KnowraMetagenomicsLinked fromLinked fromThe 32 pages that link to Metagenomics, each with the reason it gives.All 32Broader topic 1Related 28Compared with 3PhylogeneticsRelated: Phylogenetic placement can identify organisms in samples that are difficult to culture.Molecular phylogeneticsRelated: Environmental sequence data can place uncultured organisms into evolutionary trees.Environmental DNARelated: eDNA analysis is one way to examine DNA from an entire environmental mixture.DNA sequencingRelated: Sequencing can identify organisms and genes in environmental samples without isolating each species.MicrobiomeRelated: It reveals the collective genes that help characterize a microbiome.16S ribosomal RNARelated: It offers a broader alternative that can identify microbes without targeting the 16S gene.Ribosomal RNARelated: Ribosomal RNA gene sequencing can survey microbes in samples without culturing them.Bacterial taxonomyRelated: It reveals bacterial diversity that cannot be captured by culturing isolates alone.Microbial ecologyRelated: It reveals community membership and functional potential without first culturing organisms.BioinformaticsRelated: Sequence analysis helps characterize microbes that are difficult to culture.Next-generation sequencingRelated: Parallel sequencing can characterize microbes without first culturing them individually.PhylogenomicsRelated: Environmental genomes extend phylogenomic analysis to organisms difficult to culture.Soil microbiomeRelated: Soil metagenomes reveal microbial genes without requiring organisms to be cultured.Species complexRelated: It can uncover poorly sampled microbial diversity that complicates species boundaries.Soil microbiologyRelated: It reveals soil community members and genes that culture-based methods cannot readily detect.Bacterial cultureCompared with: It can characterize communities that culture conditions fail to recover.Human microbiomeRelated: Makes it possible to profile microbial genes without first growing each organism in culture.MicrobiologyBroader topic: It reveals community members that cannot readily be grown or individually isolated.PaleogenomicsCompared with: Both analyze complex DNA mixtures, but paleogenomics emphasizes ancient material and its historical context.Host rangeRelated: Metagenomics can reveal pathogen sequences in hosts that have not been tested by isolation.Microbial dark matterRelated: Sequencing mixed samples exposes microbial genomes without isolating their organisms.Asgard archaeaRelated: Most Asgard lineages were first recognized through environmental DNA and reconstructed genomes.Environmental microbiologyRelated: It detects community members and their potential functions without requiring cultivation.Molecular epidemiologyRelated: It can detect pathogen sequences without first isolating or culturing a single organism.Microbial metabolismRelated: It reveals metabolic potential without requiring microbes to grow in culture.Microbiological cultureCompared with: Sequencing mixed samples can reveal microbial diversity without isolating each organism in culture.BacteroidesRelated: Metagenomic surveys commonly track Bacteroides to characterize gut-community composition and function.SulfolobusRelated: Environmental surveys identify Sulfolobus populations and their viruses without requiring cultivation.AcidobacteriotaRelated: It helps characterize acidobacterial lineages that are difficult to culture.Bioinformatics educationRelated: Complex mixed-community data expose learners to distinctive challenges in classification and interpretation.Sequence analysis (bioinformatics)Related: Sequence classification can identify organisms and genes in mixed microbial communities.ThermoproteatiRelated: It detects Thermoproteati lineages that have not been grown in laboratory culture.
KnowraMetagenomicsLinked fromLinked fromThe 32 pages that link to Metagenomics, each with the reason it gives.All 32Broader topic 1Related 28Compared with 3PhylogeneticsRelated: Phylogenetic placement can identify organisms in samples that are difficult to culture.Molecular phylogeneticsRelated: Environmental sequence data can place uncultured organisms into evolutionary trees.Environmental DNARelated: eDNA analysis is one way to examine DNA from an entire environmental mixture.DNA sequencingRelated: Sequencing can identify organisms and genes in environmental samples without isolating each species.MicrobiomeRelated: It reveals the collective genes that help characterize a microbiome.16S ribosomal RNARelated: It offers a broader alternative that can identify microbes without targeting the 16S gene.Ribosomal RNARelated: Ribosomal RNA gene sequencing can survey microbes in samples without culturing them.Bacterial taxonomyRelated: It reveals bacterial diversity that cannot be captured by culturing isolates alone.Microbial ecologyRelated: It reveals community membership and functional potential without first culturing organisms.BioinformaticsRelated: Sequence analysis helps characterize microbes that are difficult to culture.Next-generation sequencingRelated: Parallel sequencing can characterize microbes without first culturing them individually.PhylogenomicsRelated: Environmental genomes extend phylogenomic analysis to organisms difficult to culture.Soil microbiomeRelated: Soil metagenomes reveal microbial genes without requiring organisms to be cultured.Species complexRelated: It can uncover poorly sampled microbial diversity that complicates species boundaries.Soil microbiologyRelated: It reveals soil community members and genes that culture-based methods cannot readily detect.Bacterial cultureCompared with: It can characterize communities that culture conditions fail to recover.Human microbiomeRelated: Makes it possible to profile microbial genes without first growing each organism in culture.MicrobiologyBroader topic: It reveals community members that cannot readily be grown or individually isolated.PaleogenomicsCompared with: Both analyze complex DNA mixtures, but paleogenomics emphasizes ancient material and its historical context.Host rangeRelated: Metagenomics can reveal pathogen sequences in hosts that have not been tested by isolation.Microbial dark matterRelated: Sequencing mixed samples exposes microbial genomes without isolating their organisms.Asgard archaeaRelated: Most Asgard lineages were first recognized through environmental DNA and reconstructed genomes.Environmental microbiologyRelated: It detects community members and their potential functions without requiring cultivation.Molecular epidemiologyRelated: It can detect pathogen sequences without first isolating or culturing a single organism.Microbial metabolismRelated: It reveals metabolic potential without requiring microbes to grow in culture.Microbiological cultureCompared with: Sequencing mixed samples can reveal microbial diversity without isolating each organism in culture.BacteroidesRelated: Metagenomic surveys commonly track Bacteroides to characterize gut-community composition and function.SulfolobusRelated: Environmental surveys identify Sulfolobus populations and their viruses without requiring cultivation.AcidobacteriotaRelated: It helps characterize acidobacterial lineages that are difficult to culture.Bioinformatics educationRelated: Complex mixed-community data expose learners to distinctive challenges in classification and interpretation.Sequence analysis (bioinformatics)Related: Sequence classification can identify organisms and genes in mixed microbial communities.ThermoproteatiRelated: It detects Thermoproteati lineages that have not been grown in laboratory culture.