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A Flexible Mathematical Model Platform for Studying Branching Networks: Experimentally Validated Using the Model Actinomycete, Streptomyces coelicolor

机译:用于研究分支网络的灵活数学模型平台:使用放线菌,天蓝色链霉菌的模型进行实验验证

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摘要

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 in response to pellet size and external nutrient supply. The model is scalable and will find utility in a range of branched biological networks such as angiogenesis, plant root growth and fungal hyphal networks.
机译:分支网络本质上无处不在,其增长经常动态地响应环境提示。以生产抗生素的土壤细菌链霉菌为模型,我们为研究分支生物网络开发了灵活的数学模型平台。链霉菌在液体培养物中形成大的聚集体,会损害工业抗生素的发酵。了解这些功能可以帮助改进此类过程。该模型需要相对较少的实验值来进行参数设置,但是可以对链霉菌的沉淀物进行真实的模拟,并且能够预测特征,例如菌丝的密度,生长尖端的数量以及根据沉淀物大小产生的抗生素在沉淀物中的位置。和外部营养供应。该模型是可扩展的,并将在一系列分支生物网络(例如血管生成,植物根系生长和真菌菌丝网络)中找到实用性。

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