Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system

ABSTRACT Marine ammonia oxidizers that oxidize ammonium to nitrite are abundant in polar waters, especially during the winter in the deeper mixed-layer of West Antarctic Peninsula (WAP) waters. However, the activity and abundance of ammonia-oxidizers during the summer in surface coastal Antarctic wa...

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Main Authors: Alcamán-Arias, María Estrella, Cifuentes-Anticevic, Jeronimo, Díez, Beatriz, Testa, Giovanni, Troncoso, Macarena, Bello, Estrella, Farías, Laura
Format: Dataset
Language:unknown
Published: Zenodo 2021
Subjects:
Online Access:https://dx.doi.org/10.5281/zenodo.4531449
https://zenodo.org/record/4531449
id ftdatacite:10.5281/zenodo.4531449
record_format openpolar
spelling ftdatacite:10.5281/zenodo.4531449 2023-05-15T13:30:52+02:00 Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system Alcamán-Arias, María Estrella Cifuentes-Anticevic, Jeronimo Díez, Beatriz Testa, Giovanni Troncoso, Macarena Bello, Estrella Farías, Laura 2021 https://dx.doi.org/10.5281/zenodo.4531449 https://zenodo.org/record/4531449 unknown Zenodo https://dx.doi.org/10.5281/zenodo.4531450 Open Access Creative Commons Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 info:eu-repo/semantics/openAccess CC-BY marine microbiology metagenome nitrogen cycle Antarctica Dataset dataset 2021 ftdatacite https://doi.org/10.5281/zenodo.4531449 https://doi.org/10.5281/zenodo.4531450 2022-02-09T12:38:11Z ABSTRACT Marine ammonia oxidizers that oxidize ammonium to nitrite are abundant in polar waters, especially during the winter in the deeper mixed-layer of West Antarctic Peninsula (WAP) waters. However, the activity and abundance of ammonia-oxidizers during the summer in surface coastal Antarctic waters remain unclear. In this study, the ammonia-oxidation rates, abundance, and identity of ammonia-oxidizing bacteria (AOB) and archaea (AOA) were evaluated in the marine surface layer (to 30 m depth) in Chile Bay (Greenwich Island, WAP) over three consecutive late-summer periods (2017, 2018 and 2019). Ammonia-oxidation rates of 68.31 nmol N L -1 d -1 (2018) and 37.28 nmol N L -1 d -1 (2019) were detected from illuminated 2 m seawater incubations. However, high ammonia-oxidation rates between 267.75 and 109.38 nmol N L -1 d -1 were obtained under the dark condition at 30 m in 2018 and 2019, respectively. During the late-summer sampling periods both stratifying and mixing events occurring in the water column over short timescales (February-March). Metagenomic analysis of seven nitrogen cycle modules revealed the presence of ammonia-oxidizers, such as the Archaea Nitrosopumilus and the Bacteria Nitrosomonas and Nitrosospira , with AOA often being more abundant than AOB. However, quantification of specific amo A gene transcripts showed number of AOB being two orders of magnitude higher than AOA, with Nitrosomonas representing the most transcriptionally active AOB in the surface waters. Additionally, Candidatus Nitrosopelagicus and Nitrosopumilus , phylogenetically related to surface members of the NP-ε and NP-γ clades respectively, were the predominant AOA. Our findings expand the known distribution of ammonium-oxidizers to the marine surface layer, exposing their potential ecological role in supporting the marine Antarctic system during the productive summer periods. Material and Methods Genomic identification of nitrification pathway. Proteins related to nitrification ( amo CA, hao ) and nitrite/nitrate reduction ( nir BD, nas A) were searched in the protein catalog from Chile Bay metagenomes using hmmsearch (hmmer.org) using the hidden Markov models (HMM) profiles detailed in supplementary Table S3. Nitrification enzyme orthologues were identified with Diamond (diamond blastp -e 1e-5 --id 80 --query-cover 70). The identified proteins were curated against the KEGG database using Blast-KOALA. The file contigs_enzymes_nit_cyc.fna contains the contigs in which we identified the proteins related to nitrification and nitrite/nitrate reduction. Dataset Antarc* Antarctic Antarctic Peninsula Antarctica Greenwich Island DataCite Metadata Store (German National Library of Science and Technology) Antarctic Antarctic Peninsula Greenwich Greenwich Island ENVELOPE(-59.783,-59.783,-62.517,-62.517)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
topic marine microbiology
metagenome
nitrogen cycle
Antarctica
spellingShingle marine microbiology
metagenome
