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Biolog FF微孔板在近缘真菌底物利用和代谢产物分析中的应用。

Application of Biolog FF MicroPlate for substrate utilization and metabolite profiling of closely related fungi.

作者信息

Singh Maya Prakash

机构信息

Chemical and Screening Sciences, Wyeth Research, Pearl River, NY 10965, United States.

出版信息

J Microbiol Methods. 2009 Apr;77(1):102-8. doi: 10.1016/j.mimet.2009.01.014. Epub 2009 Feb 5.

Abstract

Filamentous fungi are known to have unique biochemical pathways to assimilate a vast array of simple and complex nutrients available to them and to produce a variety of metabolites. Morphological and biochemical uniqueness of these organisms are commonly used for their identification, but differentiation of closely related cultures requires extensive phenotypic and genomic investigations. The Biolog FF MicroPlate was recently introduced for rapid identification of common filamentous fungi based on their abilities to utilize 95 discrete substrates. We used the FF MicroPlate for substrate utilization, growth, secondary metabolite and antimicrobial profiles of some fungal cultures important to our microbial drug discovery program. Culture growth was monitored by change in absorbance in each well, and the presence of secondary metabolites and their corresponding bioactivities was detected by LCMS analyses and antimicrobial assays of the extracts of each well, respectively. Fingerprints were created with Spotfire visualization software, and data were analyzed in various ways. The substrate utilization fingerprints were useful in selecting media components for media optimization of secondary metabolite production for the various cultures. In general, a strong correlation was found among substrate utilization, growth, antimicrobial activity and presence of the responsible secondary metabolites. The method was used for dereplication of isolated fungi and in the differentiation of closely related variants within one species.

摘要

已知丝状真菌具有独特的生化途径,可同化它们所能获取的大量简单和复杂营养物质,并产生多种代谢产物。这些生物体的形态和生化独特性通常用于它们的鉴定,但密切相关培养物的区分需要广泛的表型和基因组研究。Biolog FF微孔板最近被引入,用于基于常见丝状真菌利用95种离散底物的能力进行快速鉴定。我们使用FF微孔板来研究对我们的微生物药物发现计划重要的一些真菌培养物的底物利用、生长、次级代谢产物和抗菌谱。通过监测每个孔中吸光度的变化来监测培养物的生长,分别通过对每个孔提取物的LCMS分析和抗菌测定来检测次级代谢产物的存在及其相应的生物活性。使用Spotfire可视化软件创建指纹图谱,并以各种方式分析数据。底物利用指纹图谱有助于为各种培养物的次级代谢产物生产的培养基优化选择培养基成分。一般来说,在底物利用、生长、抗菌活性和相关次级代谢产物的存在之间发现了很强的相关性。该方法用于对分离出的真菌进行重复排除,并用于区分同一物种内密切相关的变体。

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