Enhancing the mobilization of native phosphorus in the mung bean rhizosphere using ZnO nanoparticles synthesized by soil fungi

R Raliya, JC Tarafdar, P Biswas - Journal of agricultural and food …, 2016 - ACS Publications
Phosphorus (P) is a limiting factor to plant growth and productivity in almost half of the
world's arable soil, and its uptake in plants is often constrained because of its low solubility …

[引用][C] Enhancing the Mobilization of Native Phosphorus in the Mung Bean Rhizosphere Using ZnO Nanoparticles Synthesized by Soil Fungi

R Raliya, JC Tarafdar, P Biswas - Journal of Agricultural and …, 2016 - scholarship.miami.edu

Enhancing the Mobilization of Native Phosphorous in the Mung Bean Rhizosphere Using ZnO Nanoparticles Synthesized by Soil Fungi

R Raliya, JC Tarafdar, P Biswas - pstorage-acs-6854636.s3 …
Isolation of Fungi. The soil fungus, Aspergillus fumigatus TFR-8 (NCBI GenBank Accession
No. JQ675291) was isolated rhizospheric soil of mung bean. Isolation of fungi was carried …

Enhancing the Mobilization of Native Phosphorus in the Mung Bean Rhizosphere Using ZnO Nanoparticles Synthesized by Soil Fungi.

R Raliya, JC Tarafdar, P Biswas - Journal of Agricultural and Food …, 2016 - europepmc.org
Phosphorus (P) is a limiting factor to plant growth and productivity in almost half of the
world's arable soil, and its uptake in plants is often constrained because of its low solubility …

Enhancing the Mobilization of Native Phosphorus in the Mung Bean Rhizosphere Using ZnO Nanoparticles Synthesized by Soil Fungi

R Raliya, JC Tarafdar, P Biswas - Journal of agricultural …, 2016 - pubmed.ncbi.nlm.nih.gov
Phosphorus (P) is a limiting factor to plant growth and productivity in almost half of the
world's arable soil, and its uptake in plants is often constrained because of its low solubility …

[引用][C] Enhancing the Mobilization of Native Phosphorus in the Mung Bean Rhizosphere Using ZnO Nanoparticles Synthesized by Soil Fungi

R Raliya, JC Tarafdar, P Biswas - 2016