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首页> 外文期刊>The Science of the Total Environment >Wet season flood magnitude drives resilience to dry season drought of a euryhaline elasmobranch in a dry-land river
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Wet season flood magnitude drives resilience to dry season drought of a euryhaline elasmobranch in a dry-land river

机译:湿季洪水幅度驱使烘干季节干旱在干陆河中的Euryhaline elasmobranch的干旱

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摘要

The increase in severity and occurrence of drought from environmental change poses a significant threat to freshwater ecosystems. However, many of the mechanisms by which periodic drought affects aquatic animals are poorly understood. Here we integrated physical, physiological, and behavioural measurements made in the field over a twelve-year period to provide a comprehensive understanding of the factors affecting the loss of body condition of fish in arid rivers, using the Critically Endangered freshwater sawfish (Pristis pristis) in the dryland Fitzroy River, Western Australia, as a model species. Sawfish lost condition throughout the long dry season in all years and had significantly poorer body condition throughout years characterized by low volumes of wet season flooding and little occurrence of overbank flooding. A mechanistic examination of factors leading to this loss of condition using measurements of body temperature, field energetics, and habitat use from telemetry techniques showed that the loss of condition throughout the season was likely due to substantial habitat compression and low productivity in drier years, while high rates of competition were more likely to drive this pattern in wetter years. This information can be used to forecast how climate change and water abstraction will affect aquatic fauna experiencing intermittent drought and can inform management decisions to help mitigate these threats.
机译:从环境变革的严重程度的增加和发生的干旱发生构成对淡水生态系统的重大威胁。然而,许多定期干旱影响水生动物的机制都很清楚。在这里,我们在十二年期间综合了在该领域的身体,生理和行为测量,以满足影响干旱河流中鱼类损失的因素的全面理解,使用危险性濒危淡水锯线(Pristis Pristis)在德国Fitzroy河,西澳大利亚州,作为模型物种。锯割在整个年内整个漫长的旱季失去了条件,遍及较差的身体状况,其特点是低湿季洪水,较少的过度洪水发生。使用遥测技术测量的机械检查导致这种情况失去这种情况,遥测技术的栖息地使用栖息地使用局面的情况表明,整个季节的病症丧失可能是由于在干燥频率的大量栖息地压缩和低生产率,而且高竞争率更有可能在潮湿的岁月中推动这种模式。该信息可用于预测气候变化和抽水如何影响水生动物的流动性流动,并可以告知管理决策,以帮助减轻这些威胁。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第1期|142234.1-142234.13|共13页
  • 作者单位

    Centre for Sustainable Aquatic Ecosystems Harry Butler Institute Murdoch University 90 South Street Murdoch Western Australia 6150 Australia Environmental and Conservation Sciences College of Science Health Engineering and Education Murdoch University 90 South Street Murdoch Western Australia 6150 Australia;

    Centre for Sustainable Aquatic Ecosystems Harry Butler Institute Murdoch University 90 South Street Murdoch Western Australia 6150 Australia;

    Centre for Sustainable Aquatic Ecosystems Harry Butler Institute Murdoch University 90 South Street Murdoch Western Australia 6150 Australia;

    Centre for Sustainable Aquatic Ecosystems Harry Butler Institute Murdoch University 90 South Street Murdoch Western Australia 6150 Australia;

    Centre for Sustainable Aquatic Ecosystems Harry Butler Institute Murdoch University 90 South Street Murdoch Western Australia 6150 Australia Environmental and Conservation Sciences College of Science Health Engineering and Education Murdoch University 90 South Street Murdoch Western Australia 6150 Australia;

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

    Metabolic rate; Temperature; Body condition; Environmental change; Kimberley; Sawfish; Pristis pristis;

    机译:代谢速率;温度;身体状况;环境变化;金伯利;锯鱼;Pristis Pristis.;

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