利用外倾谱和生理数据的指纹图谱显示了甲壳青霉菌株的亚特异性分组

Silva Sonjak , Jens Christian Frisvad , Nina Gunde-Cimerman
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引用次数: 6

摘要

利用不同的表型特征对青霉菌菌种进行指纹图谱分析。选择了7株这种极其同质的菌株;其中,5个源于以低温为特征的地理位置,1个源于低水活动的地理位置。主成分分析(PCA)使用微形态数据,温度和水分依赖的生长速率,以及HPLC分析获得的外向型特征。微形态数据信息较少,而生长速率数据只有在所调查的菌株已经对所选的外部参数表现出轻微的适应时才有信息。相比之下,外倾数据的PCA分析显示菌株根据它们的起源和已知的生理差异进行分组。这些分组与先前扩增片段长度多态性(AFLP)研究得到的聚类结果完全一致。因此,我们在这里首次证明了定性和定量外向型基因图谱的结合可以作为表型指纹识别的工具,以补充或取代分子指纹识别技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fingerprinting using extrolite profiles and physiological data shows sub-specific groupings of Penicillium crustosum strains

Fingerprinting of Penicillium crustosum strains was performed using different phenotypic characteristics. Seven strains of this extremely homogenous species were selected; of these, five originated from geographical locations characterized by low temperatures, and one from a location with a low water activity. Principal component analysis (PCA) was performed using micromorphological data, temperature- and water-dependent growth rates, and extrolite profiles obtained by HPLC analysis. The micromorphological data were less informative, while the growth-rate data were informative only if the strains investigated already showed slight adaptations to the selected external parameter. In contrast, PCA analyses of the extrolite data showed groupings of the strains according to their origins and known physiological differences. These groupings are in full agreement with the clustering obtained by previous amplified fragment length polymorphism (AFLP) study. We thus demonstrate here for the first time that combined qualitative and quantitative extrolite profiles can be used as a tool for phenotypic fingerprinting, to complement, or replace, molecular fingerprinting techniques.

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