Nitrogen (N), the most critical and essential nutrient for plant growth, largely determines the productivity in both extensive and intensive grassland systems. Nitrification and denitrification processes in the soil are the primary drivers of generating reactive N (NO3-, N2O and NO), largely resp...
Subbaraoa, Guntur V.
,
Rao, Idupulapati M.
,
Nakahara, K.
,
Ando, Yasuo
,
Sahrawat, Kanwar Lal
,
Tesfamariam, T.
,
Lata, Jean-Christophe
,
Boudsocq, S.
,
Miles, John W.
,
Ishitani, Manabu
,
Peters, Michael
,
[Nitrogen management in grasslands and forage-based production systems—Role of biological nitrification inhibition (BNI)]
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Nitrogen management in grasslands and forage-based production systems—Role of biological nitrification inhibition (BNI)
Background: Agriculture is the single largest geo-engineering initiative that humans have initiated on planet Earth, largely through the introduction of unprecedented amounts of reactive nitrogen (N) into ecosystems. A major portion of this reactive N applied as fertilizer leaks into the environm...
Subbaraoa, Guntur V.
,
Sahrawat, Kanwar Lal
,
Nakahara, K.
,
Rao, Idupulapati M.
,
Ishitani, Manabu
,
Hash, C.T.
,
Kishi, M.
,
Bonnett, D.
,
Berry, W.
,
Lata, Jean-Christophe
,
[A paradigm shift towards low-nitrifying systems: The role of biological nitrification inhibition (BNI)]
,
A paradigm shift towards low-nitrifying systems: The role of biological nitrification inhibition (BNI)
Human activity has had the single largest influence on the global nitrogen (N) cycle by introducing unprecedented amounts of reactive-N into ecosystems. A major portion of this reactive-N, applied as fertilizer to crops, leaks into the environment with cascading negative effects on ecosystem func...
Subbaraoa, Guntur V.
,
Sahrawat, Kanwar Lal
,
Nakahara, K.
,
Ishikawa, T.
,
Kudo, N.
,
Kishii, M.
,
Rao, Idupulapati M.
,
Hash, C.T.
,
George, T.S.
,
Rao, P.S.
,
Nardi, P.
,
Bonnett, D.
,
Berry, W.
,
Suenaga, K.
,
Lata, Jean-Christophe
,
[Biological nitrification inhibition (BNI)—A novel strategy to regulate nitrification in agricultural systems]
,
Biological nitrification inhibition (BNI)—A novel strategy to regulate nitrification in agricultural systems
Agriculture and livestock production systems are two major emitters of greenhouse gases. Methane with a GWP (global warming potential) of 21, and nitrous oxide (N2O) with a GWP of 300, are largely emitted from animal production agriculture, where livestock production is based on pasture and feed ...
Subbaraoa, Guntur V.
,
Rao, Idupulapati M.
,
Nakahara, K.
,
Sahrawat, Kanwar Lal
,
Hash, C.T.
,
Ando, Yasuo
,
Kawashima, T.
,
[Potential for biological nitrification inhibition (BNI) to reduce nitrification and N2O emissions from pasture-crop-livestock systems]
,
Potential for biological nitrification inhibition (BNI) to reduce nitrification and N2O emissions from pasture-crop-livestock systems
Nitrogen (N), being the most critical and essential nutrient for plant growth, largely determines the productivity in both extensive- and intensive- grassland systems. Nitrification and denitrification processes in the soil are the primary drivers generating reactive-N: NO3-, N2O, and NO, and is ...
Subbaraoa, Guntur V.
,
Rao, Idupulapati M.
,
Nakahara, K.
,
Ando, Yasuo
,
Sahrawat, Kanwar Lal
,
Tsefamarium T
,
Lata, Jean-Christophe
,
Boudsocq, S.
,
Miles, John W.
,
Ishitani, Manabu
,
Peters, Michael
,
[Nitrogen management in grasslands and forage-based production systems – Role of biological nitrification inhibition (BNI)]
,
Nitrogen management in grasslands and forage-based production systems – Role of biological nitrification inhibition (BNI)
Nitrification, a key process in the global nitrogen cycle that
generates nitrate through microbial activity, may enhance losses
of fertilizer nitrogen by leaching and denitrification. Certain
plants can suppress soil-nitrification by releasing inhibitors from
roots, a phenomenon termed biological...
Subbaraoa, Guntur V.
,
Nakahara, K.
,
Hurtado, MP
,
Ono, H
,
Moreta Mejia, DE
,
Salcedo, AF
,
Yoshihashi, AT
,
Ishikawa, T.
,
Ishitani, Manabu
,
Ohnishi, M
,
Yoshida, M
,
Rondón, Marco Antonio
,
Rao, Idupulapati M.
,
Lascano, Carlos E.
,
Berry, W.L.
,
Ito, O.
,
[Evidence for biological nitrification inhibition in Brachiaria pastures]
,
Evidence for biological nitrification inhibition in Brachiaria pastures
Regulating nitrification could be a key strategy in improving nitrogen (N) recovery and agronomic N-use efficiency in situations where the loss of N following nitrification is significant. A highly sensitive bioassay using recombinant luminescent Nitrosomonas europaea, has been developed that can...
Subbaraoa, Guntur V.
,
Rondón, Marco Antonio
,
Ito, O.
,
Ishikawa, T.
,
Rao, Idupulapati M.
,
Nakahara, K.
,
Lascano, Carlos E.
,
Berry, W.L.
,
[Biological nitrification inhibition (BNI): is it a widespread phenomenon?]
,
Biological nitrification inhibition (BNI): is it a widespread phenomenon?
Subbaraoa, Guntur V.
,
Sahrawat, Kanwar Lal
,
Nakahara, K.
,
Rao, Idupulapati M.
,
Ishitani, Manabu
,
Hash, C.T.
,
Kishii, M.
,
Bonnett, DG
,
Berry, W.L.
,
Lata, Jean-Christophe
,
[A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI)]
,
A paradigm shift towards low-nitrifying production systems: the role of biological nitrification inhibition (BNI)