454 pyrosequencing to describe microbial eukaryotic community composition, diversity and relative abundance: a test for marine haptophytes.
about
Ignored sediment fungal populations in water supply reservoirs are revealed by quantitative PCR and 454 pyrosequencingMetagenome-based diversity analyses suggest a significant contribution of non-cyanobacterial lineages to carbonate precipitation in modern microbialitesAssessment of species diversity and distribution of an ancient diatom lineage using a DNA metabarcoding approach18S rRNA V9 metabarcoding for diet characterization: a critical evaluation with two sympatric zooplanktivorous fish species.Mining environmental high-throughput sequence data sets to identify divergent amplicon clusters for phylogenetic reconstruction and morphotype visualization.Haptophyte Diversity and Vertical Distribution Explored by 18S and 28S Ribosomal RNA Gene Metabarcoding and Scanning Electron MicroscopyMetabarcoding monitoring analysis: the pros and cons of using co-extracted environmental DNA and RNA data to assess offshore oil production impacts on benthic communitiesInvestigating microbial eukaryotic diversity from a global census: insights from a comparison of pyrotag and full-length sequences of 18S rRNA genesDeep-branching novel lineages and high diversity of haptophytes in the Skagerrak (Norway) uncovered by 454 pyrosequencingDeep-sequencing method for quantifying background abundances of symbiodinium types: exploring the rare symbiodinium biosphere in reef-building coralsCiliates and the rare biosphere: a review.Accurate multiplexing and filtering for high-throughput amplicon-sequencing.Comparing High-throughput Platforms for Sequencing the V4 Region of SSU-rDNA in Environmental Microbial Eukaryotic Diversity Surveys.Evidence for an active rare biosphere within freshwater protists community.Seasonal diversity and dynamics of haptophytes in the Skagerrak, Norway, explored by high-throughput sequencingResponse of rare, common and abundant bacterioplankton to anthropogenic perturbations in a Mediterranean coastal site.Bioinformatic Amplicon Read Processing Strategies Strongly Affect Eukaryotic Diversity and the Taxonomic Composition of Communities.Bacterial diversity of Drass, cold desert in Western Himalaya, and its comparison with Antarctic and Arctic.Divergence thresholds and divergent biodiversity estimates: can metabarcoding reliably describe zooplankton communities?Toward accurate molecular identification of species in complex environmental samples: testing the performance of sequence filtering and clustering methodsNext-Generation Sequencing of Aquatic Oligochaetes: Comparison of Experimental Communities.Analysis of rbcL sequences reveals the global biodiversity, community structure, and biogeographical pattern of thermoacidophilic red algae (Cyanidiales).Patterns and processes in microbial biogeography: do molecules and morphologies give the same answers?Environmental Sequencing Provides Reasonable Estimates of the Relative Abundance of Specific PicoeukaryotesSeasonal Dynamics of Haptophytes and dsDNA Algal Viruses Suggest Complex Virus-Host Relationship.NGS metabarcoding proves successful for quantitative assessment of symbiont abundance: the case of feather mites on birds.Placing environmental next-generation sequencing amplicons from microbial eukaryotes into a phylogenetic context.Impact of sequence processing and taxonomic classification approaches on eukaryotic community structure from environmental samples with emphasis on diatoms.Comparison of coastal phytoplankton composition estimated from the V4 and V9 regions of the 18S rRNA gene with a focus on photosynthetic groups and especially Chlorophyta.Seasonal and geographical distribution of near-surface small photosynthetic eukaryotes in the western North Pacific determined by pyrosequencing of 18S rDNA.
P2860
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P2860
454 pyrosequencing to describe microbial eukaryotic community composition, diversity and relative abundance: a test for marine haptophytes.
description
2013 nî lūn-bûn
@nan
2013 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2013 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
name
454 pyrosequencing to describe ...... a test for marine haptophytes.
@ast
454 pyrosequencing to describe ...... a test for marine haptophytes.
@en
454 pyrosequencing to describe ...... a test for marine haptophytes.
@nl
type
label
454 pyrosequencing to describe ...... a test for marine haptophytes.
@ast
454 pyrosequencing to describe ...... a test for marine haptophytes.
@en
454 pyrosequencing to describe ...... a test for marine haptophytes.
@nl
prefLabel
454 pyrosequencing to describe ...... a test for marine haptophytes.
@ast
454 pyrosequencing to describe ...... a test for marine haptophytes.
@en
454 pyrosequencing to describe ...... a test for marine haptophytes.
@nl
P2093
P2860
P1433
P1476
454 pyrosequencing to describe ...... a test for marine haptophytes.
@en
P2093
Colomban de Vargas
Elianne Egge
Lucie Bittner
Tom Andersen
P2860
P304
P356
10.1371/JOURNAL.PONE.0074371
P407
P577
2013-09-12T00:00:00Z