Moreta, Danilo
,
Arango, Jacobo
,
Sotelo Cabrera, Mauricio Efren
,
Vergara, Daniel
,
Rincón, Álvaro
,
Ishitani, Manabu
,
Castro, Aracely
,
Miles, John W.
,
Peters, Michael
,
Tohme, Joseph M.
,
Subbaraoa, Guntur V.
,
Rao, Idupulapati M.
,
[Biological nitrification inhibition (BNI) in Brachiaria pastures: a novel strategy to improve eco-efficiency of crop-livestock systems and to mitigate climate change]
,
Biological nitrification inhibition (BNI) in Brachiaria pastures: a novel strategy to improve eco-efficiency of crop-livestock systems and to mitigate climate change
Arango, Jacobo
,
Moreta, D.
,
Núñez, J.
,
Hartmann, K.
,
Domínguez, M.
,
Ishitani, Manabu
,
Miles, John W.
,
Subbaraoa, Guntur V.
,
Peters, Michael
,
Rao, Idupulapati M.
,
[Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses]
,
Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses
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
High nitrogen (N) concentration in bovine urine, which generally exceeds plant N uptake rates, results in the formation of hotspots of N loss when bovine urine is deposited on grazed pasture soils. High spatial variability in the distribution of urine patches in grazed pastures poses a major chal...
Accelerated soil-nitrifier activity and rapid nitrification are the cause of declining nitrogen-use efficiency (NUE) and enhanced nitrous oxide (N2O) emissions from farming. Biological nitrification inhibition (BNI) is the ability of certain plant roots to suppress soil-nitrifier activity through...
Subbaraoa, Guntur V.
,
Arango, Jacobo
,
Masahiro, Kishii
,
Hooper, A.M.
,
Yoshihashi, Tadashi
,
Ando, Y.
,
Nakahara, Kazuhiko
,
Deshpande, Santosh
,
Ortiz Monasterio, Ivan
,
Ishitani, Manabu
,
Peters, Michael
,
Chirinda, Ngonidzashe
,
Wollenberg, Eva K.
,
Lata, Jean-Christophe
,
Gerard, Bruno G.
,
Tobita, Satoshi
,
Rao, Idupulapati M.
,
Braun, Hans J.
,
Kommerell, Victor
,
Tohme, Joseph M.
,
Iwanaga, Masaru
,
[Genetic mitigation strategies to tackle agricultural GHG emissions: The case for biological nitrification inhibition technology]
,
Genetic mitigation strategies to tackle agricultural GHG emissions: The case for biological nitrification inhibition technology