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| Differential inducible defense mechanisms against bacterial speck pathogen in Arabidopsis thaliana by plant-growth-promoting-fungus Penicillium sp. GP16-2 and its cell free filtrate | | Plant and soil |
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| Aboveground–belowground interactions as a source of complementarity effects in biodiversity experiments | | Plant and soil |
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| The contribution of nitrogen fixation to sugarcane (Saccharum officinarum L.), and the identification and characterization of part of the associated diazotrophic bacterial community | | Plant and soil |
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| Pseudomonas sp. LSW25R, antagonistic to plant pathogens, promoted plant growth, and reduced blossom-end rot of tomato fruits in a hydroponic system | | European journal of plant pathology |
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| Manipulating the soil microbiome to increase soil health and plant fertility | | Biology and fertility of soils |
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| Impact of the PGPB Enterobacter radicincitans DSM 16656 on Growth, Glucosinolate Profile, and Immune Responses of Arabidopsis thaliana | | Microbial ecology |
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| Biocontrol of vascular wilt and corm rot of gladiolus caused by Fusarium oxysporum f. sp. gladioli using plant growth promoting rhizobacterial mixture | | Crop protection |
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| Herbaspirillum-plant interactions: microscopical, histological and molecular aspects | | Plant and soil |
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| Rhizospheric streptomycetes as potential biocontrol agents of Fusarium and Armillaria pine rot and as PGPR for Pinus taeda | | BioControl |
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| Dynamic Chemical Communication between Plants and Bacteria through Airborne Signals: Induced Resistance by Bacterial Volatiles | | Journal of chemical ecology |
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| Nitrogen supply influences plant growth and transcriptional responses induced by Enterobacter radicincitans in Solanum lycopersicum | | Plant and soil |
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| The rhizosphere soil of diseased tomato plants as a source for novel microorganisms to control bacterial wilt | | Applied soil ecology |
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| Bacterial volatiles induce systemic resistance in Arabidopsis. [Erratum: 2005 Apr., v. 137, no. 4, p. 1486.] | | Plant physiology |
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| Integrated biological control of bacterial speck and spot of tomato under field conditions using foliar biological control agents and plant growth-promoting rhizobacteria | | Biological control |
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| Insertional mutation of the rpoS gene contributes to alteration in biosynthesis of antifungal agents in Pseudomonas sp. M18 | | Biological control |
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| Non-streptomycete actinomycetes as biocontrol agents of soil-borne fungal plant pathogens and as plant growth promoters | | Soil biology and biochemistry |
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| Improvement of biological control capacity of Paenibacillus polymyxa E681 by seed pelleting on sesame | | Biological control |
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| Defensive-related enzyme response in plants treated with a mixture of Bacillus strains (IN937a and IN937b) against different pathogens | | Biological control |
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| Suppression of Pythium ultimum root rot of sorghum by rhizobacterial isolates from Ethiopia and South Africa | | Biological control |
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| Vermicompost enhances performance of plant growth-promoting rhizobacteria in Cicer arietinum rhizosphere against Sclerotium rolfsii | | Crop protection |
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| Antagonistic activity of Cuban native rhizobacteria against Fusarium verticillioides (Sacc.) Nirenb. in maize (Zea mays L.) | | Applied soil ecology |
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| Biohardening with Plant Growth Promoting Rhizosphere and Endophytic bacteria induces systemic resistance against Banana bunchy top virus | | Applied soil ecology |
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| Simultaneous Interaction of Arabidopsis thaliana with Bradyrhizobium Sp. Strain ORS278 and Pseudomonas syringae pv. tomato DC3000 Leads to Complex Transcriptome Changes | | Molecular plant-microbe interactions |
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| Systemic Disease Protection Elicited by Plant Growth Promoting Rhizobacteria Strains: Relationship Between Metabolic Responses, Systemic Disease Protection, and Biotic Elicitors | | Phytopathology |
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| Multifaceted beneficial effects of rhizosphere microorganisms on plant health and productivity | | Soil biology and biochemistry |
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| Evaluation of rhizosphere bacterial antagonists for their potential to bioprotect potato (Solanum tuberosum) against bacterial wilt (Ralstonia solanacearum) | | Biological control |
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| Evaluation of fluorescent pseudomonads for plant growth promotion, antifungal activity against Rhizoctonia solani on common bean, and biocontrol potential | | Biological control |
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