首页> 外文期刊>International Biodeterioration & Biodegradation >Antifouling potential of a marine strain, Pseudomonas aeruginosa 1242, isolated from brass microfouling in Vietnam.
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Antifouling potential of a marine strain, Pseudomonas aeruginosa 1242, isolated from brass microfouling in Vietnam.

机译:从越南的黄铜微垢分离出的海洋菌株铜绿假单胞菌1242的防垢潜力。

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摘要

Due to increased concern about the adverse effects of biocides on the environment, the creation of environmentally friendly coatings is now of considerable interest. This work is yet another attempt to use the enormous potential of marine microorganisms to protect surfaces from fouling. A strain of Pseudomonas aeruginosa 1242 was selected for this study after screening of different microorganisms for ability to inhibit the growth of microorganisms; this strain appeared to be highly active. Using the enzymatic approach, we have chosen the medium and cultivation conditions for the strain 1242, which ensured the maximum production of hydrolytic exoenzymes. The cells and metabolite complex of the strain were then embedded into an epoxy-resin-based commercial anticorrosion coating. It was shown in laboratory experiments that the bacterial cells introduced into the epoxy coating remain viable for a sufficiently long time. The results of trials of the experimental coatings in seawaters of different climatic zones demonstrated that the cells of this strain and the complex of enzymes and secondary metabolites that they produced could prevent adhesion of micro- and macrofoulers.
机译:由于人们越来越关注杀生物剂对环境的不利影响,现在人们对产生环保涂层非常感兴趣。这项工作是利用海洋微生物的巨大潜力来保护表面免受污染的又一次尝试。在筛选不同微生物抑制微生物生长的能力后,选择了铜绿假单胞菌1242菌株用于本研究。该菌株似乎是高活性的。使用酶促方法,我们选择了菌株1242的培养基和培养条件,以确保最大程度地生产水解外切酶。然后将菌株的细胞和代谢产物复合物嵌入基于环氧树脂的商业防腐涂料中。在实验室实验中表明,引入环氧涂层的细菌细胞可以存活足够长的时间。在不同气候带海水中进行的实验性涂层试验的结果表明,该菌株的细胞以及它们产生的酶和次级代谢产物的复合物可以防止微污垢和大污垢的粘附。

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