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Fire management for biodiversity conservation: Key research questions and our capacity to answer them

机译:用于生物多样性保护的消防管理:关键研究问题以及我们回答这些问题的能力

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Knowing how species respond to fire regimes is essential for ecologically sustainable management. This axiom raises two important questions: (1) what knowledge is the most important to develop and (2) to what extent can current research methods deliver that knowledge? We identify three areas of required knowledge: (i) a mechanistic understanding of species' responses to fire regimes; (ii) knowledge of how the spatial and temporal arrangement of fires influences the biota; and (iii) an understanding of interactions of fire regimes with other processes. We review the capacity of empirical research to address these knowledge gaps, and reveal many limitations. Manipulative experiments are limited by the number and scope of treatments that can be applied, natural experiments are limited by treatment availability and confounding factors, and longitudinal studies are difficult to maintain, particularly due to unplanned disturbance events. Simulation modelling is limited by the quality of the underlying empirical data and by uncertainty in how well model structure represents reality. Due to the constraints on large-scale, long-term research, the potential for management experiments to inform adaptive management is limited. Rather than simply recommending adaptive management, we define a research agenda to maximise the rate of learning in this difficult field. This includes measuring responses at a species level, building capacity to implement natural experiments, undertaking simulation modelling, and judicious application of experimental approaches. Developing ecologically sustainable fire management practices will require sustained research effort and a sophisticated research agenda based on carefully targeting appropriate methods to address critical management questions.
机译:了解物种如何响应火势对于生态可持续管理至关重要。这个公理提出了两个重要的问题:(1)最重要的知识是发展起来的;(2)当前的研究方法可以在多大程度上提供知识?我们确定了所需知识的三个领域:(i)对物种对火势响应的机械理解; (ii)了解火灾的时空分布如何影响生物群; (iii)了解火灾状况与其他过程之间的相互作用。我们回顾了实证研究解决这些知识差距的能力,并揭示了许多局限性。操纵性实验受到可应用治疗的数量和范围的限制,自然实验受到治疗可用性和混杂因素的限制,并且纵向研究难以维持,尤其是由于计划外的干扰事件。仿真建模受到基础经验数据的质量以及模型结构表示现实情况的不确定性的限制。由于大规模,长期研究的局限性,管理实验为适应性管理提供信息的潜力有限。我们定义简单的研究议程,而不是简单地建议自适应管理,以最大程度地提高这一困难领域的学习速度。这包括在物种水平上测量响应,建设实施自然实验的能力,进行模拟建模以及明智地采用实验方法。发展生态上可持续的消防管理实践将需要持续的研究工作和基于认真针对适当方法来解决关键管理问题的复杂研究议程。

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