High - throughput sequencing and metagenomics : steps ahead in the culture - 1 independent analysis of food microbial
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Next Generation Sequencing and its Application in the Study of Microbiome in Plant Diseases Suppressive Soils
Progress in next-generation sequencing has played a significant role in ecological studies of microbial populations. These advances have led to a rapid evaluation in metagenomics studies (analysis of DNA of microbial communities without the need to culture). Many statistical and computational tools and metagenomics databases have led to the discovery of huge amounts of data. In this research, i...
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Metagenomics is a young overarching discipline that seeks to understand population dynamics and interactions among vast microbial worlds that have not been revealed by traditional culture methods in the microbiology laboratory. Metagenomics is emerging as an essential scientific discipline: there are far-reaching implications in understanding ecosystem responses to changes in the natural enviro...
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This review describes the recent advances in the study of food microbial ecology, with a focus on food fermentations. High-throughput sequencing (HTS) technologies have been widely applied to the study of food microbial consortia and the different applications of HTS technologies were exploited in order to monitor microbial dynamics in food fermentative processes. Phylobiomics was the most expl...
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UNLABELLED Microorganisms are ubiquitous in nature and constitute intrinsic parts of almost every ecosystem. A culture-independent and powerful way to study microbial communities is metagenomics. In such studies, functional analysis is performed on fragmented genetic material from multiple species in the community. The recent advances in high-throughput sequencing have greatly increased the amo...
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تاریخ انتشار 2013