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受人类影响的溪流系统中的景观尺度空间种群动态

Landscape-scale spatial population dynamics in human-impacted stream systems.

作者信息

Lowe Winsor H

机构信息

Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire 03755-3577, USA.

出版信息

Environ Manage. 2002 Aug;30(2):225-33. doi: 10.1007/s00267-001-2687-y.

Abstract

The movement of individuals among populations can be critical in preventing local and landscape-scale species extinctions in systems exposed to human perturbation. Current understanding of spatial population dynamics in streams is largely limited to the reach scale and is therefore inadequate to address species response to spatially extensive perturbation. Using model simulations, I examined species response to perturbation in a drainage composed of multiple, hierarchically arranged stream-patches connected by in-stream and overland pathways of dispersal. Patch extinction probability, the proportion of initially occupied patches extinct after 25 years, was highly sensitive to the extent of species occupancy and perturbation within the drainage, longitudinal species distribution, perturbation decay rate and the covariance pattern of stochastic effects on colonization and extinction probabilities. Results of these simulations underscore the importance of identifying and preserving source populations and dispersal routes for stream species in human-impacted landscapes. They also highlight the vulnerability of headwater specialist taxa to anthropogenic perturbation, and the strong positive effect on species resilience of habitat rehabilitation when recolonization is possible. Efforts to conserve and manage stream species may be greatly improved by accounting for landscape-scale spatial population dynamics.

摘要

在受到人类干扰的系统中,个体在种群间的移动对于防止局部和景观尺度的物种灭绝可能至关重要。目前对溪流中空间种群动态的理解很大程度上局限于河段尺度,因此不足以应对物种对空间广泛干扰的响应。通过模型模拟,我研究了在一个由多个通过溪流内和陆地上的扩散路径连接的、层次排列的溪流斑块组成的流域中,物种对干扰的响应。斑块灭绝概率,即25年后最初被占据的斑块中灭绝的比例,对流域内物种占据程度和干扰程度、纵向物种分布、干扰衰减率以及定居和灭绝概率的随机效应协方差模式高度敏感。这些模拟结果强调了在受人类影响的景观中识别和保护溪流物种的源种群和扩散路线的重要性。它们还突出了源头特有分类群对人为干扰的脆弱性,以及在有可能重新定殖时栖息地恢复对物种恢复力的强烈积极影响。通过考虑景观尺度的空间种群动态,保护和管理溪流物种的努力可能会得到极大改善。

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