Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
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Recovering complete and draft population genomes from metagenome datasetsStructural Diversity of Bacterial Communities Associated with Bloom-Forming Freshwater Cyanobacteria Differs According to the Cyanobacterial GenusGenome Reconstruction from Metagenomic Data Sets Reveals Novel Microbes in the Brackish Waters of the Caspian SeaAuxotrophy and intrapopulation complementary in the 'interactome' of a cultivated freshwater model community.Metagenome-assembled genomes uncover a global brackish microbiomeBacterioplankton community analysis in tilapia ponds by Illumina high-throughput sequencing.Metagenomic Characterisation of the Viral Community of Lough Neagh, the Largest Freshwater Lake in Ireland.Bacterial Communities Associated with Four Cyanobacterial Genera Display Structural and Functional Differences: Evidence from an Experimental Approach.Annual periodicity in planktonic bacterial and archaeal community composition of eutrophic Lake TaihuWarming and nutrient enrichment in combination increase stochasticity and beta diversity of bacterioplankton assemblages across freshwater mesocosms.Actinobacterial Diversity in the Sediments of Five Cold Springs on the Qinghai-Tibet Plateau.The Microbiota of Recreational Freshwaters and the Implications for Environmental and Public HealthThe first complete genome sequences of the acI lineage, the most abundant freshwater Actinobacteria, obtained by whole-genome-amplification of dilution-to-extinction cultures.Metagenomic profiling of the microbial freshwater communities in two Bulgarian reservoirs.Novel Synechococcus Genomes Reconstructed from Freshwater Reservoirs.Genomes of planktonic Acidimicrobiales: widening horizons for marine Actinobacteria by metagenomics.Metabolic Network Analysis and Metatranscriptomics Reveal Auxotrophies and Nutrient Sources of the Cosmopolitan Freshwater Microbial Lineage acI.Reconstruction of Diverse Verrucomicrobial Genomes from Metagenome Datasets of Freshwater Reservoirs.Microdiversification in genome-streamlined ubiquitous freshwater Actinobacteria.The effect of reconstruction works on planktonic bacterial diversity of a unique thermal lake revealed by cultivation, molecular cloning and next generation sequencing.Bacterial community composition in the water column of the deepest freshwater Lake Baikal as determined by next-generation sequencing.Contrasting patterns of genome-level diversity across distinct co-occurring bacterial populations.Taxonomical Resolution and Distribution of Bacterioplankton Along the Vertical Gradient Reveals Pronounced Spatiotemporal Patterns in Contrasted Temperate Freshwater Lakes.Genomes of Novel Microbial Lineages Assembled from the Sub-Ice Waters of Lake Baikal.Genome analysis of the freshwater planktonic Vulcanococcus limneticus sp. nov. reveals horizontal transfer of nitrogenase operon and alternative pathways of nitrogen utilization.A Phylogenomic and Molecular Markers Based Analysis of the Class Acidimicrobiia.Taxon-Driven Functional Shifts Associated with Storm Flow in an Urban Stream Microbial CommunityResponse of Microbial Communities to Changing Climate Conditions During Summer Cyanobacterial Blooms in the Baltic SeaComplete genome of streamlined marine actinobacterium Pontimonas salivibrio strain CL-TW6 adapted to coastal planktonic lifestyle
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Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
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2014 nî lūn-bûn
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2014年学术文章
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Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@en
Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@nl
type
label
Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@en
Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@nl
prefLabel
Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@en
Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@nl
P2860
P50
P356
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Key roles for freshwater Actinobacteria revealed by deep metagenomic sequencing.
@en
P2093
Antonio Picazo
P2860
P304
P356
10.1111/MEC.12985
P577
2014-11-21T00:00:00Z