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Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment

Denitrifying bacteria produce and utilize nitrous oxide (N(2)O), a potent greenhouse gas. However, there is little information on how organic fertilization treatments affect the denitrifying communities and N(2)O emissions in the semi-arid Loess Plateau. Here, we evaluated how the denitrifying commu...

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Autores principales: Fudjoe, Setor Kwami, Li, Lingling, Jiang, Yuji, Alhassan, Abdul-Rauf Malimanga, Xie, Junhong, Anwar, Sumera, Wang, Linlin, Xie, Lihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9428159/
https://www.ncbi.nlm.nih.gov/pubmed/36060775
http://dx.doi.org/10.3389/fmicb.2022.905157
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author Fudjoe, Setor Kwami
Li, Lingling
Jiang, Yuji
Alhassan, Abdul-Rauf Malimanga
Xie, Junhong
Anwar, Sumera
Wang, Linlin
Xie, Lihua
author_facet Fudjoe, Setor Kwami
Li, Lingling
Jiang, Yuji
Alhassan, Abdul-Rauf Malimanga
Xie, Junhong
Anwar, Sumera
Wang, Linlin
Xie, Lihua
author_sort Fudjoe, Setor Kwami
collection PubMed
description Denitrifying bacteria produce and utilize nitrous oxide (N(2)O), a potent greenhouse gas. However, there is little information on how organic fertilization treatments affect the denitrifying communities and N(2)O emissions in the semi-arid Loess Plateau. Here, we evaluated how the denitrifying communities are responsible for potential denitrification activity (PDA) and N(2)O emissions. A field experiment was conducted with five fertilization treatments, including no fertilization (CK), mineral fertilizer (MF), mineral fertilizer plus commercial organic fertilizer (MOF), commercial organic fertilizer (OFP), and maize straw (MSP). Our result showed that soil pH, soil organic carbon (SOC), and dissolved organic nitrogen (DON) were significantly increased under MSP treatment compared to MF treatment, while nitrate nitrogen (NO(3)(−)−N) followed the opposite trend. Organic fertilization treatments (MOF, OFP, and MSP treatments) significantly increased the abundance and diversity of nirS- and nosZ-harboring denitrifiers, and modified the community structure compared to CK treatment. The identified potential keystone taxa within the denitrifying bacterial networks belonged to the distinct genera. Denitrification potentials were significantly positively correlated with the abundance of nirS-harboring denitrifiers, rather than that of nirK- and nosZ-harboring denitrifiers. Random forest modeling and structural equation modeling consistently determined that the abundance, community composition, and network module I of nirS-harboring denitrifiers may contribute significantly to PDA and N(2)O emissions. Collectively, our findings highlight the ecological importance of the denitrifying communities in mediating denitrification potentials and the stimulatory impact of organic fertilization treatments on nitrogen dynamics in the semi-arid Loess Plateau.
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spelling pubmed-94281592022-09-01 Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment Fudjoe, Setor Kwami Li, Lingling Jiang, Yuji Alhassan, Abdul-Rauf Malimanga Xie, Junhong Anwar, Sumera Wang, Linlin Xie, Lihua Front Microbiol Microbiology Denitrifying bacteria produce and utilize nitrous oxide (N(2)O), a potent greenhouse gas. However, there is little information on how organic fertilization treatments affect the denitrifying communities and N(2)O emissions in the semi-arid Loess Plateau. Here, we evaluated how the denitrifying communities are responsible for potential denitrification activity (PDA) and N(2)O emissions. A field experiment was conducted with five fertilization treatments, including no fertilization (CK), mineral fertilizer (MF), mineral fertilizer plus commercial organic fertilizer (MOF), commercial organic fertilizer (OFP), and maize straw (MSP). Our result showed that soil pH, soil organic carbon (SOC), and dissolved organic nitrogen (DON) were significantly increased under MSP treatment compared to MF treatment, while nitrate nitrogen (NO(3)(−)−N) followed the opposite trend. Organic fertilization treatments (MOF, OFP, and MSP treatments) significantly increased the abundance and diversity of nirS- and nosZ-harboring denitrifiers, and modified the community structure compared to CK treatment. The identified potential keystone taxa within the denitrifying bacterial networks belonged to the distinct genera. Denitrification potentials were significantly positively correlated with the abundance of nirS-harboring denitrifiers, rather than that of nirK- and nosZ-harboring denitrifiers. Random forest modeling and structural equation modeling consistently determined that the abundance, community composition, and network module I of nirS-harboring denitrifiers may contribute significantly to PDA and N(2)O emissions. Collectively, our findings highlight the ecological importance of the denitrifying communities in mediating denitrification potentials and the stimulatory impact of organic fertilization treatments on nitrogen dynamics in the semi-arid Loess Plateau. Frontiers Media S.A. 2022-08-17 /pmc/articles/PMC9428159/ /pubmed/36060775 http://dx.doi.org/10.3389/fmicb.2022.905157 Text en Copyright © 2022 Fudjoe, Li, Jiang, Alhassan, Xie, Anwar, Wang and Xie. 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
Fudjoe, Setor Kwami
Li, Lingling
Jiang, Yuji
Alhassan, Abdul-Rauf Malimanga
Xie, Junhong
Anwar, Sumera
Wang, Linlin
Xie, Lihua
Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title_full Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title_fullStr Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title_full_unstemmed Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title_short Impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
title_sort impact of soil amendments on nitrous oxide emissions and the associated denitrifying communities in a semi-arid environment
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9428159/
https://www.ncbi.nlm.nih.gov/pubmed/36060775
http://dx.doi.org/10.3389/fmicb.2022.905157
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