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Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations

The recent discovery of comammox Nitrospira, a complete ammonia oxidizer, capable of completing the nitrification on their own has presented tremendous challenges to our understanding of the nitrification process. There are two divergent clades of comammox Nitrospira, Clade A and B. However, their p...

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Autores principales: Hsu, Pei-Chun (Lisa), Di, Hong J., Cameron, Keith, Podolyan, Andriy, Chau, Henry, Luo, Jiafa, Miller, Blair, Carrick, Sam, Johnstone, Paul, Ferguson, Scott, Wei, Wenhua, Shen, Jupei, Zhang, Limei, Liu, Hongbin, Zhao, Tongke, Wei, Wenxue, Ding, Weixin, Pan, Hong, Liu, Yimeng, Li, Bowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9791190/
https://www.ncbi.nlm.nih.gov/pubmed/36578577
http://dx.doi.org/10.3389/fmicb.2022.1048735
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author Hsu, Pei-Chun (Lisa)
Di, Hong J.
Cameron, Keith
Podolyan, Andriy
Chau, Henry
Luo, Jiafa
Miller, Blair
Carrick, Sam
Johnstone, Paul
Ferguson, Scott
Wei, Wenhua
Shen, Jupei
Zhang, Limei
Liu, Hongbin
Zhao, Tongke
Wei, Wenxue
Ding, Weixin
Pan, Hong
Liu, Yimeng
Li, Bowen
author_facet Hsu, Pei-Chun (Lisa)
Di, Hong J.
Cameron, Keith
Podolyan, Andriy
Chau, Henry
Luo, Jiafa
Miller, Blair
Carrick, Sam
Johnstone, Paul
Ferguson, Scott
Wei, Wenhua
Shen, Jupei
Zhang, Limei
Liu, Hongbin
Zhao, Tongke
Wei, Wenxue
Ding, Weixin
Pan, Hong
Liu, Yimeng
Li, Bowen
author_sort Hsu, Pei-Chun (Lisa)
collection PubMed
description The recent discovery of comammox Nitrospira, a complete ammonia oxidizer, capable of completing the nitrification on their own has presented tremendous challenges to our understanding of the nitrification process. There are two divergent clades of comammox Nitrospira, Clade A and B. However, their population abundance, community structure and role in ammonia and nitrite oxidation are poorly understood. We conducted a 94-day microcosm study using a grazed dairy pasture soil amended with urea fertilizers, synthetic cow urine, and the nitrification inhibitor, dicyandiamide (DCD), to investigate the growth and community structure of comammox Nitrospira spp. We discovered that comammox Nitrospira Clade B was two orders of magnitude more abundant than Clade A in this fertile dairy pasture soil and the most abundant subcluster was a distinctive phylogenetic uncultured subcluster Clade B2. We found that comammox Nitrospira Clade B might not play a major role in nitrite oxidation compared to the role of canonical Nitrospira nitrite-oxidizers, however, comammox Nitrospira Clade B is active in nitrification and the growth of comammox Nitrospira Clade B was inhibited by a high ammonium concentration (700 kg synthetic urine-N ha(–1)) and the nitrification inhibitor DCD. We concluded that comammox Nitrospira Clade B: (1) was the most abundant comammox in the dairy pasture soil; (2) had a low tolerance to ammonium and can be inhibited by DCD; and (3) was not the dominant nitrite-oxidizer in the soil. This is the first study discovering a new subcluster of comammox Nitrospira Clade B2 from an agricultural soil.
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spelling pubmed-97911902022-12-27 Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations Hsu, Pei-Chun (Lisa) Di, Hong J. Cameron, Keith Podolyan, Andriy Chau, Henry Luo, Jiafa Miller, Blair Carrick, Sam Johnstone, Paul Ferguson, Scott Wei, Wenhua Shen, Jupei Zhang, Limei Liu, Hongbin Zhao, Tongke Wei, Wenxue Ding, Weixin Pan, Hong Liu, Yimeng Li, Bowen Front Microbiol Microbiology The recent discovery of comammox Nitrospira, a complete ammonia oxidizer, capable of completing the nitrification on their own has presented tremendous challenges to our understanding of the nitrification process. There are two divergent clades of comammox Nitrospira, Clade A and B. However, their population abundance, community structure and role in ammonia and nitrite oxidation are poorly understood. We conducted a 94-day microcosm study using a grazed dairy pasture soil amended with urea fertilizers, synthetic cow urine, and the nitrification inhibitor, dicyandiamide (DCD), to investigate the growth and community structure of comammox Nitrospira spp. We discovered that comammox Nitrospira Clade B was two orders of magnitude more abundant than Clade A in this fertile dairy pasture soil and the most abundant subcluster was a distinctive phylogenetic uncultured subcluster Clade B2. We found that comammox Nitrospira Clade B might not play a major role in nitrite oxidation compared to the role of canonical Nitrospira nitrite-oxidizers, however, comammox Nitrospira Clade B is active in nitrification and the growth of comammox Nitrospira Clade B was inhibited by a high ammonium concentration (700 kg synthetic urine-N ha(–1)) and the nitrification inhibitor DCD. We concluded that comammox Nitrospira Clade B: (1) was the most abundant comammox in the dairy pasture soil; (2) had a low tolerance to ammonium and can be inhibited by DCD; and (3) was not the dominant nitrite-oxidizer in the soil. This is the first study discovering a new subcluster of comammox Nitrospira Clade B2 from an agricultural soil. Frontiers Media S.A. 2022-12-12 /pmc/articles/PMC9791190/ /pubmed/36578577 http://dx.doi.org/10.3389/fmicb.2022.1048735 Text en Copyright © 2022 Hsu, Di, Cameron, Podolyan, Chau, Luo, Miller, Carrick, Johnstone, Ferguson, Wei, Shen, Zhang, Liu, Zhao, Wei, Ding, Pan, Liu and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Hsu, Pei-Chun (Lisa)
Di, Hong J.
Cameron, Keith
Podolyan, Andriy
Chau, Henry
Luo, Jiafa
Miller, Blair
Carrick, Sam
Johnstone, Paul
Ferguson, Scott
Wei, Wenhua
Shen, Jupei
Zhang, Limei
Liu, Hongbin
Zhao, Tongke
Wei, Wenxue
Ding, Weixin
Pan, Hong
Liu, Yimeng
Li, Bowen
Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title_full Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title_fullStr Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title_full_unstemmed Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title_short Comammox Nitrospira Clade B is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
title_sort comammox nitrospira clade b is the most abundant complete ammonia oxidizer in a dairy pasture soil and inhibited by dicyandiamide and high ammonium concentrations
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9791190/
https://www.ncbi.nlm.nih.gov/pubmed/36578577
http://dx.doi.org/10.3389/fmicb.2022.1048735
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