Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf

To understand the relative influences of operational taxonomic units (OTUs) and amplicon sequence variants (ASVs) on patterns of marine microbial diversity and community composition, we examined bacterial diversity and community composition of seawater from 12 sites in the North Atlantic Ocean and C...

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Main Authors: Zak Kerrigan, Steven D’Hondt
Format: Dataset
Language:unknown
Published: 2022
Subjects:
Online Access:https://doi.org/10.3389/fmicb.2022.796758.s004
https://figshare.com/articles/dataset/Data_Sheet_4_Patterns_of_Relative_Bacterial_Richness_and_Community_Composition_in_Seawater_and_Marine_Sediment_Are_Robust_for_Both_Operational_Taxonomic_Units_and_Amplicon_Sequence_Variants_pdf/19129115
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spelling ftfrontimediafig:oai:figshare.com:article/19129115 2023-05-15T15:11:25+02:00 Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf Zak Kerrigan Steven D’Hondt 2022-02-07T04:31:12Z https://doi.org/10.3389/fmicb.2022.796758.s004 https://figshare.com/articles/dataset/Data_Sheet_4_Patterns_of_Relative_Bacterial_Richness_and_Community_Composition_in_Seawater_and_Marine_Sediment_Are_Robust_for_Both_Operational_Taxonomic_Units_and_Amplicon_Sequence_Variants_pdf/19129115 unknown doi:10.3389/fmicb.2022.796758.s004 https://figshare.com/articles/dataset/Data_Sheet_4_Patterns_of_Relative_Bacterial_Richness_and_Community_Composition_in_Seawater_and_Marine_Sediment_Are_Robust_for_Both_Operational_Taxonomic_Units_and_Amplicon_Sequence_Variants_pdf/19129115 CC BY 4.0 CC-BY Microbiology Microbial Genetics Microbial Ecology Mycology operational taxonomic unit amplicon sequence variant marine sediment marine water column tag sequencing bacteria Dataset 2022 ftfrontimediafig https://doi.org/10.3389/fmicb.2022.796758.s004 2022-02-10T00:05:24Z To understand the relative influences of operational taxonomic units (OTUs) and amplicon sequence variants (ASVs) on patterns of marine microbial diversity and community composition, we examined bacterial diversity and community composition of seawater from 12 sites in the North Atlantic Ocean and Canadian Arctic and sediment from two sites in the North Atlantic. For the seawater analyses, we included samples from three to six zones in the water column of each site. For the sediment analyses, we included over 20 sediment horizons at each of two sites. For all samples, we amplified the V4–V5 hypervariable region of the 16S ribosomal RNA (rRNA) gene. We analyzed each sample in two different ways: (i) by clustering its reads into 97%-similar OTUs and (ii) by assigning sequences to unique ASVs. OTU richness is much higher than ASV richness for every sample, but both OTUs and ASVs exhibit similar vertical patterns of relative diversity in both the water column and the sediment. Bacterial richness is highest just below the photic zone in the water column and at the seafloor in the sediment. For both OTUs and ASVs, richness estimates depend on the number of sequences analyzed. Both methods yield broadly similar community compositions for each sample at the taxonomic levels of phyla to families. While the two methods yield different richness values, broad-scale patterns of relative richness and community composition are similar with both methods. Dataset Arctic North Atlantic Frontiers: Figshare Arctic
institution Open Polar
collection Frontiers: Figshare
op_collection_id ftfrontimediafig
language unknown
topic Microbiology
Microbial Genetics
Microbial Ecology
Mycology
operational taxonomic unit
amplicon sequence variant
marine sediment
marine water column
tag sequencing
bacteria
spellingShingle Microbiology
Microbial Genetics
Microbial Ecology
Mycology
operational taxonomic unit
amplicon sequence variant
marine sediment
marine water column
tag sequencing
bacteria
Zak Kerrigan
Steven D’Hondt
Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
topic_facet Microbiology
Microbial Genetics
Microbial Ecology
Mycology
operational taxonomic unit
amplicon sequence variant
marine sediment
marine water column
tag sequencing
bacteria
description To understand the relative influences of operational taxonomic units (OTUs) and amplicon sequence variants (ASVs) on patterns of marine microbial diversity and community composition, we examined bacterial diversity and community composition of seawater from 12 sites in the North Atlantic Ocean and Canadian Arctic and sediment from two sites in the North Atlantic. For the seawater analyses, we included samples from three to six zones in the water column of each site. For the sediment analyses, we included over 20 sediment horizons at each of two sites. For all samples, we amplified the V4–V5 hypervariable region of the 16S ribosomal RNA (rRNA) gene. We analyzed each sample in two different ways: (i) by clustering its reads into 97%-similar OTUs and (ii) by assigning sequences to unique ASVs. OTU richness is much higher than ASV richness for every sample, but both OTUs and ASVs exhibit similar vertical patterns of relative diversity in both the water column and the sediment. Bacterial richness is highest just below the photic zone in the water column and at the seafloor in the sediment. For both OTUs and ASVs, richness estimates depend on the number of sequences analyzed. Both methods yield broadly similar community compositions for each sample at the taxonomic levels of phyla to families. While the two methods yield different richness values, broad-scale patterns of relative richness and community composition are similar with both methods.
format Dataset
author Zak Kerrigan
Steven D’Hondt
author_facet Zak Kerrigan
Steven D’Hondt
author_sort Zak Kerrigan
title Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
title_short Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
title_full Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
title_fullStr Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
title_full_unstemmed Data_Sheet_4_Patterns of Relative Bacterial Richness and Community Composition in Seawater and Marine Sediment Are Robust for Both Operational Taxonomic Units and Amplicon Sequence Variants.pdf
title_sort data_sheet_4_patterns of relative bacterial richness and community composition in seawater and marine sediment are robust for both operational taxonomic units and amplicon sequence variants.pdf
publishDate 2022
url https://doi.org/10.3389/fmicb.2022.796758.s004
https://figshare.com/articles/dataset/Data_Sheet_4_Patterns_of_Relative_Bacterial_Richness_and_Community_Composition_in_Seawater_and_Marine_Sediment_Are_Robust_for_Both_Operational_Taxonomic_Units_and_Amplicon_Sequence_Variants_pdf/19129115
geographic Arctic
geographic_facet Arctic
genre Arctic
North Atlantic
genre_facet Arctic
North Atlantic
op_relation doi:10.3389/fmicb.2022.796758.s004
https://figshare.com/articles/dataset/Data_Sheet_4_Patterns_of_Relative_Bacterial_Richness_and_Community_Composition_in_Seawater_and_Marine_Sediment_Are_Robust_for_Both_Operational_Taxonomic_Units_and_Amplicon_Sequence_Variants_pdf/19129115
op_rights CC BY 4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.3389/fmicb.2022.796758.s004
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