首页> 外文期刊>Biochemical Engineering Journal >A three-dimensional discrete lattice-based system for modeling the growth of aerial hyphae of filamentous fungi on solid surfaces: A tool for investigating micro-scale phenomena in solid-state fermentation
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A three-dimensional discrete lattice-based system for modeling the growth of aerial hyphae of filamentous fungi on solid surfaces: A tool for investigating micro-scale phenomena in solid-state fermentation

机译:基于三维离散晶格的系统,用于模拟丝状真菌气生菌丝在固体表面上的生长:研究固态发酵中微观现象的工具

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摘要

In solid-state fermentation systems, the growth of aerial hyphae into the interparticle spaces increases the pressure drop through forcefully aerated beds. Aerial hyphae can also bind particles into agglomerates, restricting the transfer of O_2 to the particle surfaces. Despite these important effects, to date relatively little effort has been made to understand the growth patterns of these hyphae. In the current work we present a discrete lattice-based model that can be used to simulate the growth of the aerial hyphae of filamentous fungi. In the model, the elongation of hyphae involves the successive addition of 10 μm cubes, with random numbers being used to choose the direction of growth. The model was able to describe profiles available in the literature for the density of the aerial hyphae, as a function of height above the surface, for a situation in which the filamentous fungus Rhizopus oligosporus was grown on potato dextrose agar. The model can be modified to describe various different situations involving the growth of filamentous fungi in solid-state fermentation systems, such as the growth of penetrative hyphae and the growth of hyphae within the wet mycelial layer that often forms at the surfaces of particles. It therefore represents a useful tool for investigating phenomena that occur at the micro-scale in solid-state fermentation systems.
机译:在固态发酵系统中,气生菌丝向颗粒间空间的生长会增加通过强力充气床的压降。气生菌丝还可以将颗粒结合成团块,从而限制O_2转移到颗粒表面。尽管有这些重要的影响,但迄今为止,为了解这些菌丝的生长方式所做的工作相对较少。在当前的工作中,我们提出了一个基于离散网格的模型,该模型可用于模拟丝状真菌气生菌丝的生长。在该模型中,菌丝的伸长涉及连续添加10μm立方体,并使用随机数选择生长方向。该模型能够描述文献中可获得的气生菌丝密度的分布图,该分布图是在马铃薯葡萄糖琼脂上生长丝状真菌Rhizopus oligosporus的情况。可以对该模型进行修改,以描述涉及固态发酵系统中丝状真菌生长的各种不同情况,例如渗透性菌丝的生长以及湿菌丝层中的菌丝的生长,这种菌丝通常在颗粒表面形成。因此,它是研究固态发酵系统中微观规模发生现象的有用工具。

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