Cargando…

The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota

Dicyandiamide (DCD) and nitrapyrin (NP) are nitrification inhibitors (NIs) used in agriculture for over 40 years. Recently, ethoxyquin (EQ) was proposed as a novel potential NI, acting through its derivative quinone imine (QI). Still, the specific activity of these NIs on the different groups of amm...

Descripción completa

Detalles Bibliográficos
Autores principales: Papadopoulou, Evangelia S., Bachtsevani, Eleftheria, Papazlatani, Christina V., Rousidou, Constantina, Brouziotis, Antonios, Lampronikou, Eleni, Tsiknia, Myrto, Vasileiadis, Sotirios, Ipsilantis, Ioannis, Menkissoglu-Spiroudi, Urania, Ehaliotis, Constantinos, Philippot, Laurent, Nicol, Graeme W., Karpouzas, Dimitrios G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431271/
https://www.ncbi.nlm.nih.gov/pubmed/35856708
http://dx.doi.org/10.1128/spectrum.02403-21
_version_ 1784780007756791808
author Papadopoulou, Evangelia S.
Bachtsevani, Eleftheria
Papazlatani, Christina V.
Rousidou, Constantina
Brouziotis, Antonios
Lampronikou, Eleni
Tsiknia, Myrto
Vasileiadis, Sotirios
Ipsilantis, Ioannis
Menkissoglu-Spiroudi, Urania
Ehaliotis, Constantinos
Philippot, Laurent
Nicol, Graeme W.
Karpouzas, Dimitrios G.
author_facet Papadopoulou, Evangelia S.
Bachtsevani, Eleftheria
Papazlatani, Christina V.
Rousidou, Constantina
Brouziotis, Antonios
Lampronikou, Eleni
Tsiknia, Myrto
Vasileiadis, Sotirios
Ipsilantis, Ioannis
Menkissoglu-Spiroudi, Urania
Ehaliotis, Constantinos
Philippot, Laurent
Nicol, Graeme W.
Karpouzas, Dimitrios G.
author_sort Papadopoulou, Evangelia S.
collection PubMed
description Dicyandiamide (DCD) and nitrapyrin (NP) are nitrification inhibitors (NIs) used in agriculture for over 40 years. Recently, ethoxyquin (EQ) was proposed as a novel potential NI, acting through its derivative quinone imine (QI). Still, the specific activity of these NIs on the different groups of ammonia-oxidizing microorganisms (AOM), and mostly their effects on other soil microbiota remain unknown. We determined the impact of QI, and comparatively of DCD and NP, applied at two doses (regular versus high), on the function, diversity, and dynamics of target (AOM), functionally associated (nitrite-oxidizing bacteria-NOB), and off-target prokaryotic and fungal communities in two soils mainly differing in pH (5.4 versus 7.9). QI was equally effective to DCD but more effective than NP in inhibiting nitrification in the acidic soil, while in the alkaline soil QI was less efficient than DCD and NP. This was attributed to the higher activity of QI toward AOA prevailing in the acidic soil. All NIs induced significant effects on the composition of the AOB community in both soils, unlike AOA, which were less responsive. Beyond on-target effects, we noted an inhibitory effect of all NIs on the abundance of NOB in the alkaline soil, with Nitrobacter being more sensitive than Nitrospira. QI, unlike the other NIs, induced significant changes in the composition of the bacterial and fungal communities in both soils. Our findings have serious implications for the efficiency and future use of NIs on agriculture and provide unprecedented evidence for the potential off-target effects of NIs on soil microbiota. IMPORTANCE NIs could improve N use efficiency and decelerate N cycling. Still, we know little about their activity on the distinct AOM groups and about their effects on off-target soil microorganisms. Here, we studied the behavior of a new potent NI, QI, compared to established NIs. We show that (i) the variable efficacy of NIs across soils with different pH reflects differences in the inherent specific activity of the NIs to AOA and AOB; (ii) beyond AOM, NIs exhibit negative effects on other nitrifiers, like NOB; (iii) QI was the sole NI that significantly affected prokaryotic and fungal diversity. Our findings (i) highlight the need for novel NI strategies that consider the variable sensitivity of AOM groups to the different NIs (ii) identify QI as a potent AOA inhibitor, and (iii) stress the need for monitoring NIs’ impact on off-target soil microorganisms to ensure sustainable N fertilizers use and soil ecosystem functioning.
format Online
Article
Text
id pubmed-9431271
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-94312712022-09-01 The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota Papadopoulou, Evangelia S. Bachtsevani, Eleftheria Papazlatani, Christina V. Rousidou, Constantina Brouziotis, Antonios Lampronikou, Eleni Tsiknia, Myrto Vasileiadis, Sotirios Ipsilantis, Ioannis Menkissoglu-Spiroudi, Urania Ehaliotis, Constantinos Philippot, Laurent Nicol, Graeme W. Karpouzas, Dimitrios G. Microbiol Spectr Research Article Dicyandiamide (DCD) and nitrapyrin (NP) are nitrification inhibitors (NIs) used in agriculture for over 40 years. Recently, ethoxyquin (EQ) was proposed as a novel potential NI, acting through its derivative quinone imine (QI). Still, the specific activity of these NIs on the different groups of ammonia-oxidizing microorganisms (AOM), and mostly their effects on other soil microbiota remain unknown. We determined the impact of QI, and comparatively of DCD and NP, applied at two doses (regular versus high), on the function, diversity, and dynamics of target (AOM), functionally associated (nitrite-oxidizing bacteria-NOB), and off-target prokaryotic and fungal