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首页> 外文期刊>Fisheries Science >Fish body condition and recruitment success reflect antecedent flows in an Australian dryland river
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Fish body condition and recruitment success reflect antecedent flows in an Australian dryland river

机译:鱼体状况和捕捞成功反映了澳大利亚旱地河流的前期流量

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摘要

In fluctuating aquatic environments such as intermittent streams, fish condition is often highly variable due to the associated fluctuating levels of food resources. Having the physiological capacity to both metabolise and catabolise lipids, fish can survive through droughts and rapidly gain condition during flows and floods. Dryland rivers continuously cycle through periods of boom and bust due to their intermittent patterns of rainfall and flow. To help gain an understanding of how fish respond physiologically to varying antecedent flow conditions, we examined body condition measured by percent tissue water content of two generalist fish species in an Australian dryland river. We predicted that fish would be in better condition following recent flows and poorer condition when there had been no recent flows. Our expectations were met for both species with low water tissue content after high flows and high tissue water content after significant drying. It was also found that strong juvenile recruitment was also evident when body condition was high, indicating that when there are food resource spikes driven by flow pulses fish can utilise resources both to produce offspring and to store as lipid for future survival.
机译:在波动的水生环境中,例如断断续续的溪流,由于相关的粮食资源波动水平,鱼类状况往往高度可变。鱼类具有代谢脂质和分解代谢脂质的生理能力,可以在干旱中生存,并在洪水和洪水期间迅速恢复健康。干旱地区的河流由于降雨和流量的间歇性模式而持续在繁荣和萧条时期循环。为了帮助您了解鱼类对生理条件变化的生理反应,我们研究了一种身体状况,该状况是通过在澳大利亚旱地河流中两种鱼类的组织水分含量百分比来衡量的。我们预测,随着最近的流动,鱼类将处于更好的状况,而当没有最近的流动时,鱼类将处于较差的状况。高流量后低组织水含量和显着干燥后高组织水含量的两个物种都达到了我们的期望。还发现,在身体状况高的时候,也有很强的少年募集活动,这表明当水流脉冲驱动食物资源激增时,鱼类既可以利用资源生产后代,又可以作为脂质储存以供将来生存。

著录项

  • 来源
    《Fisheries Science》 |2012年第4期|p.841-847|共7页
  • 作者单位

    eWater Cooperative Research Centre and Australian Rivers Institute, Griffith University, Nathan, QLD, 4111, Australia;

    eWater Cooperative Research Centre and Queensland Department of Environment and Resource Management, Dutton Park, QLD, 4102, Australia;

    eWater Cooperative Research Centre and Queensland Department of Environment and Resource Management, Dutton Park, QLD, 4102, Australia;

    eWater Cooperative Research Centre and Queensland Department of Environment and Resource Management, Dutton Park, QLD, 4102, Australia;

    eWater Cooperative Research Centre and Australian Rivers Institute, Griffith University, Nathan, QLD, 4111, Australia;

    Environmental Futures Centre, Griffith University, Nathan, QLD, 4111, Australia;

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

    Fish condition; Antecedent hydrology; Flow variability; Recruitment;

    机译:鱼类状况;前期水文;流量变化;招聘;

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