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Artykuły w czasopismach na temat "Genus Pseudomonas"

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Brown, Gerry, Zeayen Khan, and Ran Lifshitz. "Plant growth promoting rhizobacteria: strain identification by restriction fragment length polymorphisms." Canadian Journal of Microbiology 36, no. 4 (1990): 242–48. http://dx.doi.org/10.1139/m90-042.

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A genomic library of the Pseudomonas putida strain GR12-2 was screened to identify both genus-universal and strain-specific 8-kilobase inserts. The genus-universal clone (pAM141), in combination with the restriction enzymes EcoRI, PstI, and PvuII, was used to generate unique restriction fragment length polymorphisms for 20 related plant growth promoting rhizobacteria and seven reference strains. Strain restriction fragment length polymorphism profiles based on the genus-universal clone pAM141 allow positive identification of individual pseudomonad strains. The strain-specific clone (pAM227) cl
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Reddy, Gundlapalli S. N., Genki I. Matsumoto, Peter Schumann, Erko Stackebrandt, and Sisinthy Shivaji. "Psychrophilic pseudomonads from Antarctica: Pseudomonas antarctica sp. nov., Pseudomonas meridiana sp. nov. and Pseudomonas proteolytica sp. nov." International Journal of Systematic and Evolutionary Microbiology 54, no. 3 (2004): 713–19. http://dx.doi.org/10.1099/ijs.0.02827-0.

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Thirty-one bacteria that belonged to the genus Pseudomonas were isolated from cyanobacterial mat samples that were collected from various water bodies in Antarctica. All 31 isolates were psychrophilic; they could be divided into three groups, based on their protein profiles. Representative strains of each of the three groups, namely CMS 35T, CMS 38T and CMS 64T, were studied in detail. Based on 16S rRNA gene sequence analysis, it was established that the strains were related closely to the Pseudomonas fluorescens group. Phenotypic and chemotaxonomic characteristics further confirmed their affi
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Blanco-Romero, Esther, Daniel Garrido-Sanz, Rafael Rivilla, Miguel Redondo-Nieto, and Marta Martín. "In Silico Characterization and Phylogenetic Distribution of Extracellular Matrix Components in the Model Rhizobacteria Pseudomonas fluorescens F113 and Other Pseudomonads." Microorganisms 8, no. 11 (2020): 1740. http://dx.doi.org/10.3390/microorganisms8111740.

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Biofilms are complex structures that are crucial during host–bacteria interaction and colonization. Bacteria within biofilms are surrounded by an extracellular matrix (ECM) typically composed of proteins, polysaccharides, lipids, and DNA. Pseudomonads contain a variety of ECM components, some of which have been extensively characterized. However, neither the ECM composition of plant-associated pseudomonads nor their phylogenetic distribution within the genus has been so thoroughly studied. In this work, we use in silico methods to describe the ECM composition of Pseudomonas fluorescens F113, a
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Young, J. M., and D. C. Park. "Probable synonymy of the nitrogen-fixing genus Azotobacter and the genus Pseudomonas." International Journal of Systematic and Evolutionary Microbiology 57, no. 12 (2007): 2894–901. http://dx.doi.org/10.1099/ijs.0.64969-0.

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The relationships of the genus Azotobacter, Azomonas macrocytogenes and the genus Pseudomonas were revealed by comparative analysis of partial 16S rRNA and atpD, carA and recA gene sequences and as concatenated nucleotide and peptide sequences. Sequence similarities of Azotobacter species and Azomonas macrocytogenes indicated that these may be considered to be synonyms at the molecular level. In addition, these species show an intimate relationship with species of Pseudomonas, especially P. aeruginosa (the type species of the genus). In terms of the current circumscription of the genus Pseudom
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Rivilla, Rafael, and Jacob G. Malone. "Plant-Associated Pseudomonads." Microorganisms 11, no. 5 (2023): 1216. http://dx.doi.org/10.3390/microorganisms11051216.

