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Issues with modelling the current and future distribution of invasive pathogens

机译:造型的当前和未来的问题入侵病原体的分布

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摘要

Correlative species distribution models can be used to produce spatially explicit estimates of environmental suitability for organisms. This process can provide meaningful information for a range of purposes (e.g. estimating a species' current or future distribution, estimating dispersal limits, predicting occupancy for conservation planning) but, like all statistical exercises, is subject to numerous assumptions and can be influenced by several sources of potential bias. 2. In this issue of Journal of Applied Ecology, we (Murray 2011) employ a correlative species distribution model for infection with the pathogen Batrachochytrium dendrobatidis (Bd), cause of amphibian chytridiomycosis, to derive useful information for the immediate management and research of this pathogen in Australia. Also in this issue, Rohr, Halstead & Raffel (2011) comment on some of the potential limitations of our approach and the value of our results in practice. 3. Synthesis and applications. Here we show that while a focus on mechanisms of dispersal and transmission among hosts, as advocated in both studies, is an important objective for modelling Bd distribution under climate change or at invasion fronts, correlative models can be of immediate value for their ability to generate a baseline hypothesis about the current potential distribution of this lethal pathogen and for efficiently identifying gaps in current knowledge. As demonstrated in our paper, this should help improve the immediate allocation of limited research and management resources for future surveillance efforts and proactive species conservation.
机译:相关的物种分布模型可以用于生产空间明确的估计环境是否适合生物。过程可以提供有意义的信息范围的目的(例如,估计一个物种的当前或未来的分布,估算扩散限制,预测入住率保护规划),但是,像所有的统计练习,大量的假设和可以受到几个来源的潜力偏见。生态,我们(2011年穆雷)采用相关为感染物种分布模型导致两栖动物壶,推导直接管理的有用信息在澳大利亚和研究的病原体。在这个问题上,罗尔,霍氏& Raffel (2011)评论的一些潜在的局限性我们的方法,我们的研究结果的价值练习。显示,同时关注机制传播和主机之间传输提倡在这两个研究,是一个重要的目标建模Bd分布气候变化或入侵方面相关模型可以直接为他们的价值生成一个基线假设的能力当前这种致命的电位分布病原体和高效识别的差距当前的知识。这应该有助于提高直接分配有限的研究和管理资源未来的监测工作和积极的物种保护。

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