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利用克隆发光菌株黄单胞菌的传质研究。

Mass transfer studies using cloned-luminous strain of Xanthomonas campestris.

机构信息

Department of Chemical Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Biotechnol Bioeng. 1989 Aug 20;34(5):671-80. doi: 10.1002/bit.260340511.

Abstract

Measurements of mass transfer in a highly viscous pseudoplastic broth, which is typical to Xanthomonas campestris fermentations, are difficult to obtain by conventional methods and little data is available. A novel research method that uses bioluminescence for mass transfer studies has been developed. A plasmid carrying the luminescence operon of marine luminous bacteria is introduced into an industrial bacteria, X. campestris. Besides producing the polysaccharide xanthangum, the bioluminescent X. campestris emits measurable light. Monitoring the luminescence is a simple, noncontaminating nondestructive and very sensitive indicator of the metabolic activity of the culture during fermentation. Energy drain due to bioluminescence is very low; growth rate and polysaccharide production rate are close to those of the wild-type strain.Oxygen and substrate mass transfer are determined by inducing step or periodic fluctuations in their concentration and measuring the resultant luminescence response. Oxygen mass transfer coefficients show linear dependence on Reynolds number and an exponential dependence on the average shear rate. Viscosity effect is small at high viscosities but increases rapidly below 10 Pa-s. The influence of oxygen uptake rate is studied.Mass transfer of the limiting component (ammonium ions) is analyzed under pulsating feed conditions. The luminescence declines, following a feed pulse, due to energy investment in active transport of ammonium ions through the cell membrane, it regenerates then to its baseline. The relation between mass transfer and luminescence fluctuation is elucidated.

摘要

在高度粘性的假塑性发酵液(典型的野油菜黄单胞菌发酵液)中进行传质测量非常困难,传统方法难以获得,并且可用的数据很少。已经开发出一种新颖的研究方法,该方法使用生物发光进行传质研究。将带有海洋发光细菌发光操纵子的质粒引入工业细菌野油菜黄单胞菌中。除了产生黄原胶多糖外,发光野油菜黄单胞菌还会发出可测量的光。监测发光是发酵过程中监测培养物代谢活性的一种简单,无污染,非破坏性和非常灵敏的指标。生物发光的能量消耗非常低;生长速率和多糖产率与野生型菌株接近。通过诱导浓度的阶跃或周期性波动并测量由此产生的发光响应来确定氧气和基质的传质。氧传质系数与雷诺数呈线性关系,与平均剪切率呈指数关系。在高粘度下,粘度的影响很小,但在 10 Pa-s 以下迅速增加。研究了氧摄取率的影响。在脉动进料条件下分析了限制组分(铵离子)的传质。由于通过细胞膜主动运输铵离子需要能量投入,因此在进料脉冲后发光会下降,然后再生到基线。阐明了传质与发光波动之间的关系。

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