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Bacteria belonging to the genus Pseudomonas (the pseudomonads) are a group of Gammaproteobacteria that are characterized by a high metabolic versatility and adaption to different ecological niches [...]
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Ramos, Elena, Martha-Helena Ramírez-Bahena, Angel Valverde, et al. "Pseudomonas punonensis sp. nov., isolated from straw." International Journal of Systematic and Evolutionary Microbiology 63, Pt_5 (2013): 1834–39. http://dx.doi.org/10.1099/ijs.0.042119-0.

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During a study of the ‘tunta’ (frozen-dry potato) production process in Peru, a bacterial strain, LMT03T, was isolated from the straw grass in which the potatoes are dried. This strain was classified into the genus Pseudomonas on the basis of the 16S rRNA gene sequence analysis, and is most closely related to Pseudomonas argentinensis CH01T with 99.3 % identity in this gene and 96 %, 92 % and 86 % identities in rpoB, rpoD and gyrB genes, respectively. Strain LMT03T has a single polar flagellum, like other related yellow-pigment-producing pseudomonads. The major quinone is Q-9. The major fatty
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Bozal, Núria, M. Jesús Montes, and Elena Mercadé. "Pseudomonas guineae sp. nov., a novel psychrotolerant bacterium from an Antarctic environment." International Journal of Systematic and Evolutionary Microbiology 57, no. 11 (2007): 2609–12. http://dx.doi.org/10.1099/ijs.0.65141-0.

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Two Gram-negative, cold-adapted, aerobic bacteria, designated strains M8T and M6, were isolated from soil collected from the South Shetland Islands. The organisms were rod-shaped, catalase- and oxidase-positive and motile by means of polar flagella. These two psychrotolerant strains grew between −4 and 30 °C. 16S rRNA gene sequence analysis placed strains M8T and M6 within the genus Pseudomonas. DNA–DNA hybridization experiments between the Antarctic isolate M8T and type strains of phylogenetically related species, namely Pseudomonas peli and Pseudomonas anguilliseptica, revealed levels of rel
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Götze, Sebastian, and Pierre Stallforth. "Structure, properties, and biological functions of nonribosomal lipopeptides from pseudomonads." Natural Product Reports 37, no. 1 (2020): 29–54. http://dx.doi.org/10.1039/c9np00022d.

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Bacteria of the genus Pseudomonas display a fascinating metabolic diversity. In this review, we focus our attention on the natural product class of nonribosomal lipopeptides, which help pseudomonads to colonize a wide range of ecological niches.
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Švec, Pavel, Marcel Kosina, Michal Zeman, et al. "Pseudomonas karstica sp. nov. and Pseudomonas spelaei sp. nov., isolated from calcite moonmilk deposits from caves." International Journal of Systematic and Evolutionary Microbiology 70, no. 9 (2020): 5131–40. http://dx.doi.org/10.1099/ijsem.0.004393.

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A taxonomic study of two fluorescent Pseudomonas strains (HJ/4T and SJ/9/1T) isolated from calcite moonmilk samples obtained from two caves in the Moravian Karst in the Czech Republic was carried out. Results of initial 16S rRNA gene sequence analysis assigned both strains into the genus Pseudomonas and showed Pseudomonas yamanorum 8H1T as their closest neighbour with 99.8 and 99.7 % 16S rRNA gene similarities to strains HJ/4T and SJ/9/1T, respectively. Subsequent sequence analysis of rpoD, rpoB and gyrB housekeeping genes confirmed the highest similarity of both isolates to P. yamanorum 8H1T,
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Faustova, M. O. "SENSITIVITY OF GRAM-NEGATIVE CAUSATIVE AGENTS OF INFECTIOUS INFLAMMATORY DISEASES OF SOFT TISSUES OF THE FACIAL REGION TO ANTIBIOTICS." Актуальні проблеми сучасної медицини: Вісник Української медичної стоматологічної академії 22, no. 3-4 (2022): 169–72. http://dx.doi.org/10.31718/2077-1096.22.3.4.169.

