Microbial interactions in the rhizosphere: beneficial influences of plant growth-promoting rhizobacteria on nutrient acquisition process. A review
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Igneous phosphate rock solubilization by biofilm-forming mycorrhizobacteria and hyphobacteria associated with Rhizoglomus irregulare DAOM 197198Wheat and Rice Growth Stages and Fertilization Regimes Alter Soil Bacterial Community Structure, But Not DiversityIncreasing the Size of the Microbial Biomass Altered Bacterial Community Structure which Enhances Plant Phosphorus Uptake.Root Associated Bacillus sp. Improves Growth, Yield and Zinc Translocation for Basmati Rice (Oryza sativa) Varieties.Formulations of polymeric biodegradable low-cost foam by melt extrusion to deliver plant growth-promoting bacteria in agricultural systems.Enhancing plant productivity while suppressing biofilm growth in a windowfarm system using beneficial bacteria and ultraviolet irradiation.Root and Rhizosphere Bacterial Phosphatase Activity Varies with Tree Species and Soil Phosphorus Availability in Puerto Rico Tropical Forest.Evidence of developmental niche construction in dung beetles: effects on growth, scaling and reproductive success.Developmental and nutritional regulation of isoflavone secretion from soybean roots.Biofilm formation is determinant in tomato rhizosphere colonization by Bacillus velezensis FZB42.Probiotic activities of Rhizobium laguerreae on growth and quality of spinach.Plant Phylogeny and Life History Shape Rhizosphere Bacterial Microbiome of Summer Annuals in an Agricultural Field.Tomato ethylene sensitivity determines interaction with plant growth-promoting bacteria.Evidence of nitrogen fixation and growth promotion in canola (Brassica napus L.) by an endophytic diazotroph Paenibacillus polymyxa P2b-2REffect of GFP tagging of Paenibacillus polymyxa P2b-2R on its ability to promote growth of canola and tomato seedlingsSpecies-specific effects of plant invasions on activity, biomass, and composition of soil microbial communitiesResponse of soil enzymes and microbial communities to root extracts of the alien Alternanthera philoxeroidesSensitivities to nitrogen and water addition vary among microbial groups within soil aggregates in a semiarid grasslandAssessment of the potential role of Streptomyces strains in the revegetation of semiarid sites: the relative incidence of strain origin and plantation site on plant performance and soil quality indicatorsApplication of compost and clay under water-stressed conditions influences functional diversity of rhizosphere bacteriaCurrent Perspectives on Plant Growth-Promoting RhizobacteriaNitrate induction and physiological responses of two maize lines differing in nitrogen use efficiency: effects on N availability, microbial diversity and enzyme activity in the rhizosphereDegradation of citrate promotes copper co-precipitation within aluminium-(hydr)oxides in calcareous soilsRight time of phosphorus and zinc application to maize depends on nutrient–nutrient and nutrient–inoculum interactions
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P2860
Microbial interactions in the rhizosphere: beneficial influences of plant growth-promoting rhizobacteria on nutrient acquisition process. A review
description
article
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wetenschappelijk artikel
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наукова стаття, опублікована в січні 2015
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name
Microbial interactions in the ...... acquisition process. A review
@en
Microbial interactions in the ...... acquisition process. A review
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type
label
Microbial interactions in the ...... acquisition process. A review
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Microbial interactions in the ...... acquisition process. A review
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prefLabel
Microbial interactions in the ...... acquisition process. A review
@en
Microbial interactions in the ...... acquisition process. A review
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P2093
P2860
P1476
Microbial interactions in the ...... acquisition process. A review
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P2093
Carmine Crecchio
Nicola Tomasi
Roberto Terzano
Stefano Cesco
Tanja Mimmo
P2860
P2888
P304
P356
10.1007/S00374-015-0996-1
P577
2015-01-31T00:00:00Z