نتایج جستجو برای: pseudomonas syringae pv syringae

تعداد نتایج: 74964  

Journal: :Applied and environmental microbiology 2010
Bryan Swingle Zhongmeng Bao Eric Markel Alan Chambers Samuel Cartinhour

In this report, we describe the identification of functions that promote genomic recombination of linear DNA introduced into Pseudomonas cells by electroporation. The genes encoding these functions were identified in Pseudomonas syringae pv. syringae B728a based on similarity to the lambda Red Exo/Beta and RecET proteins encoded by the lambda and Rac bacteriophages of Escherichia coli. The abil...

2015
Olga A. Postnikova Jonathan Shao Norton M. Mock Con J. Baker Lev G. Nemchinov

Pseudomonas syringae infects diverse crop plants and comprises at least 50 different pathovar strains with different host ranges. More information on the physiological and molecular effects of the host inhibitory environment on the pathogen is needed to develop resistant cultivars. Recently, we reported an in vitro model system that mimics the redox pulse associated with the oxidative burst in ...

Journal: :FEMS microbiology letters 2007
Emanuela Natalini Marco Scortichini

The 16S-23S rRNA gene internal transcribed spacer region (ITS1) from 34 strains of Pseudomonas avellanae and some strains of Pseudomonas syringae pathovars was amplified and assessed by restriction fragment length polymorphism (RFLP) using 10 restriction enzymes. In addition, the ITS1 region of four representative P. avellanae strains was sequenced and compared by the neighbour-joining algorith...

2014
Irene Donati Giampaolo Buriani Antonio Cellini Sofia Mauri Guglielmo Costa Francesco Spinelli

Since 2008, Pseudomonas syringae pv. actinidiae, the causal agent of bacterial canker of kiwifruit has become the main pathogen of yellow and green fleshed kiwifruit. All major kiwifruit producing countries in the world have been affected by this bacterial pathogen, leading to substantial economic losses. This review presents the current knowledge on various aspects about the origin, epidemiolo...

Journal: :Applied and environmental microbiology 2001
M Elasri S Delorme P Lemanceau G Stewart B Laue E Glickmann P M Oger Y Dessaux

A total of 137 soilborne and plant-associated bacterial strains belonging to different Pseudomonas species were tested for their ability to synthesize N-acyl-homoserine lactones (NAHL). Fifty-four strains synthesized NAHL. Interestingly, NAHL production appears to be more common among plant-associated than among soilborne Pseudomonas spp. Indeed, 40% of the analyzed Pseudomonas syringae strains...

1997
K. A. Garrett H. F. Schwartz

Bacterial brown spot (caused by Pseudomonas syringae pv. syringae van Hall) and halo blight (caused by P. syringae pv. phaseolicola (Burk.) Young, Dye, and Wilkie) are two important diseases of dry beans (Phaseolus vulgaris L.) in Colorado and other parts of the world (14). These bacterial pathogens are of particular interest for the following reasons. Though there is potential for using epiphy...

Journal: :Protein expression and purification 2009
Natalia Kovalskaya Rosemarie W Hammond

In this study, for the first time, functionally active, recombinant, cysteine-rich plant proteins snakin-1 (SN1) and defensin (PTH1) were expressed and purified using a prokaryotic expression system. The overall level of antimicrobial activities of SN1 and PTH1 produced in Escherichia coli was commensurate with that of the same proteins previously obtained from plant tissues. Both proteins exhi...

2013
Alexey Dudnik Robert Dudler

The Gram-negative gammaproteobacterium Pseudomonas syringae is one of the most wide-spread plant pathogens and has been repeatedly reported to cause significant damage to crop plantations. Research on this pathogen is very intensive, but most of it is done on isolates that are pathogenic to Arabidopsis, tomato, and bean. Here, we announce a high-quality draft genome sequence of Pseudomonas syri...

2016
James Harrison Melinda R Dornbusch Deborah Samac David J Studholme

We report here the annotated draft genome sequence of Pseudomonas syringae pv. syringae strain ALF3, isolated in Wyoming. A comparison of this genome sequence with those of closely related strains of P. syringae adapted to other hosts will facilitate research into interactions between this pathogen and alfalfa.

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