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Today timely monitoring of the sensitivity of gram-negative non-fermenting bacteria taken from various sites of the human body to antibiotics is extremely important in the way of stopping and overcoming significant spread of antibiotic resistance. The aim of this study is to determine the sensitivity of gram-negative causative agents of infectious inflammatory diseases of soft tissues of the face region to antibiotics. Materials and methods. The study included 25 clinical isolates of the genus Acinetobacter and 22 clinical isolates of the genus Pseudomonas. Determination of the sensitivity of
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Rozprawy doktorskie na temat "Genus Pseudomonas"

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Roush, Wendy A. "Pyrimidine Genes in Pseudomonas Species." Thesis, University of North Texas, 2003. https://digital.library.unt.edu/ark:/67531/metadc4395/.

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This thesis is a comparative study of gene arrangements in Pseudomonas species, and is organized into three major sections. The first section compares gene arrangements for different pathways in Pseudomonas aeruginosa PAO1 to determine if the gene arrangements are similar to previous studies. It also serves as a reference for pyrimidine gene arrangements in P. aeruginosa. The second part compares the physical, and genetic maps of P. aeruginosa PAO1 with the genome sequence. The final section compares pyrimidine gene arrangements in three species of Pseudomonas. Pyrimidine biosynthesis and
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Hughes, M. A. "Transfer RNA genes in Pseudomonas aeruginosa." Thesis, University of Liverpool, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.370854.

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Crescente, Vincenzo. "Azoreductases : genes and proteins in Pseudomonas aeruginosa." Thesis, Kingston University, 2015. http://eprints.kingston.ac.uk/36328/.

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Pseudomonas aeruginosa is one of the primary causes of opportunistic infections in humans and it is associated with both acute and chronic infections in immunocompromised individuals. This bacterium is extremely resistant to many antibiotics, making the treatments against this pathogen often unsuccessful. Azoreductases, a family of enzymes involved in the reduction of azo compounds and quinones, are found in many bacterial species including P. aeruginosa. Although the enzymatic activity of three of these enzymes has been extensively characterized, their physiological role remains unclear. In t
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Whatling, Carl Andrew. "Molecular analysis of the genes involved in the biosynthesis of pseudomonic acid, a polyketide antibiotic produced by Pseudomonas fluorescens NCIB10586." Thesis, University of Birmingham, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.249120.

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Jackson, Robert Wilson. "Plasmids and virulence in Pseudomonas syringae pv. phaseolicola." Thesis, University of the West of England, Bristol, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.389510.

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Beilen, Jan Berthold van. "Alkane oxidation by Pseudomonas oleovorans: genes and proteins." [S.l. : [Groningen : s.n.] ; University Library Groningen] [Host], 1994. http://irs.ub.rug.nl/ppn/292892500.

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Goymer, Patrick. "The role of the WspR response regulator in the adaptive evolution of experimental populations of Pseudomonas fluorescens SBW25." Thesis, University of Oxford, 2002. http://ora.ox.ac.uk/objects/uuid:52629a69-2863-4d90-8193-641ed91c286b.

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The role of ecological opportunity in adaptive radiation has been demonstrated by the diversification of the bacterium Pseudomonas fluorescens SBW25 in a spatially structured microcosm. This provides an ideal system for studying the genetics of adaptation and asking questions about the genes that matter in evolution. Previous studies have identified the genes that are necessary for the evolved, biofilm-forming, niche-specialist genotype, the wrinkly spreader (WS). These genes are organised in two operons: the wss operon that encodes the genes for cellulose biosynthesis, and the wsp operon that
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Finelli, Antonio. "Identification of genes important to Pseudomonas aeruginosa biofilm formation." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2001. http://www.collectionscanada.ca/obj/s4/f2/dsk3/ftp05/MQ63147.pdf.

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Weathers, Krystin. "Expression of Foreign Genes in the Pseudomonas Bacteriophage Pf3." VCU Scholars Compass, 2012. http://scholarscompass.vcu.edu/etd/357.

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Filamentous bacteriophages were engineered to express foreign genes with the ultimate purpose of displaying transmission control anti-malarial peptides as in phage display. It was hypothesized that expression of foreign genes would be possible using the phage’s promoters. This hypothesis was tested by assuming that promoters for the phage major coat protein (MCP) gene would also promote the expression of any foreign gene inserted downstream of the MCP gene. As proof of principle, the bacteriophages Pf3, Pf1, and M13 were engineered in this way to successfully synthesize Enhanced Green Fluoresc
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Arévalo-Ferro, Catalina. "A proteomics view of quorum-sensing regulated and surface induced genes in representative Pseudomonas and Burkholderia species." [S.l. : s.n.], 2004. http://deposit.ddb.de/cgi-bin/dokserv?idn=97204650X.

