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低氧浓度对模型固态发酵系统中米曲霉生长及α-淀粉酶产生的影响

Effect of low oxygen concentrations on growth and alpha-amylase production of Aspergillus oryzae in model solid-state fermentation systems.

作者信息

Rahardjo Yovita S P, Sie Susana, Weber Frans J, Tramper Johannes, Rinzema Arjen

机构信息

Wageningen Centre for Food Sciences, P.O. Box 557, 6700 AN Wageningen, The Netherlands.

出版信息

Biomol Eng. 2005 Feb;21(6):163-72. doi: 10.1016/j.bioeng.2005.01.001.

Abstract

Oxygen transfer in the fungal mat is a major concern in solid-state fermentation (SSF). Oxygen supply into the mycelial layers is hampered by diffusion limitation. For aerobic fungi, like Aspergillus oryzae, this oxygen depletion can be a severely limiting factor for growth and metabolite production. This paper describes the effects of a low oxygen concentration on growth at the levels of individual hyphae, colonies and overcultures, and on alpha-amylase production in overcultures. PDA medium was used to study the effect of a low oxygen concentration on hyphal elongation rate and branching frequency of hyphae, and radial extension rate of colonies of A. oryzae. We found similar saturation constants (K(O2)) of 0.1% (v/v in the gas phase) for oxygen concentration described with Monod kinetics, for branching frequency of hyphae and colony extension rate. When A. oryzae was grown as an over-culture on wheat-flour model substrate at 0.25% (v/v) oxygen concentration, the reduction in growth was more pronounced than as individual hyphae and a colony on PDA medium. Experimental results also showed that the specific alpha-amylase production rate under the condition of 0.25% (v/v) oxygen was reduced. Because the value of K(O2) is relatively low, it is reasonable to simplify the kinetics of growth of A. oryzae to zero-order kinetics in coupled diffusion/reaction models.

摘要

在固态发酵(SSF)中,真菌菌层中的氧气传递是一个主要问题。氧气向菌丝层的供应受到扩散限制的阻碍。对于需氧真菌,如米曲霉,这种氧气消耗可能是生长和代谢产物生产的严重限制因素。本文描述了低氧浓度对单个菌丝、菌落和扩大培养物水平上的生长以及扩大培养物中α-淀粉酶产生的影响。使用PDA培养基研究低氧浓度对米曲霉菌丝伸长率、菌丝分支频率以及菌落径向扩展率的影响。我们发现,用莫诺德动力学描述的氧气浓度,对于菌丝分支频率和菌落扩展率,其饱和常数(K(O2))相似,均为0.1%(气相中的体积分数)。当米曲霉在小麦粉模型底物上以扩大培养物形式在0.25%(体积分数)氧气浓度下生长时,生长的减少比在PDA培养基上作为单个菌丝和菌落时更为明显。实验结果还表明,在0.25%(体积分数)氧气条件下,α-淀粉酶的比生产率降低。由于K(O2)的值相对较低,在耦合扩散/反应模型中将米曲霉的生长动力学简化为零级动力学是合理的。

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