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首页> 外文期刊>Journal of Clinical Microbiology >Statistical Analyses of Complex Denaturing Gradient Gel Electrophoresis Profiles
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Statistical Analyses of Complex Denaturing Gradient Gel Electrophoresis Profiles

机译:复杂变性梯度凝胶电泳图谱的统计分析

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Studies using molecular techniques have demonstrated that a culture-based approach can severely underestimate the bacterial diversity in most environments. One of the molecular techniques that has been applied in microbial ecology is denaturing gradient gel electrophoresis (DGGE). The purpose of this study was to investigate differences in the microbiota of plaque, using a number of analysis techniques, from children without gingivitis (n = 30) and from those with gingivitis (n = 30). Extracted DNA from gingival margin plaque was subjected to PCR targeting the 16S rRNA gene using universal primers. DGGE profiles were analyzed in three ways. (i) Bacterial diversity was compared between cohorts by using the Shannon-Wiener index (also known as the Shannon-Weaver index). (ii) A hierarchical cluster analysis of the banding patterns was calculated and expressed as a dendrogram. (iii) Individual DGGE bands and their intensities for both cohorts were compared using a logistic regression analysis. The Shannon-Wiener indices demonstrated a greater bacterial diversity associated with no-gingivitis plaque (P = 0.009). Dendrograms demonstrated that seven clades associated with gingivitis and five clades associated with no gingivitis. The logistic regression demonstrated that one band was significantly associated with no gingivitis (P = 0.001), while two bands were significantly associated with gingivitis (P = 0.005 and P = 0.042). In conclusion, this study demonstrates that the development of gingivitis might be accompanied by a decrease in bacterial diversity. Furthermore, we have demonstrated that logistic regression is a good statistical method for analyzing and characterizing DGGE profiles.
机译:使用分子技术的研究表明,基于培养的方法可以严重低估大多数环境中的细菌多样性。微生物生态学中已应用的一种分子技术是变性梯度凝胶电泳(DGGE)。这项研究的目的是使用多种分析技术来调查没有牙龈炎的儿童( n = 30)和患有牙龈炎的儿童( n = 30)。使用通用引物对从牙龈边缘斑块中提取的DNA进行靶向16S rRNA基因的PCR。 DGGE概况通过三种方式进行了分析。 (i)使用Shannon-Wiener指数(也称为Shannon-Weaver指数)比较了队列之间的细菌多样性。 (ii)计算带状图谱的层次聚类分析,并表示为树状图。 (iii)使用逻辑回归分析比较两个队列的单个DGGE谱带及其强度。 Shannon-Wiener指数显示出与无牙龈炎斑块相关的更大细菌多样性( P = 0.009)。树状图显示,有7个分支与牙龈炎有关,有5个分支与无牙龈炎有关。 Logistic回归表明,一条带与无牙龈炎显着相关( P = 0.001),而两条带与牙龈炎显着相关( P = 0.005和 P = 0.042)。总之,这项研究表明牙龈炎的发展可能伴随细菌多样性的降低。此外,我们证明了逻辑回归是一种用于分析和表征DGGE轮廓的良好统计方法。

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