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生物膜培养中重组质粒携带的三氯乙烯降解途径的活性和稳定性

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

作者信息

Sharp RR, Bryers JD, Jones WG

机构信息

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

出版信息

Biotechnol Bioeng. 1998 Aug 5;59(3):318-27. doi: 10.1002/(sici)1097-0290(19980805)59:3<318::aid-bit8>3.0.co;2-e.

Abstract

The activity and stability of the TCE degradative plasmid TOM31c in the transconjugant host Burkholderia cepacia 17616 was studied in selective and non-selective biofilm cultures. The activity of plasmid TOM31c in biofilm cultures was measured by both TCE degradative studies and the expression of the Tom pathway. Plasmid loss was measured using continuous flow, rotating annular biofilm reactors, and various analytical and microbiological techniques. The probability of plasmid loss in the biofilm cultures was determined using a non-steady-state biofilm plasmid loss model that was derived from a simple mass balance, incorporating results from biofilm growth and plasmid loss studies. The plasmid loss model also utilized Andrew's inhibition growth kinetics and a biofilm detachment term. Results from these biofilm studies were compared to similar studies performed on suspended cultures of Burkholderia cepacia 17616-TOM31c to determine if biofilm growth has a significant effect on either plasmid retention or Tom pathway expression (i.e., TCE degradation rates). Results show that the activity and expression of the Tom pathway measured in biofilm cultures was significantly less than that found in suspended cultures at comparable growth rates. The data obtained from these studies fit the plasmid loss model well, providing plasmid loss probability factors for biofilm cultures that were equivalent to those previously found for suspended cultures. The probability of plasmid loss in the B. cepacia 17616-TOM31c biofilm cultures was equivalent to those found in the suspended cultures. The results indicate that biofilm growth neither helps nor hinders plasmid stability. In both the suspended and the biofilm cultures, plasmid retention and expression could be maintained using selective growth substrates and/or an appropriate plasmid-selective antibiotic. Copyright 1998 John Wiley & Sons, Inc.

摘要

在选择性和非选择性生物膜培养中,研究了三氯乙烯(TCE)降解质粒TOM31c在接合子宿主洋葱伯克霍尔德菌17616中的活性和稳定性。通过TCE降解研究和Tom途径的表达来测定生物膜培养中质粒TOM31c的活性。使用连续流动、旋转环形生物膜反应器以及各种分析和微生物技术来测定质粒丢失情况。生物膜培养中质粒丢失的概率通过一个非稳态生物膜质粒丢失模型来确定,该模型源自简单的质量平衡,纳入了生物膜生长和质粒丢失研究的结果。该质粒丢失模型还利用了Andrew抑制生长动力学和一个生物膜脱落项。将这些生物膜研究的结果与对洋葱伯克霍尔德菌17616 - TOM31c悬浮培养进行的类似研究进行比较,以确定生物膜生长是否对质粒保留或Tom途径表达(即TCE降解率)有显著影响。结果表明,在可比生长速率下,生物膜培养中测得的Tom途径的活性和表达明显低于悬浮培养中的情况。从这些研究中获得的数据与质粒丢失模型拟合良好,为生物膜培养提供了与先前在悬浮培养中发现的等效的质粒丢失概率因子。洋葱伯克霍尔德菌17616 - TOM31c生物膜培养中质粒丢失的概率与悬浮培养中的相当。结果表明生物膜生长既不促进也不阻碍质粒稳定性。在悬浮培养和生物膜培养中,使用选择性生长底物和/或适当的质粒选择性抗生素都可以维持质粒保留和表达。版权所有1998约翰威立父子公司。

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