优化模型在改良氯霉素琼脂培养基中用于荧光假单胞菌选择性分离的应用。

Wisdom Dawoye Atemie, Lekiah Pedro Peekate
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引用次数: 0

摘要

市售的选择性分离假单胞菌的培养基相对昂贵。将氯霉素掺入营养琼脂中用于荧光假单胞菌的选择性分离。本研究的目的是将优化技术应用于营养物氯霉素琼脂培养基(NCAM)的修饰,以优化其对假单胞菌的选择性分离。以检测到的水样中含有荧光绿色素产生菌(FGPB)进行优化研究。优化工艺选用pH、NaCl浓度(NC)和氯霉素浓度(CC),分别为7.0 ~ 8.2、0.5 ~ 1.0%和40 ~ 60g /ml。使用Box-Behnken设计矩阵从这些范围的组合中得出15种培养基变化,并用于培养水样以分离FGPB。采用三因素设计的多项式方程计算所得的FGPB菌群比例与所选培养基组分之间的关系。由该方程得出的预测曲线显示,当pH、NC和CC组合值分别为7.0、0.2%和60g /ml时,FGPB细菌群体的比例最高。该优化组合的NCAM将水样中FGPB的选择性分离效率从0.008%提高到0.011%。理化/生化检测表明,分离的fgpb为荧光假单胞菌。结果表明,在pH 7.0、NaCl浓度0.2%、氯霉素浓度为60 ?g/ml的条件下,NCAM对荧光假单胞菌的选择性分离效果最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Optimization Models in Modification of Nutrient- Chloramphenicol Agar Medium for Use in Selective Isolation of Pseudomonasfluorescens.
Commercially available medium for selective isolation of Pseudomonas are relatively expensive. Incorporation of chloramphenicol into nutrient agarhas been used in the selective isolation of Pseudomonasfluorescens. Theaim of this study was to apply optimization in modification of nutrient-chloramphenicol agar medium (NCAM) so as to optimize it for selective isolation of Pseudomonas species. Water sample determined to contain fluorescent greenish-pigment producing bacteria (FGPB) was used for the optimization study. Medium component selected for the optimization process were pH, NaCl concentration (NC), and chloramphenicol concentration (CC), with value ranges of 7.0 – 8.2, 0.5 – 1.0 %, and 40 – 60 ?g/ml, respectively. Fifteen media variations were derived from combination of these ranges using Box-Behnken design matrix,and were used in culturing the water sample for isolation of FGPB. Relationship between obtained proportions of bacterial populations that are FGPB and chosen media components were calculated using polynomial equation for three factors design. Prediction profiles derived from the equation showed that the highest proportion of bacterial populations that are FGPB was achievable at pH, NC, and CC combination values of 7.0, 0.2 %, and 60 ?g/ml, respectively. NCAM with this optimized combination increased the efficiency of selectively isolating FGPB from the water samplefrom 0.008 to 0.011 %. Physicochemical/biochemical testing showed that the FGPBisolates were Pseudomonas fluorescens. It is concluded that NCAM with pH 7.0, NaCl concentration of 0.2 %, and chloramphenicol concentration of 60 ?g/ml can be used for selective isolation of Pseudomonas fluorescens with optimum efficiency.
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