Christiansen T, Spohr A B, Nielsen J
Center for Process Biotechnology, Department of Biotechnology, Technical University of Denmark, DK-2800 Lyngby, Denmark.
Biotechnol Bioeng. 1999 Apr 20;63(2):147-53. doi: 10.1002/(sici)1097-0290(19990420)63:2<147::aid-bit3>3.0.co;2-m.
Using image analysis the growth kinetics of the single hyphae of the filamentous fungus Aspergillus oryzae has been determined on-line in a flow-through cell at different glucose concentrations in the range from 26 mg L-1 to 20 g L-1. The tip extension rate of the individual hyphae can be described with saturation type kinetics with respect to the length of the hyphae. The maximum tip extension rate is constant for all hyphae measured at the same glucose concentration, whereas the saturation constant for the hyphae varies significantly between the hyphae even within the same hyphal element. When apical branching occurs, it is observed that the tip extension rate decreases temporarily. The number of branches formed on a hypha is proportional to the length of the hypha that exceeds a certain minimum length required to support the growth of a new branch. The observed kinetics has been used to simulate the outgrowth of a hyphal element from a single spore using a Monte Carlo simulation technique. The simulations shows that the observed kinetics for the individual hyphae result in an experimentally verified growth pattern with exponential growth in both total hyphal length and number of tips.
利用图像分析技术,在流动通过式细胞中,于26毫克/升至20克/升范围内的不同葡萄糖浓度下,对丝状真菌米曲霉的单根菌丝的生长动力学进行了在线测定。单个菌丝的顶端延伸速率可用关于菌丝长度的饱和型动力学来描述。在相同葡萄糖浓度下测量的所有菌丝,其最大顶端延伸速率是恒定的,而即使在同一菌丝单元内,不同菌丝之间的饱和常数也有显著差异。当发生顶端分支时,可以观察到顶端延伸速率会暂时降低。在一根菌丝上形成的分支数量与超过支持新分支生长所需的某个最小长度的菌丝长度成正比。所观察到的动力学已被用于使用蒙特卡罗模拟技术来模拟单个孢子形成的菌丝单元的生长。模拟结果表明,单个菌丝的观察到的动力学导致了在总菌丝长度和顶端数量上均呈指数增长的、经实验验证的生长模式。