نتایج جستجو برای: pantoea ananatis

تعداد نتایج: 1138  

Journal: :Journal of Clinical Microbiology 2004

Journal: :Journal of clinical microbiology 2004
Thierry De Baere Rita Verhelst Caroline Labit Gerda Verschraegen Georges Wauters Geert Claeys Mario Vaneechoutte

A 73-year-old man was hospitalized for dyspnea and bilateral ankle edema. During his hospital stay he presented anal hemorrhage and developed a high fever after colonoscopy. A set of aerobic and anaerobic blood culture bottles yielded a pure culture of gram-negative rods, susceptible to all antibiotics tested. The API20E code was 1005133, resulting in a very good identification as Pantoea sp. S...

2016
Derek D N Smith Arvin Nickzad Eric Déziel John Stavrinides

Pantoea is a versatile genus of bacteria with both plant- and animal-pathogenic strains, some of which have been suggested to cause human infections. There is, however, limited knowledge on the potential determinants used for host association and pathogenesis in animal systems. In this study, we used the model host Dictyostelium discoideum to show that isolates of Pantoea ananatis exhibit diffe...

2015
Pieter De Maayer Wai-Yin Chan Douglas A. J. Martin Jochen Blom Stephanus N. Venter Brion Duffy Don A. Cowan Theo H. M. Smits Teresa A. Coutinho

Pantoea ananatis is a highly versatile enterobacterium isolated from diverse environmental sources. The ecological diversity of this species may be attributed, in part, to the acquisition of mobile genetic elements. One such element is an Integrative and Conjugative Element (ICE). By means of in silico analyses the ICE elements belonging to a novel family, ICEPan, were identified in the genome ...

2017
Pieter De Maayer Habibu Aliyu Surendra Vikram Jochen Blom Brion Duffy Don A. Cowan Theo H. M. Smits Stephanus N. Venter Teresa A. Coutinho

Pantoea ananatis is ubiquitously found in the environment and causes disease on a wide range of plant hosts. By contrast, its sister species, Pantoea stewartii subsp. stewartii is the host-specific causative agent of the devastating maize disease Stewart's wilt. This pathogen has a restricted lifecycle, overwintering in an insect vector before being introduced into susceptible maize cultivars, ...

2016
Panagiotis Gkorezis Jonathan D. Van Hamme Eric M. Bottos Sofie Thijs Maria Balseiro-Romero Carmela Monterroso Petra Suzan Kidd Francois Rineau Nele Weyens Jaco Vangronsveld

We report the 4.76-Mb draft genome of Pantoea ananatis GB1, a Gram-negative bacterium of the family Enterobacteriaceae, isolated from the roots of poplars planted for phytoremediation of a diesel-contaminated plume at the Ford Motor Company site in Genk, Belgium. Strain GB1 promotes plant growth in various hosts and metabolizes hydrocarbons.

Journal: :Genome announcements 2016
Esaú Megías Manuel Megías Francisco Javier Ollero Mariangela Hungria

The rice endophyte Pantoea ananatis AMG521 shows several plant growth-promoting properties and promotes rice yield increases. Its draft genome was estimated at 4,891,568 bp with 4,704 coding sequences (CDS). The genome encodes genes for N-acylhomoserine lactone (AHL) synthases, AHL hydrolases, hyperadherence (yidQ, yidP, and yidR), fusaric acid resistance, and oxidation of lignin, highlighting ...

2015
Enrique G. Medrano Alois A. Bell

Pantoea ananatis is a bacterium with versatile niches that vary from pathogenic to beneficial. We present the genome of strain CFH 7-1, which was recovered from a diseased greenhouse cotton boll previously caged with a field-collected cotton fleahopper (Pseudatomoscelis seriatus). These data will assist in deciphering the infection process.

2017
Esaú Megías Fábio Bueno Reis Junior Renan Augusto Ribeiro Francisco Javier Ollero Manuel Megías Mariangela Hungria

Pantoea ananatis AMG 501 is a plant growth-promoting bacterium isolated from rice leaves. Its genome was estimated at 5,102,640 bp with 4,994 coding sequences, encompassing genes related to the metabolism of carbohydrates, to the synthesis of auxins, siderophores, and homoserine lactones, and to the type I, II, III, IV, and VI secretion systems.

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