Table 1.
PGPR | Abilities | Condition | Results | References |
---|---|---|---|---|
G. diazotrophicus and A. brasilense | Siderophore production | Hydroponia | Increased iron in the plants | [60] |
Pseudomonas sp. | Siderophore production and PGPR properties | Vase with vermiculite | Iron acquisition | [78] |
Lysinibacillus sp. and Paenibacillus dendritiformis | Seedling protection | Maize in vase | Improved seed germination | [19] |
Bacillus subtilis | Seedling protection | Pot experiment | Protection against Cephalosporium maydis | [62] |
Bacillus sp. | IAA production Phosphorus solubilization |
Greenhouse | Increased rice seedling Increase P availability |
[79] |
Mesorhizobium panacihumi | Siderophore production | Pot tests | Reduced soil contamination | [67] |
Bacillus sp. Citrobacter sp. Citrobacter sp. Flavobacterium sp. and Pantoea sp. |
Phytohormones production; siderophore; hydrogen cyanide | Greenhouse | Reduced fungal phytopathogens | [20] |
Pseudomonas sp. | Protection against fungicide | Greenhouse | Improved cultivation of radish plants | [65] |
Pseudomonas fluorescens Rhizobium leguminosarum Bacillus brevis
Azotobacter vinelandii |
Siderophore production | Chamber | Protection against organophosphate pesticides | [80] |
Anabaena azotica | Nitrogen fixation | Field experiment | Chemical nitrogen reduction | [41] |
Brucella sp. and Pseudomonas brassicae | Siderophore production | Field experiment | High production in iron-deficient soil | [81] |
Bacillus aryabhattai | Siderophore production | Field experiment | Increased production in iron-deficient soil | [59] |
Rhodopseudomonas palustris | Phosphorus solubilization | Greenhouse | Improved soil fertility | [82] |