nitrogen cycle
Antarctica
Alcamán-Arias, María Estrella
Cifuentes-Anticevic, Jeronimo
Díez, Beatriz
Testa, Giovanni
Troncoso, Macarena
Bello, Estrella
Farías, Laura
Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
topic_facet marine microbiology
metagenome
nitrogen cycle
Antarctica
description ABSTRACT Marine ammonia oxidizers that oxidize ammonium to nitrite are abundant in polar waters, especially during the winter in the deeper mixed-layer of West Antarctic Peninsula (WAP) waters. However, the activity and abundance of ammonia-oxidizers during the summer in surface coastal Antarctic waters remain unclear. In this study, the ammonia-oxidation rates, abundance, and identity of ammonia-oxidizing bacteria (AOB) and archaea (AOA) were evaluated in the marine surface layer (to 30 m depth) in Chile Bay (Greenwich Island, WAP) over three consecutive late-summer periods (2017, 2018 and 2019). Ammonia-oxidation rates of 68.31 nmol N L -1 d -1 (2018) and 37.28 nmol N L -1 d -1 (2019) were detected from illuminated 2 m seawater incubations. However, high ammonia-oxidation rates between 267.75 and 109.38 nmol N L -1 d -1 were obtained under the dark condition at 30 m in 2018 and 2019, respectively. During the late-summer sampling periods both stratifying and mixing events occurring in the water column over short timescales (February-March). Metagenomic analysis of seven nitrogen cycle modules revealed the presence of ammonia-oxidizers, such as the Archaea Nitrosopumilus and the Bacteria Nitrosomonas and Nitrosospira , with AOA often being more abundant than AOB. However, quantification of specific amo A gene transcripts showed number of AOB being two orders of magnitude higher than AOA, with Nitrosomonas representing the most transcriptionally active AOB in the surface waters. Additionally, Candidatus Nitrosopelagicus and Nitrosopumilus , phylogenetically related to surface members of the NP-ε and NP-γ clades respectively, were the predominant AOA. Our findings expand the known distribution of ammonium-oxidizers to the marine surface layer, exposing their potential ecological role in supporting the marine Antarctic system during the productive summer periods. Material and Methods Genomic identification of nitrification pathway. Proteins related to nitrification ( amo CA, hao ) and nitrite/nitrate reduction ( nir BD, nas A) were searched in the protein catalog from Chile Bay metagenomes using hmmsearch (hmmer.org) using the hidden Markov models (HMM) profiles detailed in supplementary Table S3. Nitrification enzyme orthologues were identified with Diamond (diamond blastp -e 1e-5 --id 80 --query-cover 70). The identified proteins were curated against the KEGG database using Blast-KOALA. The file contigs_enzymes_nit_cyc.fna contains the contigs in which we identified the proteins related to nitrification and nitrite/nitrate reduction.
format Dataset
author Alcamán-Arias, María Estrella
Cifuentes-Anticevic, Jeronimo
Díez, Beatriz
Testa, Giovanni
Troncoso, Macarena
Bello, Estrella
Farías, Laura
author_facet Alcamán-Arias, María Estrella
Cifuentes-Anticevic, Jeronimo
Díez, Beatriz
Testa, Giovanni
Troncoso, Macarena
Bello, Estrella
Farías, Laura
author_sort Alcamán-Arias, María Estrella
title Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
title_short Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
title_full Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
title_fullStr Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
title_full_unstemmed Surface ammonia-oxidizer abundance during the late summer in the West Antarctic coastal system
title_sort surface ammonia-oxidizer abundance during the late summer in the west antarctic coastal system
publisher Zenodo
publishDate 2021
url https://dx.doi.org/10.5281/zenodo.4531449
https://zenodo.org/record/4531449
long_lat ENVELOPE(-59.783,-59.783,-62.517,-62.517)
geographic Antarctic
Antarctic Peninsula
Greenwich
Greenwich Island
geographic_facet Antarctic
Antarctic Peninsula
Greenwich
Greenwich Island
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Greenwich Island
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
Greenwich Island
op_relation https://dx.doi.org/10.5281/zenodo.4531450
op_rights Open Access
Creative Commons Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
info:eu-repo/semantics/openAccess
op_rightsnorm CC-BY
op_doi https://doi.org/10.5281/zenodo.4531449
https://doi.org/10.5281/zenodo.4531450
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