Growth and function of fungal mycelia in heterogeneous environments

被引:0
|
作者
Graeme P. Boswell
Helen Jacobs
Fordyce A. Davidson
Geoffrey M. Gadd
Karl Ritz
机构
[1] University of Dundee,Department of Mathematics
[2] University of Dundee,Division of Environmental and Applied Biology, Biological Sciences Institute, School of Life Sciences
[3] Scottish Crop Research Institute,Soil
[4] Cranfield University,Plant Dynamics Group
来源
Bulletin of Mathematical Biology | 2003年 / 65卷
关键词
Fungal Growth; Mineral Salt Medium; Bromocresol Purple; External Substrate; Central Droplet;
D O I
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中图分类号
学科分类号
摘要
As decomposer organisms, pathogens, plant symbionts and nutrient cyclers, fungi are of fundamental importance in the terrestrial environment. Moreover, in addition to their well-known applications in industry, many species also have great potential in environmental biotechnology. The study of this important class of organisms is difficult through experimental means alone due to the heterogeneity of their natural growth habitat and the microscopic scale of growth. In this work we present a mathematical model for colony expansion that is derived through consideration of the growth characteristics on the microscale. The model equations are of mixed hyperbolic-parabolic type and are treated with a numerical scheme that preserves positivity and conserves mass. The numerical solutions are compared against experimental results in a variety of environments. Thus the effect of different translocation mechanisms on fungal growth and function are identified. The derivation and analysis of an approximation to the full model yields further results concerning basic properties of mycelial growth. Finally, the acidification of the growth habitat is considered and the model thus provides important predictions on the functional consequences of the redistribution of internally-located material.
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页码:447 / 477
页数:30
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