Non-symbiotic nitrogen-fixing bacteria influencing mineral and hydrolysable organic nitrogen in rhizosphere soils of rice (Oryza saliva)
Amal Chandra Das, Dipankar Saha
Abstract
Amal Chandra Das, Dipankar Saha
Abstract
A field experiment was conducted during the year 2002 to find out the effect of inoculation with 2 non-symbiotic N 2 -fixing bacteria, viz Azotobacter (strain DS 3 ) and Azospirillum (strain DM 1 0 ) in presence of 50 kg urea N/ha on growth and activities ofdiazotrophs in relation to availability of inorganic and organic nitrogen in rhizosphere soils of 'IET 4786' rice (Oryza saliva L). In most cases, successful inoculation of diazotrophs was recorded with proliferation of Azotobacter and Azospirillum either alone or in combination, in rhizosphere soils and nitrogenase activity (C 2 H 2 reduction) of rice roots. Inoculation with diazotrophs significantly increased the availability of inorganic (exchangeable NH 4 + and soluble NO,) (29.7%) and organic (hydrolysable NH 4 + , amino acid, hexosamine, serine + threonine and unidentified fraction) nitrogen content (23.3%) in rhizosphere soils, resulting in greater yield (23.7%). In general, combined inoculation of diazotrophs was more stimulative than their single inoculation in augmenting nitrogen mineralization in soil. The uninoculated soil series receiving 100 kg N/ha also recorded similar response in nitrogen mineralization and crop yield.
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A field experiment was conducted during the year 2002 to find out the effect of inoculation with 2 non-symbiotic N 2 -fixing bacteria, viz Azotobacter (strain DS 3 ) and Azospirillum (strain DM 1 0 ) in presence of 50 kg urea N/ha on growth and activities ofdiazotrophs in relation to availability of inorganic and organic nitrogen in rhizosphere soils of 'IET 4786' rice (Oryza saliva L). In most cases, successful inoculation of diazotrophs was recorded with proliferation of Azotobacter and Azospirillum either alone or in combination, in rhizosphere soils and nitrogenase activity (C 2 H 2 reduction) of rice roots. Inoculation with diazotrophs significantly increased the availability of inorganic (exchangeable NH 4 + and soluble NO,) (29.7%) and organic (hydrolysable NH 4 + , amino acid, hexosamine, serine + threonine and unidentified fraction) nitrogen content (23.3%) in rhizosphere soils, resulting in greater yield (23.7%). In general, combined inoculation of diazotrophs was more stimulative than their single inoculation in augmenting nitrogen mineralization in soil. The uninoculated soil series receiving 100 kg N/ha also recorded similar response in nitrogen mineralization and crop yield.
Key concepts: Diazotroph, Rhizosphere, Microbial inoculant, Nitrogen fixation, Mineralization (soil science), Azotobacter chroococcum, Azotobacter, Nitrogenase