Microbial growth patterns described by fractal geometry
- 1 March 1990
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 172 (3) , 1180-1185
- https://doi.org/10.1128/jb.172.3.1180-1185.1990
Abstract
Fractal geometry has made important contributions to understanding the growth of inorganic systems in such processes as aggregation, cluster formation, and dendritic growth. In biology, fractal geometry was previously applied to describe, for instance, the branching system in the lung airways and the backbone structure of proteins as well as their surface irregularity. This investigation applies the fractal concept to the growth patterns of two microbial species, Streptomyces griseus and Ashbya gossypii. It is a first example showing fractal aggregates in biological systems, with a cell as the smallest aggregating unit and the colony as an aggregate. We find that the global structure of sufficiently branched mycelia can be described by a fractal dimension, D, which increases during growth up to 1.5. D is therefore a new growth parameter. Two different box-counting methods (one applied to the whole mass of the mycelium and the other applied to the surface of the system) enable us to evaluate fractal dimensions for the aggregates in this analysis in the region of D = 1.3 to 2. Comparison of both box-counting methods shows that the mycelial structure changes during growth from a mass fractal to a surface fractal.This publication has 17 references indexed in Scilit:
- Aggregation phenomena and fractal aggregatesContemporary Physics, 1987
- Influence of culture conditions on mycelial structure and polygalacturonase synthesis of Aspergillus nigerJournal of Basic Microbiology, 1987
- Fractal Surfaces of ProteinsScience, 1985
- Applications and limitations of boundary-line fractal analysis of irregular surfaces: proteins, aggregates, and porous materialsLangmuir, 1985
- Fractal dimension of vegetation and the distribution of arthropod body lengthsNature, 1985
- Scaling Behavior and Cluster Fractal Dimension Determined by Light Scattering from Aggregating ProteinsPhysical Review Letters, 1984
- Dependence of the mycelial growth pattern on the individually regulated cell cycle inStreptomyces granaticolorJournal of Basic Microbiology, 1982
- Kinetics of vegetative growth ofThermoactinomyces vulgarisJournal of Basic Microbiology, 1978
- Mikroskopische Untersuchungen zur Wachstumskinetik vonStreptomyces hygroscopicusJournal of Basic Microbiology, 1976
- Mycelial branch patterns of Thamnidium elegansTransactions of the British Mycological Society, 1975