Multidisciplinary


Publications
185

Culturing of ‘unculturable’ human microbiota reveals novel taxa and extensive sporulation

Citation
Browne et al. (2016). Nature 533 (7604)
Names
Abstract
AbstractOur intestinal microbiota harbours a diverse bacterial community required for our health, sustenance and wellbeing1,2. Intestinal colonization begins at birth and climaxes with the acquisition of two dominant groups of strict anaerobic bacteria belonging to the Firmicutes and Bacteroidetes phyla2. Culture-independent, genomic approaches have transformed our understanding of the role of the human microbiome in health and many diseases1. However, owing to the prevailing perception that our
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Comparison of community structures of Candidatus Methylomirabilis oxyfera-like bacteria of NC10 phylum in different freshwater habitats

Citation
Shen et al. (2016). Scientific Reports 6 (1)
Names
Methylomirabilis oxygeniifera Ts
Abstract
AbstractMethane oxidation coupled to nitrite reduction is mediated by ‘Candidatus Methylomirabilis oxyfera’ (M. oxyfera), which belongs to the NC10 phylum. In this study, the community composition and diversity of M. oxyfera-like bacteria of NC10 phylum were examined and compared in four different freshwater habitats, including reservoir sediments (RS), pond sediments (PS), wetland sediments (WS) and paddy soils (PAS), by using Illumina-based 16S rRNA gene sequencing. The recovered NC10-related
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Development of Quantitative Real-time PCR Assays for Different Clades of “Candidatus Accumulibacter”

Citation
Zhang et al. (2016). Scientific Reports 6 (1)
Names
“Accumulibacter”
Abstract
AbstractWe designed novel quantitative real-time polymerase chain reaction (qPCR) primers for the polyphosphate kinase 1 (ppk1) gene, targeting eight individual “Candidatus Accumulibacter” (referred to as Accumulibacter) clades. An evaluation of primer sets was conducted regarding the coverage, specificity, and PCR efficiency. (i) All primer sets were designed to cover all available sequences of the target clade. (ii) The phylogenetic analysis of the sequences retrieved from the qPCR products by
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