Insights into Oropharyngeal Microbiota, Biofilms and Associated Diseases from Metagenomics and Transcriptomic Approaches

R. Priyadarshini, K. Krishnan, R. Niranjan
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Abstract

Oral cavity is an ecologically complex environment and hosts a diverse microbial community. Most of these organisms are commensals, however, on occasion, some have the potential to become pathogenic causing damage to the human host. Complex interactions between pathogenic bacteria, the microbiota, and the host can modify pathogen physiology and behavior. Most bacteria in the environment do not exist in free-living state but are found as complex matrix enclosed aggregates known as biofilms. There has been research interest in microbial biofilms because of their importance in industrial and biomedical settings. Bacteria respond to environmental cues to fine-tune the transition from planktonic growth to biofilm by directing gene expression changes favorable for sessile community establishment. Meta-approaches have been used to identify complex microbial associations within human oral cavity leading to important insights. Comparative gene expression analysis using deep sequencing of RNA and metagenomics studies done under varying conditions have been successfully used in understanding and identifying possible triggers of pathogenicity and biofilm formation in oral commensals.
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从宏基因组学和转录组学方法深入了解口咽微生物群、生物膜和相关疾病
口腔是一个生态复杂的环境,拥有多样化的微生物群落。这些生物大多是共生的,然而,有时,一些有可能成为致病性的,对人类宿主造成损害。致病菌、微生物群和宿主之间复杂的相互作用可以改变病原体的生理和行为。环境中的大多数细菌不是以自由生活的状态存在,而是以复杂的基质封闭聚集体形式存在,称为生物膜。微生物生物膜由于其在工业和生物医学领域的重要性而引起了人们的研究兴趣。细菌对环境信号作出反应,通过引导有利于无根群落建立的基因表达变化,微调从浮游生长到生物膜的转变。元方法已被用于识别人类口腔内复杂的微生物关联,从而获得重要的见解。在不同条件下进行的RNA深度测序和宏基因组学研究的比较基因表达分析已成功地用于了解和确定口腔共生菌致病性和生物膜形成的可能触发因素。
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Insights into Oropharyngeal Microbiota, Biofilms and Associated Diseases from Metagenomics and Transcriptomic Approaches Introductory Chapter: Applications of RNA-Seq Diagnostics in Biology and Medicine Assessing Host-Pathogen Interaction Networks via RNA-Seq Profiling: A Systems Biology Approach
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