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Predicting fungal community dynamics driven by competition for space

机译:预测空间竞争驱动的真菌社区动态

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Predicting fungal community dynamics requires methods combining theory with experiments. Different elements of spatial competition influence interaction outcomes, and consequently community dynamics. Despite the literature on such elements, no theoretical study has tested the predictability of dynamics with models incorporating these elements. We aimed to develop a method for predicting dynamics, to be tested first under laboratory conditions. Six spatial competition elements were quantified for three basidiomycete species on agar. We found: constant extension; extension unaffected by other mycelia; faster replacement of younger mycelial regions; faster replacement of smaller mycelia; uniform distribution of mycelia! competitive ability across the boundary with heterospecifics; and additive effects of competition. We developed a lattice model, and found that incorporation of all experimentally quantified elements was necessary for accurate prediction of dynamics. Our study provides a methodological basis for prediction of fungal dynamics, and hence of ecosystem processes in which filamentous fungi are key players. (C) 2019 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:预测真菌群落动态需要方法将理论与实验相结合。空间竞争的不同元素影响相互作用结果,从而影响社区动态。尽管对这些要素进行了文献,但没有理论研究已经测试了与包含这些元素的模型的动态的可预测性。我们旨在开发一种用于预测动态的方法,首先在实验室条件下进行测试。对于琼脂上的三种盆霉素物种量化了六种空间竞争元素。我们发现:持续扩展;延期不受其他菌丝体的影响;更换更少的菌丝体区域;更快地更换较小的菌丝体;梅西亚的均匀分布!与异常形状的边界竞争能力;和竞争的添加效果。我们开发了一个晶格模型,并发现所有实验量化的元素都必须用于准确预测动态。我们的研究为预测​​真菌动力学提供了一种方法论基础,因此为丝状真菌是关键参与者的生态系统过程。 (c)2019年Elsevier Ltd和英国Mycological社会。版权所有。

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