首页> 外文期刊>International Biodeterioration & Biodegradation >Development of a microtitre plate method for determination of phenol utilization, biofilm formation and respiratory activity by environmental bacterial isolates.
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Development of a microtitre plate method for determination of phenol utilization, biofilm formation and respiratory activity by environmental bacterial isolates.

机译:环境细菌分离株测定酚类利用,生物膜形成和呼吸活性的微量滴定板方法。

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摘要

Twenty-five aerobic phenol-degrading bacteria, isolated from different environmental samples on phenol agar after several subcultures in phenol broth, utilized phenol (0.2 g l-1) within 24 h, but removal of phenol was more rapid when other carbon sources were also present. A microtitre plate method was developed to determine growth rate, biofilm formation and respiratory activity of the strains isolated. Pseudomonas putida strains C5 and D6 showed maximum growth (as O.D. at 600 nm), P. putida D6 and unidentified bacterial strain M1 were more stable at high concentrations of phenol (0.8 g l-1), and P. putida C5 formed the greatest amount of biofilm in 0.5 g phenol l-1 medium. Measurement of dehydrogenase activity as reduction of triphenyl tetrazolium chloride supported data on growth rate and biofilm formation. The microtitre plate method provided a selective method for detection of the best phenol degrading and biofilm-forming microorganisms, and was also a rapid, convenient means of studying the effect of phenol concentration on growth rate and biofilm formation..
机译:二十五个有氧酚类降解细菌,在苯酚肉汤的几个副栽培中,在苯酚肉汤中的几个苯酚琼脂上分离出不同的环境样品,在24小时内使用苯酚(0.2g L-1),但是当其他碳源也是时,除去苯酚更快展示。开发了微量滴定板法以确定分离的菌株的生长速率,生物膜形成和呼吸活性。 Pseudomonas pivida菌株C5和D6显示出最大的生长(如600nm的OD),P.Putida D6和未识别的细菌菌株M1在高浓度的苯酚(0.8g L-1)中更稳定,并且P.Putida C5形成最大的苯酚在0.5g苯酚L-1培养基中生物膜的量。测量脱氢酶活性作为减少三苯基四唑氯化氯酰氯支持生长速率和生物膜形成的数据。微量滴定板方法提供了一种用于检测最佳酚类降解和生物膜形成微生物的选择方法,也是研究苯酚浓度对生长速率和生物膜形成的影响的快速,方便的方法。

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