Journal of Forest Science · 2009 · 18 citations · 22 references
Synergistic EffectArbuscular MycorrhizalDominant AmPlant PathologyMicrobial EcologyAcacia Catechu WilldFungal BiologyMicrobiologyFungal SymbiosisMycelial InteractionMedicineAm FungiEndomycorrhizal FungiRhizosphere
The diversity of arbuscular mycorrhizal (AM) fungi of Acacia catechu Willd. was studied. Dominant AM spores, the bacterium Rhizobium sp. along with the fungus Trichoderma viride were isolated from the rhizosphere of A. catechu and mass-produced in laboratory. The co-inoculation effect of Glomus mosseae, Glomus fasciculatum, mixed AM (Glomus spp. [except G. mosseae, G. fasciculatum] with Acaulospora spp., Sclerocystis spp. and Gigaspora spp.), Rhizobium sp. and Trichoderma viride was studied as exerted on the growth of A. catechu seedlings. All inoculated seedlings showed improved seedling growth compared to the control. Inoculated seedlings had a pronounced effect on all growth parameters such as height, fresh and dry weight of roots and shoots, AM spore count, per cent mycorrhizal colonization in roots and root nodule number in comparison with uninoculated seedlings. Phosphorus uptake was also higher in inoculated seedlings than in the control. This study provides a good scope for commercially utilizing the efficient strains of AM fungi for beneficial effects with other beneficial rhizosphere microflora in the primary establishment of slow growing seedlings ensuring better survival and improved growth.
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L J Hardin · Journal of AOAC INTERNATIONAL · 1958 · 6K citations · Full text
Soil Characterization, Environmental Chemistry, Engineering +8
R. N. Ames, C. P. P. Reid, L. K. Porter et al. · New Phytologist · 1983 · 379 citations · Full text