Fig 11 -
Principal coordinate analysis of microbial communities by weighted Unifrac distances, with samples identified by habitat (collapsed palsa as yellow/orange/brown, bog as green, fen as blue), depth (shallow as square, deep as circle), and field (red outline) versus increasing time since collection/inc...
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ftsmithonian:oai:figshare.com:article/14119141 2023-05-15T17:54:26+02:00 Fig 11 - R. M. Wilson (10197022) A. A. Zayed (10197025) K. B. Crossen (10197028) B. Woodcroft (10197031) M. M. Tfaily (10197034) J. Emerson (10197037) N. Raab (4417750) S. B. Hodgkins (10197040) B. Verbeke (10197043) G. Tyson (10197046) P. Crill (10197049) S. Saleska (10197052) J. P. Chanton (2456635) V. I. Rich (10197055) 2021-02-25T18:57:12Z https://doi.org/10.1371/journal.pone.0245857.g011 unknown https://figshare.com/articles/figure/Fig_11_-/14119141 doi:10.1371/journal.pone.0245857.g011 CC BY 4.0 CC-BY Cell Biology Molecular Biology Biotechnology Evolutionary Biology Ecology Inorganic Chemistry Infectious Diseases Cardiology Environmental Sciences not elsewhere classified Chemical Sciences not elsewhere classified CH 4 production material geochemistry greenhouse gas exchange field results CO 2 understanding carbon cycling incubation scale geochemical processes CH 4 dynamics Image Figure 2021 ftsmithonian https://doi.org/10.1371/journal.pone.0245857.g011 2021-02-26T10:31:13Z Principal coordinate analysis of microbial communities by weighted Unifrac distances, with samples identified by habitat (collapsed palsa as yellow/orange/brown, bog as green, fen as blue), depth (shallow as square, deep as circle), and field (red outline) versus increasing time since collection/incubation (darker shades of each habitat color). Habitat-specific principal coordinates analysis of microbial communities by weighted Unifrac distances top: collapsed palsa middle: bog; bottom: fen). Still Image palsa Unknown |
institution |
Open Polar |
collection |
Unknown |
op_collection_id |
ftsmithonian |
language |
unknown |
topic |
Cell Biology Molecular Biology Biotechnology Evolutionary Biology Ecology Inorganic Chemistry Infectious Diseases Cardiology Environmental Sciences not elsewhere classified Chemical Sciences not elsewhere classified CH 4 production material geochemistry greenhouse gas exchange field results CO 2 understanding carbon cycling incubation scale geochemical processes CH 4 dynamics |
spellingShingle |
Cell Biology Molecular Biology Biotechnology Evolutionary Biology Ecology Inorganic Chemistry Infectious Diseases Cardiology Environmental Sciences not elsewhere classified Chemical Sciences not elsewhere classified CH 4 production material geochemistry greenhouse gas exchange field results CO 2 understanding carbon cycling incubation scale geochemical processes CH 4 dynamics R. M. Wilson (10197022) A. A. Zayed (10197025) K. B. Crossen (10197028) B. Woodcroft (10197031) M. M. Tfaily (10197034) J. Emerson (10197037) N. Raab (4417750) S. B. Hodgkins (10197040) B. Verbeke (10197043) G. Tyson (10197046) P. Crill (10197049) S. Saleska (10197052) J. P. Chanton (2456635) V. I. Rich (10197055) Fig 11 - |
topic_facet |
Cell Biology Molecular Biology Biotechnology Evolutionary Biology Ecology Inorganic Chemistry Infectious Diseases Cardiology Environmental Sciences not elsewhere classified Chemical Sciences not elsewhere classified CH 4 production material geochemistry greenhouse gas exchange field results CO 2 understanding carbon cycling incubation scale geochemical processes CH 4 dynamics |
description |
Principal coordinate analysis of microbial communities by weighted Unifrac distances, with samples identified by habitat (collapsed palsa as yellow/orange/brown, bog as green, fen as blue), depth (shallow as square, deep as circle), and field (red outline) versus increasing time since collection/incubation (darker shades of each habitat color). Habitat-specific principal coordinates analysis of microbial communities by weighted Unifrac distances top: collapsed palsa middle: bog; bottom: fen). |
format |
Still Image |
author |
R. M. Wilson (10197022) A. A. Zayed (10197025) K. B. Crossen (10197028) B. Woodcroft (10197031) M. M. Tfaily (10197034) J. Emerson (10197037) N. Raab (4417750) S. B. Hodgkins (10197040) B. Verbeke (10197043) G. Tyson (10197046) P. Crill (10197049) S. Saleska (10197052) J. P. Chanton (2456635) V. I. Rich (10197055) |
author_facet |
R. M. Wilson (10197022) A. A. Zayed (10197025) K. B. Crossen (10197028) B. Woodcroft (10197031) M. M. Tfaily (10197034) J. Emerson (10197037) N. Raab (4417750) S. B. Hodgkins (10197040) B. Verbeke (10197043) G. Tyson (10197046) P. Crill (10197049) S. Saleska (10197052) J. P. Chanton (2456635) V. I. Rich (10197055) |
author_sort |
R. M. Wilson (10197022) |
title |
Fig 11 - |
title_short |
Fig 11 - |
title_full |
Fig 11 - |
title_fullStr |
Fig 11 - |
title_full_unstemmed |
Fig 11 - |
title_sort |
fig 11 - |
publishDate |
2021 |
url |
https://doi.org/10.1371/journal.pone.0245857.g011 |
genre |
palsa |
genre_facet |
palsa |
op_relation |
https://figshare.com/articles/figure/Fig_11_-/14119141 doi:10.1371/journal.pone.0245857.g011 |
op_rights |
CC BY 4.0 |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1371/journal.pone.0245857.g011 |
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1766162196249706496 |