نتایج جستجو برای: pseudomonas pseudoalcaligenes strain tps8

تعداد نتایج: 265483  

Journal: :International journal of systematic and evolutionary microbiology 2004
Alvaro Peix Raúl Rivas Ignacio Santa-Regina Pedro F Mateos Eustoquio Martínez-Molina Claudino Rodríguez-Barrueco Encarna Velázquez

A phosphate-solubilizing bacterial strain designated OK2(T) was isolated from rhizospheric soil of grasses growing spontaneously in a soil from Spain. Cells of the strain were Gram-negative, strictly aerobic, rod-shaped and motile. Phylogenetic analysis of the 16S rRNA gene indicated that this bacterium belongs to the gamma-subclass of Proteobacteria within the genus Pseudomonas and that the cl...

Journal: :International journal of systematic and evolutionary microbiology 2007
Beatriz Cámara Carsten Strömpl Susanne Verbarg Cathrin Spröer Dietmar H Pieper Brian J Tindall

Three bacterial strains, designated MT1(T), RW10(T) and IpA-2(T), had been isolated previously for their ability to degrade chlorosalicylates or isopimaric acid. 16S rRNA gene sequence analysis demonstrated that these bacteria are related to species of the genus Pseudomonas. Analysis of the results of DNA-DNA hybridization with several close phylogenetic neighbours revealed a low level of hybri...

2014
Yujiao Wang Chao Li Chao Gao Cuiqing Ma Ping Xu

Pseudomonas aeruginosa ATCC 15442 is an environmental strain of the Pseudomonas genus. Here, we present a 6.77-Mb assembly of its genome sequence. Besides giving insights into characteristics associated with the pathogenicity of P. aeruginosa, such as virulence, drug resistance, and biofilm formation, the genome sequence may provide some information related to biotechnological utilization of th...

Journal: :Infection and immunity 1982
R E Hancock A A Wieczorek L M Mutharia K Poole

Hybridomas secreting monoclonal antibodies specific for Pseudomonas aeruginosa outer membrane antigens were isolated. One of the antibodies was highly specific for the O antigen of the lipopolysaccharide of International Antigen Typing Scheme serotype 5 strains, reacting only weakly with a serotype 17 strain and failing to react with the outer membranes of strains representing 15 other serotype...

2015
Haeyoung Jeong Joseph W. Kloepper Choong-Min Ryu

Certain pathovars of Pseudomonas amygdali, which is newly reclassified from Pseudomonas syringae by DNA-DNA hybridization and ribotyping, cause many serious diseases of major crop plants. Herein, we present draft genome sequences of P. amygdali pv. tabaci strain ATCC 11528 and P. amygdali pv. lachrymans strain 98A-744.

2014
Zaky Adam James Tabi Tambong Qing Chen Christopher T. Lewis C. André Lévesque Renlin Xu

Pseudomonas sp. strain 2-92, isolated from a Canadian field plot under long-term mineral fertilization, strongly inhibits the growth of Fusarium graminearum, Rhizoctonia solani, and Gaeumannomyces graminis. Here, we report the draft genome sequence of Pseudomonas sp. strain 2-92.

2014
Tim J Dumonceaux Jennifer Town Matthew G Links Sue Boyetchko

Pseudomonas sp. BRG100 inhibits the growth of certain agricultural pests and is a potentially useful biopesticide for weeds and plant diseases. We have sequenced the 6.25-Mbp genome of this strain and assembled it into 4 scaffolds. Genome sequence comparisons revealed that this strain may represent a novel species of Pseudomonas.

2013
Gaoyi Cao Yunjun Liu Guiming Liu Jianhua Wang Guoying Wang

Pseudomonas strain P818 was isolated from glyphosate-polluted soil in China. This bacterium presents a capacity for high glyphosate tolerance. We present the draft genome sequence of the strain Pseudomonas P818. The genes involved in the glyphosate tolerance were identified. This genomic information will facilitate the study of glyphosate tolerance mechanisms.

2018
Qingjing Peng Langbo Yi Lulu Zhou Qingzhong Peng

Pseudomonas chlororaphis strain L19, isolated from stone coal soil, has the ability to perform bioleaching to release vanadium ions from mineral ore. Here, we report the draft genome sequence and annotation of the vanadium-leaching bacterium Pseudomonas chlororaphis L19. These data provide information for understanding the genomic properties and mineral bioleaching mechanisms of strain L19.

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