Branching networks are ubiquitous in nature and their growth often responds to environmental cues dynamically. Using the antibiotic-producing soil bacterium Streptomyces as a model we have developed a flexible mathematical model platform for the study of branched biological networks. Streptomyces form large aggregates in liquid culture that can impair industrial antibiotic fermentations. Understanding the features of these could aid improvement of such processes. The model requires relatively few experimental values for parameterisation, yet delivers realistic simulations of Streptomyces pellet and is able to predict features, such as the density of hyphae, the number of growing tips and the location of antibiotic production within a pellet...
Growth of Streptomyces tendae was investigated in submerged culture. Images of several mycelia were ...
Streptomyces species are often referred to as “antibiotic factories” due to their ability to produce...
International audienceFilamentous fungi can regulate their growth mechanisms to adapt to the environ...
Branching networks are ubiquitous in nature and their growth often responds to environmental cues dy...
<div><p>Branching networks are ubiquitous in nature and their growth often responds to environmental...
Successful application of a computational model for rational design of industrial Streptomyces explo...
Streptomyces are multicellular bacteria that grow as branched filaments and are best known for pro...
A mathematical model for apical growth, septation, and branching of mycelial microorganisms is prese...
Streptomycetes are Gram-positive multicellular soil-dwelling bacteria which are commercially used as...
Soil grains harbor an astonishing diversity of Streptomyces strains producing diverse secondary meta...
A highly branched hyphal morphology was observed in early stage (high nutrient availability) batch l...
We are interested the soil dwelling bacteria Streptomyces coelicolor because its cells grow end to e...
The filamentous bacteria Streptomyces are widespread inhabitants of terrestrial soils. Streptomycete...
Filamentous fungi are ubiquitous in nature and have high societal significance, being both major (fo...
Abstract—Filamentous fungi grow efficient nutrient transportation networks which are highly resilien...
Growth of Streptomyces tendae was investigated in submerged culture. Images of several mycelia were ...
Streptomyces species are often referred to as “antibiotic factories” due to their ability to produce...
International audienceFilamentous fungi can regulate their growth mechanisms to adapt to the environ...
Branching networks are ubiquitous in nature and their growth often responds to environmental cues dy...
<div><p>Branching networks are ubiquitous in nature and their growth often responds to environmental...
Successful application of a computational model for rational design of industrial Streptomyces explo...
Streptomyces are multicellular bacteria that grow as branched filaments and are best known for pro...
A mathematical model for apical growth, septation, and branching of mycelial microorganisms is prese...
Streptomycetes are Gram-positive multicellular soil-dwelling bacteria which are commercially used as...
Soil grains harbor an astonishing diversity of Streptomyces strains producing diverse secondary meta...
A highly branched hyphal morphology was observed in early stage (high nutrient availability) batch l...
We are interested the soil dwelling bacteria Streptomyces coelicolor because its cells grow end to e...
The filamentous bacteria Streptomyces are widespread inhabitants of terrestrial soils. Streptomycete...
Filamentous fungi are ubiquitous in nature and have high societal significance, being both major (fo...
Abstract—Filamentous fungi grow efficient nutrient transportation networks which are highly resilien...
Growth of Streptomyces tendae was investigated in submerged culture. Images of several mycelia were ...
Streptomyces species are often referred to as “antibiotic factories” due to their ability to produce...
International audienceFilamentous fungi can regulate their growth mechanisms to adapt to the environ...