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Książki na temat "Genus Pseudomonas"

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Whatling, Carl Andrew. Molecular analysis of the genes involved in the biosynthesis of pseudomonic acid, a polyketide antibiotic produced by Pseudomonas fluorescens NCIB10586. University of Birmingham, 1993.

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Finelli, Antonio. Identification of genes important to Pseudomonas aeruginosa biofilm formation. National Library of Canada, 2001.

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Orser, Cindy Sue. Cloning and expression of Pseudomonas syringae: Pathovar syringae and Erwinia herbicola ice nucleation genes in Escherichia coli. University Microfilms, 1986.

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Ahmed Kassem Abd El-Samad El-Sayed. Molecular biological studies on the genes of Pseudomonas fluorescens NC1B10586 which encode biosynthesis of the polyketide antibiotic mupirocin. University of Birmingham, 2001.

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Kline, Richard M. Study of the Somatic Antigens and Biochemical Properties of Selected Species of the Genus Pseudomonas. Creative Media Partners, LLC, 2021.

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Ravatin, Roald. Horizontal transfer of a 105-kb integrative element harbouring the chlorocatechol degradation genes from Pseudomonas sp. strain B13. 1998.

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Švercel, Miroslav. The influence of extremely long-term grapevine monocultures on the diversity of the key biocontrol genes phlD and hcnAB in Pseudomonas SPP. 2007.

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Zhao, Genshi. Biosynthesis of phenylalanine and tyrosine in pseudomonas aeruginosa and zymomonas mobilis: Molecular cloning of the genes encoding cyclohexadienyl dehydratase and cyclohexadienyl dehydrogenase, and characterization of the gene products. 1991.

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Części książek na temat "Genus Pseudomonas"

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Thomas, Christopher M., and Anthony S. Haines. "Plasmids of the Genus Pseudomonas." In Pseudomonas. Springer US, 2004. http://dx.doi.org/10.1007/978-1-4419-9086-0_7.

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Libisch, Balázs. "Molecular Typing Methods for the Genus Pseudomonas." In Molecular Typing in Bacterial Infections. Humana Press, 2012. http://dx.doi.org/10.1007/978-1-62703-185-1_24.

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Filloux, Alain, Sophie de Bentzmann, Marianne Aurouze, Andrée Lazdunski, and Isabelle Vallet. "Fimbrial Genes in Pseudomonas aeruginosa and Pseudomonas putida." In Pseudomonas. Springer US, 2004. http://dx.doi.org/10.1007/978-1-4419-9086-0_24.

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Waara, Tomas, Mats Jansson, and Kurt Pettersson. "Phosphorus composition and release in sediment bacteria of the genus Pseudomonas during aerobic and anaerobic conditions." In Proceedings of the Third International Workshop on Phosphorus in Sediments. Springer Netherlands, 1993. http://dx.doi.org/10.1007/978-94-011-1598-8_16.

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Preston, Gail M., and Alan Collmer. "The Type III Secretion Systems of Plant-Associated Pseudomonads: Genes and Proteins on the Move." In Pseudomonas. Springer US, 2004. http://dx.doi.org/10.1007/978-1-4419-9084-6_6.

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Liao, C. H., and J. M. Wells. "Properties of Yellow (Orange)-Pigmented Strains of Soft Rot Bacteria in the Genus Xanthomonas, Pseudomonas, Cytophaga, and Erwinia." In Plant Pathogenic Bacteria. Springer Netherlands, 1987. http://dx.doi.org/10.1007/978-94-009-3555-6_118.

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Chakrabarty, A. M. "Moving Ahead with Pseudomonad Genes." In Many Faces, Many Microbes. ASM Press, 2014. http://dx.doi.org/10.1128/9781555818128.ch30.

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Murillo, J., D. Butcher, R. Jackson, G. W. Sundin, A. