首页> 外文期刊>Environmental Management >Predicting Fish Growth Potential and Identifying Water Quality Constraints: A Spatially-Explicit Bioenergetics Approach
【24h】

Predicting Fish Growth Potential and Identifying Water Quality Constraints: A Spatially-Explicit Bioenergetics Approach

机译:预测鱼的生长潜力并确定水质限制:一种空间显式的生物能学方法

获取原文
获取原文并翻译 | 示例
           

摘要

Anthropogenic impairment of water bodies represents a global environmental concern, yet few attempts have successfully linked fish performance to thermal habitat suitability and fewer have distinguished co-varying water quality constraints. We interfaced fish bioenergetics, field measurements, and Thermal Remote Imaging to generate a spatially-explicit, high-resolution surface of fish growth potential, and next employed a structured hypothesis to detect relationships among measures of fish performance and co-varying water quality constraints. Our thermal surface of fish performance captured the amount and spatial-temporal arrangement of thermally-suitable habitat for three focal species in an extremely heterogeneous reservoir, but interpretation of this pattern was initially confounded by seasonal covariation of water residence time and water quality. Subsequent path analysis revealed that in terms of seasonal patterns in growth potential, catfish and walleye responded to temperature, positively and negatively, respectively; crappie and walleye responded to eutrophy (negatively). At the high eutrophy levels observed in this system, some desired fishes appear to suffer from excessive cultural eutrophication within the context of elevated temperatures whereas others appear to be largely unaffected or even enhanced. Our overall findings do not lead to the conclusion that this system is degraded by pollution; however, they do highlight the need to use a sensitive focal species in the process of determining allowable nutrient loading and as integrators of habitat suitability across multiple spatial and temporal scales. We provide an integrated approach useful for quantifying fish growth potential and identifying water quality constraints on fish performance at spatial scales appropriate for whole-system management.
机译:水体的人为损害代表了全球对环境的关注,然而,很少有尝试将鱼的表现与热生境的适应性成功地联系在一起,并且很少有人注意到水质随条件变化的限制。我们将鱼类生物能学,野外测量和热遥感成像相结合,以生成空间显着的高分辨率鱼类生长潜力表面,然后采用结构化假设来检测鱼类性能与水质约束条件随变的关系。我们鱼类的热表面表现记录了一个极其不均一的水库中三个焦点物种的热适宜生境的数量和时空排列,但是这种模式的解释最初是由于水停留时间和水质的季节性协变量而引起的。随后的路径分析表明,就生长潜力的季节性模式而言,cat鱼和角膜白斑对温度的响应分别为正和负。皱app和角膜白斑对富营养症有反应(阴性)。在该系统中观察到的富营养水平很高的情况下,某些所需的鱼类似乎在温度升高的情况下遭受了过度的富营养化,而另一些则似乎没有受到很大的影响,甚至没有受到增强。我们的总体发现并不能得出这样的结论,即该系统已因污染而退化。但是,它们的确强调了在确定允许的养分含量过程中,以及在多个时空尺度上作为栖息地适宜性的整合者时,必须使用敏感的焦点种类的必要性。我们提供了一种综合方法,可用于量化鱼类的生长潜力,并在适合整个系统管理的空间尺度上确定鱼类性能的水质限制。

著录项

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