نتایج جستجو برای: heavy metal resistance

تعداد نتایج: 671660  

2014
Irena B Ivshina Maria S Kuyukina Anastasiya V Krivoruchko Valérie Barbe Cécile Fischer

We report a draft genome sequence of Rhodococcus ruber IEGM 231, isolated from a water spring near an oil-extracting enterprise (Perm region, Russian Federation). This sequence provides important insights into the genetic mechanisms of propane and n-butane metabolism, organic sulfide and beta-sitosterol biotransformation, glycolipid biosurfactant production, and heavy metal resistance in actino...

2017
Adela M. Luján Sofía Feliziani Andrea M. Smania

Pseudomonas aeruginosa Hex1T was isolated from soils contaminated with used lubricating oil from a garage in Córdoba, Argentina. This strain is capable of utilizing this pollutant as the sole carbon and energy source. Here, we present the 6.9-Mb draft genome sequence of Hex1T, which contains many heavy metal-resistance genes.

2017
Elham Karimi Jorge M S Gonçalves Margarida Reis Rodrigo Costa

Here, we describe the draft genome sequence of Microbacterium sp. strain Alg239_V18, an actinobacterium retrieved from the marine sponge Spongia sp. Genome annotation revealed a vast gene repertoire involved in antibiotic and heavy metal-resistance, and a versatile carbohydrate assimilation metabolism with potential for chitin utilization.

Journal: :Blood 2020

Journal: :international journal of advanced biological and biomedical research 2014
sara raeisi javad sharifi rad majid sharifi rad hamideh zakariaei

the heavy metals concentrations including zinc, copper, lead and cadmium (zn, cu, pb and cd) in water and sediments in gorgan bay and their accumulation in rutilus frisii kutum, acipenser persicus, rutilus rutilus caspicus and cyprinus carpio organs (gills, muscle, kidney and liver) were investigated. there was substantial increase in concentration of heavy metals ingoing from the water to the ...

2016
Rupa Iyer Ashish Damania

Rhizobium sp. GHKF11 is an organophosphate-degrading bacterial strain that was isolated from farmland soil in Pecan Grove, Texas, USA. In addition to a capacity for pesticide degradation, GHKF11 shares conserved traits with other Rhizobium spp., including heavy metal resistance and transport genes that may have significant agricultural biotechnology applications.

2016
Robert Almstrand Ameet J. Pinto Linda A. Figueroa Jonathan O. Sharp

Sulfate-reducing bacteria are important players in the global sulfur cycle and of considerable commercial interest. The draft genome sequence of a sulfate-reducing bacterium of the family Desulfobacteraceae, assembled from a sulfate-reducing bioreactor metagenome, indicates that heavy-metal- and acid-resistance traits of this organism may be of importance for its application in acid mine draina...

Journal: :Applied and environmental microbiology 1988
M Chiong R Barra E González C Vásquez

Two members of the genus Thermus were examined for their resistance to toxic inorganic compounds. They both proved to be fairly resistant to tellurite and selenite and to many other heavy metal salts. Cell extracts of Thermus thermophilus HB8 and of T. flavus AT-62 catalyze the reduction of K(2)TeO(3) in a reaction which is dependent on NADH oxidation.

2016
Eleonora Egidi Jennifer L. Wood Sanja Aracic Ruban Kannan Lachlan McDonald Carolyn A. Bell Edward M. Fox Wuxing Liu Ashley E. Franks

We report here the draft genome of Enterobacter ludwigii NCR3, a Gram-negative bacterium isolated from the Carpobrotus rossii (Haw.) Schwantes rhizosphere. The analysis of the ~4.8-Mb draft genome shows that this strain harbors several genes associated with heavy metal resistance and plant growth-promoting activity, suggesting its potential application in microbe-assisted phytoremediation.

2017
Mike L Dyall-Smith Yuhong Liu Helen Billman-Jacobe

We report the genome sequence of a monophasic Salmonella enterica subsp. enterica Typhimurium strain (TW-Stm6) isolated in Australia that is similar to epidemic multidrug-resistant strains from Europe and elsewhere. This strain carries additional antibiotic and heavy-metal resistance genes on a large (275-kb) IncHI2 plasmid.

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