chile Inst Ciencias Marinas & Limnol Valdivia Chile|Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile;

    Univ Austral Chile Inst Ciencias Marinas & Limnol Valdivia Chile|Univ Austral Chile Ctr Fondap Invest Altas Latitudes Fondap IDEAL Valdivia Chile;

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

    Warming; Salinity decrease; Harpagifer; Physiology; Antarctic; Magellan Region; Climate change;

    机译:变暖;盐度下降;木制;生理学;南极;麦哲伦地区;气候变化;

相似文献

  • 外文文献
  • 中文文献
  • 专利
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