نتایج جستجو برای: pseudomonas fluorescens utpf68
تعداد نتایج: 53242 فیلتر نتایج به سال:
Morgan, W. T. J. & Elson, L. A. (1934). Biochem. J. 28,988. Morgan, W. T. J. & Partridge, S. M. (1940). Biochem. J. 34, 169. Morgan, W. T. J. & Partridge, S. M. (1941a). Biochem. J. 35, 1140. Morgan, W. T. J. & Partridge, S. M. (1941 b). Chem. & Ind. 60, 722. Partridge, S. M. (1948). Biochem. J. 42, 251. Partridge, S. M. & Morgan, W. T. J. (1940). Brit. J. exp. Path. 21, 180. Sevag, M. G. (1934...
The Pseudomonas genus contains a metabolically versatile group of organisms that are known to occupy numerous ecological niches, including the rhizosphere and endosphere of many plants. Their diversity influences the phylogenetic diversity and heterogeneity of these communities. On the basis of average amino acid identity, comparative genome analysis of >1,000 Pseudomonas genomes, including 21 ...
A bacterial strain was isolated from a wastewater lagoon and identified as Pseudomonas fluorescens. This isolate was able to utilize linalool as a sole carbon and energy source. The ability was found to be encoded on a 60-megadalton transmissible plasmid, pSRQ60. The plasmid was also mated into a commercial waste treatment strain, which expanded its ability to utilize other isoprenoid compounds.
From Pseudomonas fluorescens PL7 and PL8 structurally related pyoverdins were isolated and their primary structures were elucidated by spectroscopic methods and degradation reactions. Despite of some structural differences both Fe(III) complexes are taken up by either strain with a high rate. The implications regarding the recognition at the cell surface are discussed.
سودوموناسهای فلورسنت از مهمترین عوامل کنترل بیولوژیک بیماریهای گیاهی هستند که بهصورت مستقیم، با تولید و ترشح متابولیت های بازدارنده و سیدروفورها، سبب محدودکردن یا توقف رشد بیمارگرهای گیاهی بهویژه قارچ ها میشوند و برخی با تولید هورمونهای مختلف سبب افزایش رشد گیاه میشوند. هدف از این پژوهش معرفی و بررسی برخی خصوصیات استرین جدید p. fluorescen utpf68است که از منطقه ریزوسفر گیاه کلزا مزارع ...
Fluorescent pseudomonads protecting plant roots from phytopathogens by producing 2,4-diacetylphloroglucinol (DAPG) are considered to form a monophyletic lineage comprised of DAPG+Pseudomonas strains in the "P. corrugata" and "P. protegens" subgroups of the "Pseudomonas fluorescens" group. However, DAPG production ability has not been investigated for many species of these two subgroups, and whe...
The structure of the pyoverdin siderophore of Pseudomonas fluorescens 18.1 was elucidated by spectroscopic methods and chemical degradation. By cross feeding studies structurally closely related pyoverdins containing a C-terminal cyclopeptidic substructure were tested regarding the mutual recognition by the producing strains. Partial recognition of foreign pyoverdins was observed.
Phytoncides are organic compounds, produced by plants in order to protect them from different microorganisms. Over the years a number of plants and their extracts are subjected to investigation of their antibacterial properties. The increase in the number of side reactions caused by antibiotics, and other drugs used in medical practice, turned back the attention of many scientists to studies of...
Of 200 water isolates screened, five strains of Pseudomonas fluorescens and one strain of Pseudomonas aeruginosa were cyanogenic. Maximum cyanogenesis by two strains of P. fluorescens in a defined growth medium occurred at 25 to 30 degrees C over a pH range of 6.6 to 8.9. Cyanide production per cell was optimum at 300 mM phosphate. A linear relationship was observed between cyanogenesis and the...
The in vitro susceptibilities of three Pseudomonas species (Pseudomonas aeruginosa, Pseudomonas putida, and Pseudomonas fluorescens) and Xanthomonas maltophilia to quinolone antimicrobial agents were determined. Several newer agents, particularly PD117558, PD117596, PD127391, sparfloxacin (AT-4140), A-56620, and temafloxacin, were active against Pseudomonas species. X. maltophilia isolates were...
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