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Integrating theory into disturbance interaction experiments to better inform ecosystem management

机译:将理论整合到干扰相互作用实验中,以更好地指导生态系统管理

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Managing multiple, interacting disturbances is a key challenge to biodiversity conservation, and one that will only increase as global change drivers continue to alter disturbance regimes. Theoretical studies have highlighted the importance of a mechanistic understanding of stressor interactions for improving the prediction and management of interactive effects. However, many conservation studies are not designed or interpreted in the context of theory and instead focus on case-specific management questions. This is a problem as it means that few studies test the relationships highlighted in theoretical models as being important for ecological management. We explore the extent of this problem among studies of interacting disturbances by reviewing recent experimental studies of the interaction between fire and grazing in terrestrial ecosystems. Interactions between fire and grazing can occur via a number of pathways; one disturbance can modify the other's likelihood, intensity or spatial distribution, or one disturbance can alter the other's impacts on individual organisms. The strength of such interactions will vary depending on disturbance attributes (e.g. size or intensity), and this variation is likely to be nonlinear. We show that few experiments testing fire-grazing interactions are able to identify the mechanistic pathway driving an observed interaction, and most are unable to detect nonlinear effects. We demonstrate how these limitations compromise the ability of experimental studies to effectively inform ecological management. We propose a series of adjustments to the design of disturbance interaction experiments that would enable tests of key theoretical pathways and provide the deeper ecological understanding necessary for effective management. Such considerations are relevant to studies of a broad range of ecological interactions and are critical to informing the management of disturbance regimes in the context of accelerating global change.
机译:管理多种相互作用的干扰是生物多样性保护的一项关键挑战,而且随着全球变化驱动因素继续改变干扰机制,这一挑战只会增加。理论研究强调了对应激源相互作用的机械理解对于改善相互作用的预测和管理的重要性。但是,许多保护研究不是在理论的背景下设计或解释的,而是侧重于针对具体案例的管理问题。这是一个问题,因为这意味着很少有研究测试理论模型中强调的对生态管理很重要的关系。我们通过回顾陆地生态系统中火灾与放牧之间相互作用的最新实验研究,来探讨相互作用干扰研究之间的问题程度。火和放牧之间的相互作用可通过多种途径发生。一种干扰可以改变另一种的可能性,强度或空间分布,或者一种干扰可以改变另一种对单个生物的影响。这种相互作用的强度将根据干扰属性(例如大小或强度)而变化,并且这种变化很可能是非线性的。我们表明,很少有实验测试放牧交互作用,能够确定驱动观察到的交互作用的机械路径,而大多数实验都无法检测非线性影响。我们证明了这些局限性如何损害了实验研究有效指导生态管理的能力。我们建议对干扰相互作用实验的设计进行一系列调整,以便对关键的理论路径进行测试,并为有效管理提供更深入的生态理解。这些考虑因素与广泛的生态相互作用的研究有关,对于在加速全球变化的背景下为干扰制度的管理提供信息至关重要。

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