Nitrous oxide (N2O) emissions from arable soils are predominantly caused by denitrifying microbes, of which fungal denitrifiers are of particular interest, as fungi, in contrast to bacteria, terminate denitrification with N2O. Reduced tillage has been shown to increase gaseous nitrogen losses from soil, but knowledge of how varying tillage regimes and associated soil physical and chemical alterations affect fungal denitrifiers is limited. Based on results from a long-term (>40 years) tillage experiment, we show that non-inversion tillage resulted in increased potential denitrification activity in the upper soil layers, compared to annual or occasional (every 4-5 years) conventional inversion tillage. Using sequence-corrected abundance of th...
The coexistence of many N2O production pathways in soil hampers differentiation of microbial pathway...
Fungal denitrifiers play important roles in soil nitrogen cycling, but we have very limited knowledg...
Bacteria and fungi have been shown to produce nitrous oxide (N2O) during denitrification, but their ...
Nitrous oxide (N2O) emissions from arable soils are predominantly caused by denitrifying microbes, o...
Denitrification is the dominant source of nitrous oxide (N2O) from terrestrial ecosystems, a potent ...
Fungal denitrifiers play important roles in soil nitrogen cycling, but we have very limited knowledg...
The microbial process of denitrification is the primary source of the greenhouse gas nitrous oxide (...
Factors influencing production of greenhouse gases nitrous oxide (N2O) and nitrogen (N2) in arable s...
Nitrous oxide (N2O) is a potent greenhouse gas mainly emitted from agriculture. In the biological pr...
Bacterial denitrification results in the loss of fertilizer nitrogen and greenhouse gas emissions as...
Nitrous oxide (N2O) is an atmospheric constituent implicated in climate warming and stratospheric oz...
Current studies about nitrous oxide (N2O) emissions from legume crops have raised considerable doubt...
Fungi may play an important role in the production of the greenhouse gas nitrous oxide (N2O). Bipola...
Denitrification allows sustained respiratory metabolism during periods of anoxia, an advantage in so...
Nitrous oxide (N2O) is an important greenhouse gas that accounts for 6% of total global forcing. Soi...
The coexistence of many N2O production pathways in soil hampers differentiation of microbial pathway...
Fungal denitrifiers play important roles in soil nitrogen cycling, but we have very limited knowledg...
Bacteria and fungi have been shown to produce nitrous oxide (N2O) during denitrification, but their ...
Nitrous oxide (N2O) emissions from arable soils are predominantly caused by denitrifying microbes, o...
Denitrification is the dominant source of nitrous oxide (N2O) from terrestrial ecosystems, a potent ...
Fungal denitrifiers play important roles in soil nitrogen cycling, but we have very limited knowledg...
The microbial process of denitrification is the primary source of the greenhouse gas nitrous oxide (...
Factors influencing production of greenhouse gases nitrous oxide (N2O) and nitrogen (N2) in arable s...
Nitrous oxide (N2O) is a potent greenhouse gas mainly emitted from agriculture. In the biological pr...
Bacterial denitrification results in the loss of fertilizer nitrogen and greenhouse gas emissions as...
Nitrous oxide (N2O) is an atmospheric constituent implicated in climate warming and stratospheric oz...
Current studies about nitrous oxide (N2O) emissions from legume crops have raised considerable doubt...
Fungi may play an important role in the production of the greenhouse gas nitrous oxide (N2O). Bipola...
Denitrification allows sustained respiratory metabolism during periods of anoxia, an advantage in so...
Nitrous oxide (N2O) is an important greenhouse gas that accounts for 6% of total global forcing. Soi...
The coexistence of many N2O production pathways in soil hampers differentiation of microbial pathway...
Fungal denitrifiers play important roles in soil nitrogen cycling, but we have very limited knowledg...
Bacteria and fungi have been shown to produce nitrous oxide (N2O) during denitrification, but their ...