Kelly Sven, Grimm Luis H, Hengstler Jan, Schultheis Ellen, Krull Rainer, Hempel Dietmar C
Institute of Biochemical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany.
Bioprocess Biosyst Eng. 2004 Oct;26(5):315-23. doi: 10.1007/s00449-004-0368-y. Epub 2004 Aug 12.
Product formation of mycelial organisms, like Aspergillus niger, is intimately connected with their morphology. Pellet morphology is often requested for product formation. Therefore, it is important to reveal the influence of the hydrodynamic conditions on the morphological development. In the present study, pellet morphology and glucoamylase formation were studied under different agitation intensities of A. niger AB1.13. For pellet formation inside the bioreactor, without the use of precultures, it is necessary to work at low energy dissipation rates. Biomass growth and glucoamylase activity were correlated with energy dissipation. Furthermore, product yield was analysed in dependence of pellet size and concentration. The present work shows that simple equations based on Monod-kinetics can describe growth and product formation, in general, also in mycelian organisms. All measured morphological data, like pellet concentration, as well as glucoamylase formation, strongly depend on the hydrodynamic conditions.
丝状真菌(如黑曲霉)的产物形成与其形态密切相关。通常要求形成颗粒形态以实现产物形成。因此,揭示流体动力学条件对形态发育的影响很重要。在本研究中,研究了黑曲霉AB1.13在不同搅拌强度下的颗粒形态和糖化酶形成。对于在生物反应器内形成颗粒且不使用预培养物的情况,有必要在低能量耗散率下进行操作。生物量生长和糖化酶活性与能量耗散相关。此外,还根据颗粒大小和浓度分析了产物产量。目前的工作表明,基于莫诺德动力学的简单方程通常也可以描述丝状真菌中的生长和产物形成。所有测量的形态学数据,如颗粒浓度以及糖化酶形成,都强烈依赖于流体动力学条件。