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棕鳟的最佳水流:生境-猎物最优化。

Optimal flow for brown trout: Habitat - prey optimization.

机构信息

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Milano, Italy.

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Milano, Italy.

出版信息

Sci Total Environ. 2016 Oct 1;566-567:1568-1578. doi: 10.1016/j.scitotenv.2016.06.047. Epub 2016 Jun 16.

DOI:10.1016/j.scitotenv.2016.06.047
PMID:27320735
Abstract

The correct definition of ecosystem needs is essential in order to guide policy and management strategies to optimize the increasing use of freshwater by human activities. Commonly, the assessment of the optimal or minimum flow rates needed to preserve ecosystem functionality has been done by habitat-based models that define a relationship between in-stream flow and habitat availability for various species of fish. We propose a new approach for the identification of optimal flows using the limiting factor approach and the evaluation of basic ecological relationships, considering the appropriate spatial scale for different organisms. We developed density-environment relationships for three different life stages of brown trout that show the limiting effects of hydromorphological variables at habitat scale. In our analyses, we found that the factors limiting the densities of trout were water velocity, substrate characteristics and refugia availability. For all the life stages, the selected models considered simultaneously two variables and implied that higher velocities provided a less suitable habitat, regardless of other physical characteristics and with different patterns. We used these relationships within habitat based models in order to select a range of flows that preserve most of the physical habitat for all the life stages. We also estimated the effect of varying discharge flows on macroinvertebrate biomass and used the obtained results to identify an optimal flow maximizing habitat and prey availability.

摘要

为了指导政策和管理策略,以优化人类活动对淡水的日益增加的利用,正确定义生态系统需求至关重要。通常,通过基于栖息地的模型来评估保护生态系统功能所需的最佳或最小流量,这些模型定义了河流流量与各种鱼类栖息地之间的关系。我们提出了一种新的方法,即使用限制因素方法和评估基本生态关系来确定最佳流量,同时考虑到不同生物体的适当空间尺度。我们为三种不同生活阶段的褐鳟鱼制定了密度-环境关系,这些关系显示了水力学变量在栖息地尺度上的限制作用。在我们的分析中,我们发现限制鳟鱼密度的因素是水速、底质特征和避难所的可用性。对于所有的生活阶段,所选模型同时考虑了两个变量,并表明较高的流速提供了一个不太适宜的栖息地,而不管其他物理特征如何,而且具有不同的模式。我们在基于栖息地的模型中使用这些关系,以选择一系列能够为所有生活阶段保留大部分物理栖息地的水流。我们还估计了不同流量排放对大型无脊椎动物生物量的影响,并利用所得结果确定了一个最佳流量,以最大限度地提高栖息地和猎物的可用性。

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