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Horizontal transfer of catabolic plasmids in the process of naphthalene biodegradation in model soil systems

机译:模型土壤系统中萘生物降解过程中分解代谢质粒的水平转移

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The process of naphthalene degradation by indigenous, introduced, and transconjugant strains was studied in laboratory soil microcosms. Conjugation transfer of catabolic plasmids was demonstrated in naphthalene-contaminated soil. Both indigenous microorganisms and an introduced laboratory strain BS394 (pNF142::TnMod-OTc) served as donors of these plasmids. The indigenous bacterial degraders of naphthalene isolated from soil were identified as Pseudomonas putida and Pseudomonas fluorescens. The frequency of plasmid transfer in soil was 10(-5)-10(-4) per donor cell. The activity of the key enzymes of naphthalene biodegradation in indigenous and transconjugant strains was studied. Transconjugant strains harboring indigenous catabolic plasmids possessed high salicylate hydroxylase and low catechol-2,3-dioxygenase activities, in contrast to indigenous degraders, which had a high level of catechol-2,3-dioxygenase activity and a low level of salicylate hydroxylase. Naphthalene degradation in batch culture in liquid mineral medium was shown to accelerate due to cooperation of the indigenous naphthalene degrader P fluorescens AP1 and the transconjugant strain P. putida KT2442 harboring the indigenous catabolic plasmid pAP35. The role of conjugative transfer of naphthalene biodegradation plasmids in acceleration of naphthalene degradation was demonstrated in laboratory soil microcosms.
机译:在实验室土壤微观世界中,研究了本地,引进和转结合菌株对萘的降解过程。在萘污染的土壤中证明了分解代谢质粒的结合转移。本地微生物和引入的实验室菌株BS394(pNF142 :: TnMod-OTc)都是这些质粒的供体。从土壤中分离出的本地萘降解细菌被鉴定为恶臭假单胞菌和荧光假单胞菌。每个供体细胞在土壤中质粒转移的频率为10(-5)-10(-4)。研究了本地和转结合菌株中萘生物降解关键酶的活性。与具有高水平的儿茶酚-2,3-双加氧酶活性和低水平的水杨酸羟化酶的本地降解剂相反,带有本地分解代谢质粒的转结合菌株具有较高的水杨酸羟化酶活性和较低的儿茶酚-2,3-二加氧酶活性。由于本地萘降解物P fluorescens AP1和带有本地降解代谢质粒pAP35的转导共轭菌株P. putida KT2442的协同作用,液体矿物培养基中分批培养的萘降解加速。在实验室土壤微观世界中证明了萘生物降解质粒的共轭转移在加速萘降解中的作用。

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