Soil biochar amendment affects the diversity of nosZ transcripts: Implications for N2O formation
Microbial nitrogen transformation processes such as denitrification represent major sources of the potent greenhouse gas nitrous oxide (N 2 O). Soil biochar amendment has been shown to significantly decrease N 2 O emissions in various soils. However, the effect of biochar on the structure and functi...
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Veröffentlicht in: | Scientific reports 2017-06, Vol.7 (1), p.1-14, Article 3338 |
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Sprache: | eng |
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Zusammenfassung: | Microbial nitrogen transformation processes such as denitrification represent major sources of the potent greenhouse gas nitrous oxide (N
2
O). Soil biochar amendment has been shown to significantly decrease N
2
O emissions in various soils. However, the effect of biochar on the structure and function of microbial communities that actively perform nitrogen redox transformations has not been studied in detail yet. To analyse the community composition of actively denitrifying and N
2
O-reducing microbial communities, we collected RNA samples at different time points from a soil microcosm experiment conducted under denitrifying conditions and performed Illumina amplicon sequencing targeting
nirK
, typical
nosZ
and atypical
nosZ
mRNA transcripts. Within 10 days, biochar significantly increased the diversity of
nirK
and typical
nosZ
transcripts and resulted in taxonomic shifts among the typical
nosZ
-expressing microbial community. Furthermore, biochar addition led to a significant increase in transcript production among microbial species that are specialized on direct N
2
O reduction from the environment. Our results point towards a potential coupling of biochar-induced N
2
O emission reduction and an increase in microbial N
2
O reduction activity among specific groups of typical and atypical N
2
O reducers. However, experiments with other soils and biochars will be required to verify the transferability of these findings to other soil-biochar systems. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-017-03282-y |