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悬浮培养物中重组质粒携带的三氯乙烯降解途径的活性与稳定性

Activity and stability of a recombinant plasmid-borne TCE degradative pathway in suspended cultures.

作者信息

Sharp R R, Bryers J D, Jones W G, Shields M S

机构信息

Department of Environmental Engineering, Manhattan College, Riverdale, New York 10475, USA.

出版信息

Biotechnol Bioeng. 1998 Feb 5;57(3):287-96.

Abstract

The retention and expression of the plasmid-borne, TCE degradative toluene-ortho-monooxygenase (TOM) pathway in suspended continuous cultures of transconjugant Burkholderia cepacia 17616 (TOM31c) were studied. Acetate growth and TCE degradation kinetics for the transconjugant host are described and utilized in a plasmid loss model. Plasmid maintenance did not have a significant effect on the growth rate of the transconjugant. Both plasmid-bearing and plasmid-free strains followed Andrews inhibition growth kinetics when grown on acetate and had maximum growth rates of 0.22 h-1. The transconjugant was capable of degrading TCE at a maximum rate of 9.7 nmol TCE/min. mg protein, which is comparable to the rates found for the original plasmid host, Burkholderia cepacia PR131 (TOM31c). The specific activity of the TOM pathway was found to be a linear function of growth rate. Plasmid maintenance was studied at three different growth rates: 0.17/h, 0.1/h, and 0.065/h. Plasmid maintenance was found to be a function of growth rate, with the probability of loss ranging from 0.027 at a growth rate of 0.065/h to 0.034 at a growth rate 0.17/h.

摘要

研究了接合子洋葱伯克霍尔德菌17616(TOM31c)悬浮连续培养物中质粒携带的三氯乙烯(TCE)降解甲苯邻单加氧酶(TOM)途径的保留和表达。描述了接合子宿主的乙酸盐生长和TCE降解动力学,并将其用于质粒丢失模型。质粒维持对接合子的生长速率没有显著影响。携带质粒和无质粒的菌株在以乙酸盐为底物生长时均遵循安德鲁斯抑制生长动力学,最大生长速率均为0.22 h-1。接合子能够以9.7 nmol TCE/分钟·毫克蛋白的最大速率降解TCE,这与原始质粒宿主洋葱伯克霍尔德菌PR131(TOM31c)的降解速率相当。发现TOM途径的比活性是生长速率的线性函数。在三种不同的生长速率下研究了质粒维持情况:0.17/h、0.1/h和0.065/h。发现质粒维持是生长速率的函数,丢失概率在生长速率为0.065/h时为0.027,在生长速率为0.17/h时为0.034。

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