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探讨生态路径、生态模拟和生态空间中的多重胁迫效应:研究设计、建模技术和未来方向。

Exploring multiple stressor effects with Ecopath, Ecosim, and Ecospace: Research designs, modeling techniques, and future directions.

机构信息

Institute for Resources, Environment and Sustainability, University of British Columbia, AERL Building, 429-2202 Main Mall, Vancouver V6T 1Z4, BC, Canada.

Fisheries and Oceans Canada, Institute of Ocean Sciences, 9860 West Saanich Road, Sidney, BC V8L 5T5, Canada.

出版信息

Sci Total Environ. 2023 Apr 15;869:161719. doi: 10.1016/j.scitotenv.2023.161719. Epub 2023 Jan 21.

Abstract

Understanding the cumulative effects of multiple stressors is a research priority in environmental science. Ecological models are a key component of tackling this challenge because they can simulate interactions between the components of an ecosystem. Here, we ask, how has the popular modeling platform Ecopath with Ecosim (EwE) been used to model human impacts related to climate change, land and sea use, pollution, and invasive species? We conducted a literature review encompassing 166 studies covering stressors other than fishing mostly in aquatic ecosystems. The most modeled stressors were physical climate change (60 studies), species introductions (22), habitat loss (21), and eutrophication (20), using a range of modeling techniques. Despite this comprehensive coverage, we identified four gaps that must be filled to harness the potential of EwE for studying multiple stressor effects. First, only 12% of studies investigated three or more stressors, with most studies focusing on single stressors. Furthermore, many studies modeled only one of many pathways through which each stressor is known to affect ecosystems. Second, various methods have been applied to define environmental response functions representing the effects of single stressors on species groups. These functions can have a large effect on the simulated ecological changes, but best practices for deriving them are yet to emerge. Third, human dimensions of environmental change - except for fisheries - were rarely considered. Fourth, only 3% of studies used statistical research designs that allow attribution of simulated ecosystem changes to stressors' direct effects and interactions, such as factorial (computational) experiments. None made full use of the statistical possibilities that arise when simulations can be repeated many times with controlled changes to the inputs. We argue that all four gaps are feasibly filled by integrating ecological modeling with advances in other subfields of environmental science and in computational statistics.

摘要

理解多种压力源的累积效应是环境科学的一个研究重点。生态模型是应对这一挑战的关键组成部分,因为它们可以模拟生态系统各组成部分之间的相互作用。在这里,我们想知道,流行的建模平台 Ecopath with Ecosim(EwE)是如何用于模拟与气候变化、土地和海洋利用、污染和入侵物种相关的人类影响的?我们进行了一项文献综述,涵盖了 166 项研究,这些研究主要涉及水生生态系统中除渔业以外的压力源。最受模型化的压力源是物理气候变化(60 项研究)、物种引入(22 项)、栖息地丧失(21 项)和富营养化(20 项),使用了一系列建模技术。尽管有如此全面的覆盖范围,我们还是发现了四个必须填补的空白,以充分利用 EwE 研究多种压力源效应的潜力。首先,只有 12%的研究调查了三个或更多的压力源,大多数研究都集中在单一压力源上。此外,许多研究只模拟了每个压力源已知影响生态系统的许多途径之一。其次,已经应用了各种方法来定义环境响应函数,这些函数代表了单一压力源对物种群体的影响。这些函数对模拟的生态变化有很大的影响,但还没有出现最佳的推导方法。第三,环境变化的人类维度——除了渔业——很少被考虑。第四,只有 3%的研究使用了允许将模拟的生态系统变化归因于压力源的直接影响和相互作用的统计研究设计,例如因子(计算)实验。没有一个研究充分利用了当模拟可以多次重复并对输入进行受控更改时出现的统计可能性。我们认为,通过将生态建模与环境科学的其他子领域以及计算统计学的进展相结合,可以填补所有这四个空白。

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