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哈茨木霉产6-戊基-α-吡喃酮:能量耗散率的影响及其对真菌生理学的意义

6-pentyl-alpha-pyrone production by Trichoderma harzianum: the influence of energy dissipation rate and its implications on fungal physiology.

作者信息

Rocha-Valadez J Antonio, Hassan Mainul, Corkidi Gabriel, Flores Celia, Galindo Enrique, Serrano-Carreón Leobardo

机构信息

Departamento de Ingeniería Celular y Biocatálisis, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, 62210 Morelos, México.

出版信息

Biotechnol Bioeng. 2005 Jul 5;91(1):54-61. doi: 10.1002/bit.20489.

Abstract

The influence of the agitation conditions on biomass growth, morphology, carbon metabolism, viability, and 6-pentyl-alpha-pyrone (6PP) production by Trichoderma harzianum were studied in an extractive fermentation system. Batch spore-inoculated cultures developed at dissolved oxygen concentrations above 35% of air saturation were carried out in a 14 L bioreactor. The effect of energy dissipation rate over culture performance was assessed using two sets of three Rushton turbines (having different diameters) operated at different agitation speeds. Higher mechanical stress enhanced cellular differentiation (i.e., sporulation), while yielding lower specific growth rates and increased specific CO(2) production rates (CPRs) at relatively constant specific glucose consumption rates. In addition, fungal viability and clump mean diameter decreased gradually at higher energy dissipation rates. 6PP biosynthesis was growth associated and its specific productivity showed a bell-shaped relationship with the energy dissipation rate. T. harzianum physiology was, therefore, strongly influenced by the prevailing hydrodynamic conditions as it triggered cellular metabolism and differentiation shifts.

摘要

在萃取发酵系统中,研究了搅拌条件对哈茨木霉生物量生长、形态、碳代谢、活力及6-戊基-α-吡喃酮(6PP)产量的影响。在14 L生物反应器中进行分批孢子接种培养,培养时溶解氧浓度高于空气饱和度的35%。使用两组三个不同直径的 Rushton 涡轮在不同搅拌速度下运行,评估能量耗散率对培养性能的影响。较高的机械应力增强了细胞分化(即产孢),同时在相对恒定的比葡萄糖消耗率下,比生长速率降低,比二氧化碳产生速率(CPR)增加。此外,在较高的能量耗散率下,真菌活力和菌团平均直径逐渐降低。6PP生物合成与生长相关,其比生产率与能量耗散率呈钟形关系。因此,哈茨木霉的生理学受到主要流体动力学条件的强烈影响,因为它引发了细胞代谢和分化的转变。

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