communities in two soils mainly differing in pH (5.4 versus 7.9). QI was equally effective to DCD but more effective than NP in inhibiting nitrification in the acidic soil, while in the alkaline soil QI was less efficient than DCD and NP. This was attributed to the higher activity of QI toward AOA prevailing in the acidic soil. All NIs induced significant effects on the composition of the AOB community in both soils, unlike AOA, which were less responsive. Beyond on-target effects, we noted an inhibitory effect of all NIs on the abundance of NOB in the alkaline soil, with Nitrobacter being more sensitive than Nitrospira. QI, unlike the other NIs, induced significant changes in the composition of the bacterial and fungal communities in both soils. Our findings have serious implications for the efficiency and future use of NIs on agriculture and provide unprecedented evidence for the potential off-target effects of NIs on soil microbiota. IMPORTANCE NIs could improve N use efficiency and decelerate N cycling. Still, we know little about their activity on the distinct AOM groups and about their effects on off-target soil microorganisms. Here, we studied the behavior of a new potent NI, QI, compared to established NIs. We show that (i) the variable efficacy of NIs across soils with different pH reflects differences in the inherent specific activity of the NIs to AOA and AOB; (ii) beyond AOM, NIs exhibit negative effects on other nitrifiers, like NOB; (iii) QI was the sole NI that significantly affected prokaryotic and fungal diversity. Our findings (i) highlight the need for novel NI strategies that consider the variable sensitivity of AOM groups to the different NIs (ii) identify QI as a potent AOA inhibitor, and (iii) stress the need for monitoring NIs’ impact on off-target soil microorganisms to ensure sustainable N fertilizers use and soil ecosystem functioning. American Society for Microbiology 2022-07-20 /pmc/articles/PMC9431271/ /pubmed/35856708 http://dx.doi.org/10.1128/spectrum.02403-21 Text en Copyright © 2022 Papadopoulou et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Papadopoulou, Evangelia S.
Bachtsevani, Eleftheria
Papazlatani, Christina V.
Rousidou, Constantina
Brouziotis, Antonios
Lampronikou, Eleni
Tsiknia, Myrto
Vasileiadis, Sotirios
Ipsilantis, Ioannis
Menkissoglu-Spiroudi, Urania
Ehaliotis, Constantinos
Philippot, Laurent
Nicol, Graeme W.
Karpouzas, Dimitrios G.
The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title_full The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title_fullStr The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title_full_unstemmed The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title_short The Effects of Quinone Imine, a New Potent Nitrification Inhibitor, Dicyandiamide, and Nitrapyrin on Target and Off-Target Soil Microbiota
title_sort effects of quinone imine, a new potent nitrification inhibitor, dicyandiamide, and nitrapyrin on target and off-target soil microbiota
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431271/
https://www.ncbi.nlm.nih.gov/pubmed/35856708
http://dx.doi.org/10.1128/spectrum.02403-21
work_keys_str_mv AT papadopoulouevangelias theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT bachtsevanieleftheria theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT papazlatanichristinav theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT rousidouconstantina theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT brouziotisantonios theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT lampronikoueleni theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT tsikniamyrto theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT vasileiadissotirios theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT ipsilantisioannis theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT menkissogluspiroudiurania theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT ehaliotisconstantinos theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT philippotlaurent theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT nicolgraemew theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT karpouzasdimitriosg theeffectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT papadopoulouevangelias effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT bachtsevanieleftheria effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT papazlatanichristinav effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT rousidouconstantina effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT brouziotisantonios effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT lampronikoueleni effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT tsikniamyrto effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT vasileiadissotirios effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT ipsilantisioannis effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT menkissogluspiroudiurania effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT ehaliotisconstantinos effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT philippotlaurent effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT nicolgraemew effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota
AT karpouzasdimitriosg effectsofquinoneimineanewpotentnitrificationinhibitordicyandiamideandnitrapyrinontargetandofftargetsoilmicrobiota