Improvement in bioavailability of tricalcium phosphate to Cymbopogon martinii var. motia by rhizobacteria, AMF and Azospirillum inoculation

The interactive effects of phosphate solubilizing bacteria, N 2 fixing bacteria and arbuscular mycorrhizal fungi (AMF) were studied in a low phosphate alkaline soil amended with tricalcium insoluble source of inorganic phosphate on the growth of an aromatic grass palmarosa (Cymbopogon martinii). The...

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Veröffentlicht in:Microbiological research 2001, Vol.156 (2), p.145-149
Hauptverfasser: Ratti, Neelima, Kumar, S., Verma, H.N., Gautam, S.P.
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Sprache:eng
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Zusammenfassung:The interactive effects of phosphate solubilizing bacteria, N 2 fixing bacteria and arbuscular mycorrhizal fungi (AMF) were studied in a low phosphate alkaline soil amended with tricalcium insoluble source of inorganic phosphate on the growth of an aromatic grass palmarosa (Cymbopogon martinii). The microbial inocula consisted of the AMfungus Glomus aggregatum, phosphate solubilizing rhizobacteria Bacillus polymyxa and N 2 fixing bacteria Azospirillum brasilense. These rhizobacteria behaved as “mycorrhiza helper” and enhanced root colonization by G. aggregatum in presence of tricalcium phosphate at the rate of 200 mg kg —1 soil (P1 level). Dual inoculation of G. aggregatum and B. polymyxa yielded 21.5 g plant dry weight (biomass), while it was 21.7 g in B. polymyxa and A. brasilense inoculated plants as compared to 14.9 g of control at the same level.Phosphate content was maximum (0.167%) in the com-bined treatment of G. aggregatum, B. polymyxa and A. brasilense at P1 level, however acid phosphatase activity was recorded to be 4.75 μmol mg —1 min —1 in G. aggregatum, B. polymyxa and A. brasilense treatment at P0 level. This study indicates that all microbes inoculated together help in the uptake of tricalcium phosphate which is otherwise not used by the plants and their addition at 200 mg kg —1 of soil gave higher productivity to palmarosa plants.
ISSN:0944-5013
1618-0623
DOI:10.1078/0944-5013-00095