نتایج جستجو برای: pseudomonas putida sp3

تعداد نتایج: 55377  

Journal: :Applied and environmental microbiology 1992
P Lemanceau P A Bakker W J De Kogel C Alabouvette B Schippers

Nonpathogenic Fusarium oxysporum Fo47b10 combined with Pseudomonas putida WCS358 efficiently suppressed fusarium wilt of carnations grown in soilless culture. This suppression was significantly higher than that obtained by inoculation of either antagonistic microorganism alone. The increased suppression obtained by Fo47b10 combined with WCS358 only occurred when Fo47b10 was introduced at a dens...

Journal: :Journal of bacteriology 2007
Francisco Velázquez Katharina Pflüger Ildefonso Cases Laura I De Eugenio Víctor de Lorenzo

The genome of Pseudomonas putida KT2440 encodes five proteins of the phosphoenolpyruvate-carbohydrate phosphotransferase system. Two of these (FruA and FruB) form a dedicated system for fructose intake, while enzyme I(Ntr) (EI(Ntr); encoded by ptsP), NPr (ptsO), and EII(Ntr) (ptsN) act in concert to control the intracellular accumulation of polyhydroxyalkanoates, a typical product of carbon ove...

2017
Bin Lai Shiqin Yu Paul V Bernhardt Korneel Rabaey Bernardino Virdis Jens O Krömer

[This corrects the article DOI: 10.1186/s13068-016-0452-y.].

2016
Juhyun Kim Juan Carlos Oliveros Pablo I. Nikel Víctor de Lorenzo Rafael Silva-Rocha

Journal: :Polish journal of microbiology 2017
Jesus A Morlett-Chavez Jose A Ascacio-Martinez William E Haskins Karim Acuña-Askar Hugo A Barrera-Saldaña

Pseudomonas putida strain (HM346961) was isolated from a consortium of bacteria acclimatized to unleaded gasoline-contaminated water. The consortium can efficiently remove benzene, toluene, ethylbenzene and xylene (BTEX) isomers, and a similar capability was observed with the P. putida strain. Proteome of this strain showed certain similarities with that of other strains exposed to the hydrocar...

Journal: :Antimicrobial agents and chemotherapy 2009
Jason W Bennett Monica L Herrera James S Lewis Brian W Wickes James H Jorgensen

Carbapenemases are among the newest resistance mechanisms to emerge in some gram-negative bacteria. We describe bacteremia in a critically ill liver transplant recipient infected with KPC-2-producing Enterobacter cloacae and Pseudomonas putida. Although this enzyme has been previously described in Enterobacter spp., this is the first report of KPC carbapenemase in P. putida.

2017
Franziska Wemheuer Jacqueline Hollensteiner Anja Poehlein Sandra Granzow Rolf Daniel Stefan Vidal Bernd Wemheuer

Pseudomonas putida GM4FR is an endophytic bacterium isolated from aerial plant tissues of Festuca rubra L. Functional annotation of the draft genome (7.1 Mb) revealed 6,272 predicted protein-encoding genes. The genome provides insights into the biocontrol and plant growth-promoting potential of P. putida GM4FR.

2016
Vinoth Wigneswaran Kristian Fog Nielsen Claus Sternberg Peter Ruhdal Jensen Anders Folkesson Lars Jelsbak

BACKGROUND Although a transition toward sustainable production of chemicals is needed, the physiochemical properties of certain biochemicals such as biosurfactants make them challenging to produce in conventional bioreactor systems. Alternative production platforms such as surface-attached biofilm populations could potentially overcome these challenges. Rhamnolipids are a group of biosurfactant...

Journal: :Journal of clinical microbiology 2014
Paulina A Rebolledo Catphuong Cathy L Vu Renee Donahue Carlson Colleen S Kraft Evan J Anderson Eileen M Burd

Infections due to Pseudomonas fulva remain a rare but emerging concern. A case of ventriculitis due to Enterobacter cloacae and Pseudomonas fulva following placement of an external ventricular drain is described. Similar to other reports, the organism was initially misidentified as Pseudomonas putida. The infection was successfully treated with levofloxacin.

Journal: :Applied and environmental microbiology 2007
Karen M Tobin John W McGrath Alan Mullan John P Quinn Kevin E O'Connor

Pseudomonas putida CA-3 accumulates polyphosphate (polyP) and medium-chain-length polyhydroxyalkanoate (mclPHA) concurrently under nitrogen limitation. Five other mclPHA-accumulating Pseudomonas strains are capable of simultaneous polyP and mclPHA biosynthesis. It appears that polyP is not the rate-limiting step for mclPHA accumulation in these Pseudomonas strains.

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