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Nitrification inhibitors effectively target N2 O-producing Nitrosospira spp. in tropical soil.
Cassman, Noriko A; Soares, Johnny R; Pijl, Agata; Lourenço, Késia S; van Veen, Johannes A; Cantarella, Heitor; Kuramae, Eiko E.
  • Cassman NA; Department of Microbial Ecology, Netherlands Institute for Ecology NIOO-KNAW, Wageningen, Netherlands.
  • Soares JR; Department of Microbial Ecology, Netherlands Institute for Ecology NIOO-KNAW, Wageningen, Netherlands.
  • Pijl A; Soil Sciences and Fertility, Soil and Environmental Resources Center, Agronomic Institute of Campinas, P.O. Box 28, 13012-970, Campinas, SP, Brazil.
  • Lourenço KS; Department of Microbial Ecology, Netherlands Institute for Ecology NIOO-KNAW, Wageningen, Netherlands.
  • van Veen JA; Department of Microbial Ecology, Netherlands Institute for Ecology NIOO-KNAW, Wageningen, Netherlands.
  • Cantarella H; Soil Sciences and Fertility, Soil and Environmental Resources Center, Agronomic Institute of Campinas, P.O. Box 28, 13012-970, Campinas, SP, Brazil.
  • Kuramae EE; Department of Microbial Ecology, Netherlands Institute for Ecology NIOO-KNAW, Wageningen, Netherlands.
Environ Microbiol ; 21(4): 1241-1254, 2019 04.
Article en En | MEDLINE | ID: mdl-30735001
The nitrification inhibitors (NIs) 3,4-dimethylpyrazole (DMPP) and dicyandiamide (DCD) can effectively reduce N2 O emissions; however, which species are targeted and the effect of these NIs on the microbial nitrifier community is still unclear. Here, we identified the ammonia oxidizing bacteria (AOB) species linked to N2 O emissions and evaluated the effects of urea and urea with DCD and DMPP on the nitrifying community in a 258 day field experiment under sugarcane. Using an amoA AOB amplicon sequencing approach and mining a previous dataset of 16S rRNA sequences, we characterized the most likely N2 O-producing AOB as a Nitrosospira spp. and identified Nitrosospira (AOB), Nitrososphaera (archaeal ammonia oxidizer) and Nitrospira (nitrite-oxidizer) as the most abundant, present nitrifiers. The fertilizer treatments had no effect on the alpha and beta diversities of the AOB communities. Interestingly, we found three clusters of co-varying variables with nitrifier operational taxonomic units (OTUs): the N2 O-producing AOB Nitrosospira with N2 O, NO3 - , NH4 + , water-filled pore space (WFPS) and pH; AOA Nitrososphaera with NO3 - , NH4 + and pH; and AOA Nitrososphaera and NOB Nitrospira with NH4 + , which suggests different drivers. These results support the co-occurrence of non-N2 O-producing Nitrososphaera and Nitrospira in the unfertilized soils and the promotion of N2 O-producing Nitrosospira under urea fertilization. Further, we suggest that DMPP is a more effective NI than DCD in tropical soil under sugarcane.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Microbiología del Suelo / Archaea / Nitrosomonadaceae / Guanidinas / Óxido Nitroso Tipo de estudio: Prognostic_studies Idioma: En Año: 2019 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Microbiología del Suelo / Archaea / Nitrosomonadaceae / Guanidinas / Óxido Nitroso Tipo de estudio: Prognostic_studies Idioma: En Año: 2019 Tipo del documento: Article