Many root-colonizing pseudomonads are able to promote plant growth by increasing phosphate availability in soil through solubilization of poorly soluble rock phosphates. The major mechanism of phosphate solubilization by pseudomonads is the secretion of gluconic acid, which requires the enzyme glucose dehydrogenase and its cofactor pyrroloquinoline quinone (PQQ). The main aim of this study was to evaluate whether a PQQ biosynthetic gene is suitable to study the phylogeny of phosphate-solubilizing pseudomonads. To this end, two new primers, which specifically amplify the pqqC gene of the Pseudomonas genus, were designed. pqqC fragments were amplified and sequenced from a Pseudomonas strain collection and from a natural wheat rhizosphere popu...
Agricultural systems depend on continued inputs of phosphate fertiliser to maintain productivity. Ho...
The mineral phosphate-solubilizing phenotype in bacteria is attributed predominantly to secretion of...
The genotypic diversity that occurs in natural populations of antagonistic microorganisms provides a...
The study focused at understanding the role of pyrroloquinoline quinone (PQQ) dependent glucose dehy...
Not AvailablePhosphate solubilization is an important and widely studied plant growth promoting trai...
The aim of this study was to analyze if cofactor pyrroquinoline quinone from Serratia sp. S119 is in...
Several bacteria isolated from the broccoli rhizosphere were assayed to compare their ability to sol...
Pseudomonas fluorescens CHA0 produces several secondary metabolites, e.g., the antibiotics pyoluteor...
Soil-dwelling microbes solubilize mineral phosphates by secreting gluconic acid, which is produced f...
Fluorescent pseudomonads protecting plant roots from phytopathogens by producing 2,4-diacetylphlorog...
Pseudomonas fluorescens strain X, a bacterial isolate from the rhizosphere of bean seedlings, has th...
Pseudomonas fluorescens strain X, a bacterial isolate from the rhizosphere of bean seedlings, has th...
Plant growth promotion can be enhanced by soil- and rhizosphere-dwelling bacteria by a several diffe...
Fluorescent Pseudomonas strains producing the antimicrobial secondary metabolite 2,4-diacetylphlorog...
Pseudomonas fluorescens is of agricultural and economic importance as a biological control agent lar...
Agricultural systems depend on continued inputs of phosphate fertiliser to maintain productivity. Ho...
The mineral phosphate-solubilizing phenotype in bacteria is attributed predominantly to secretion of...
The genotypic diversity that occurs in natural populations of antagonistic microorganisms provides a...
The study focused at understanding the role of pyrroloquinoline quinone (PQQ) dependent glucose dehy...
Not AvailablePhosphate solubilization is an important and widely studied plant growth promoting trai...
The aim of this study was to analyze if cofactor pyrroquinoline quinone from Serratia sp. S119 is in...
Several bacteria isolated from the broccoli rhizosphere were assayed to compare their ability to sol...
Pseudomonas fluorescens CHA0 produces several secondary metabolites, e.g., the antibiotics pyoluteor...
Soil-dwelling microbes solubilize mineral phosphates by secreting gluconic acid, which is produced f...
Fluorescent pseudomonads protecting plant roots from phytopathogens by producing 2,4-diacetylphlorog...
Pseudomonas fluorescens strain X, a bacterial isolate from the rhizosphere of bean seedlings, has th...
Pseudomonas fluorescens strain X, a bacterial isolate from the rhizosphere of bean seedlings, has th...
Plant growth promotion can be enhanced by soil- and rhizosphere-dwelling bacteria by a several diffe...
Fluorescent Pseudomonas strains producing the antimicrobial secondary metabolite 2,4-diacetylphlorog...
Pseudomonas fluorescens is of agricultural and economic importance as a biological control agent lar...
Agricultural systems depend on continued inputs of phosphate fertiliser to maintain productivity. Ho...
The mineral phosphate-solubilizing phenotype in bacteria is attributed predominantly to secretion of...
The genotypic diversity that occurs in natural populations of antagonistic microorganisms provides a...