نتایج جستجو برای: pseudomonas fluorescens

تعداد نتایج: 53242  

2013
Shahram Lack

To examine the effect of crop growth enhancer bacteria on quantitative and qualitative yield of safflower, an experiment in randomized complete block design was conducted in eight levels with four replications. Bacterial factor consisted of control (absence of bacteria), AzotobacterChroococcum,AzospirillumBrazilians, Pseudomonas Fluorescens, AzotobacterChroococcum+Azospirillum Brazilians, Azoto...

2010
Patricia J. Slininger Christopher A. Dunlap David A. Schisler

To cite this Article Slininger, Patricia J., Dunlap, Christopher A. and Schisler, David A.(2010) 'Polysaccharide production benefits dry storage survival of the biocontrol agent Pseudomonas fluorescens S11:P:12 effective against several maladies of stored potatoes', Biocontrol Science and Technology, 20: 3, 227 — 244 To link to this Article: DOI: 10.1080/09583150903469525 URL: http://dx.doi.org...

2012
Isoken H. Igbinosa Uchechukwu U. Nwodo Anibal Sosa Mvuyo Tom Anthony I. Okoh

Pseudomonas species are opportunistic pathogens with implications in a wide range of diseases including cystic fibrosis and sickle cell anaemia. Because of their status as multidrug resistant (MDR) and extremely drug resistant (XDR) bacteria Pseudomonas species represent a threat to public health. Prevalence, antibiogram and associated antibiotic resistant genes of Pseudomonas species isolated ...

2016
António S. Moreira Kieran J. Germaine Andrew Lloyd Richard D. Lally Paul T. Galbally David Ryan David N. Dowling

We report here the draft genome sequence of three Pseudomonas fluorescens strains (L111, L228, and L321) isolated from Miscanthus giganteus The draft genome analyses uncovered a group of genes involved in the biosynthesis of secondary metabolites and for plant growth promotion.

Journal: :Letters in applied microbiology 2009
O Couillerot C Prigent-Combaret J Caballero-Mellado Y Moënne-Loccoz

Many strains of Pseudomonas fluorescens show potential for biological control of phytopathogens especially root pathogens. In taxonomic terms, several of them are indeed P. fluorescens sensu stricto, while others belong in fact to neighbouring species of the 'P. fluorescens' complex or to ill-defined related species within the fluorescent Pseudomonas spp. These bacteria have become prominent mo...

2016
Rossana Roila Raffaella Branciari David Ranucci Roberta Ortenzi Stefania Urbani Maurizio Servili Andrea Valiani

Olive mill wastewater polyphenol extract was tested for antimicrobial activity against 64 strains of Pseudomonas fluorescens responsible for mozzarella discolouration. The extract showed a minimum inhibitory concentration (MIC)50 value of 5 mg/mL and a MIC90 value of 7 mg/mL. The MBC50 and MBC90 values corresponded to 6 and 8 mg/mL, respectively. The MIC concentration (7 mg/mL) was demonstrated...

2013
Richard A. Stabler David Negus Arnab Pain Peter W. Taylor

A mixed culture of Pseudomonas fluorescens BS2 and Pusillimonas noertemannii BS8 degraded poly-γ-d-glutamic acid; when the 2 strains were cultured separately, no hydrolytic activity was apparent. Here we report the draft genome sequences of both soil isolates.

2015
Brittan S. Scales John R. Erb-Downward Ian M. Huffnagle John J. LiPuma Gary B. Huffnagle

We report here the first draft genome sequences of Pseudomonas fluorescens strains that have been isolated from humans. The seven assembled draft genomes contained an average of 60.1% G+C content, were an average genomic size of 6.3 Mbp, and mapped by multilocus sequence analysis to subclade III.

Journal: :Biochimica et biophysica acta 1952
A PINSKY M MICHAELIS

Morgan, W. T. J. & Elson, L. A. (1934). Biochem. J. 28,988. Morgan, W. T. J. & Partridge, S. M. (1940). Biochem. J. 34, 169. Morgan, W. T. J. & Partridge, S. M. (1941a). Biochem. J. 35, 1140. Morgan, W. T. J. & Partridge, S. M. (1941 b). Chem. & Ind. 60, 722. Partridge, S. M. (1948). Biochem. J. 42, 251. Partridge, S. M. & Morgan, W. T. J. (1940). Brit. J. exp. Path. 21, 180. Sevag, M. G. (1934...

2016
Se-Ran Jun Trudy M Wassenaar Intawat Nookaew Loren Hauser Visanu Wanchai Miriam Land Collin M Timm Tse-Yuan S Lu Christopher W Schadt Mitchel J Doktycz Dale A Pelletier David W Ussery

The Pseudomonas genus contains a metabolically versatile group of organisms that are known to occupy numerous ecological niches, including the rhizosphere and endosphere of many plants. Their diversity influences the phylogenetic diversity and heterogeneity of these communities. On the basis of average amino acid identity, comparative genome analysis of >1,000 Pseudomonas genomes, including 21 ...

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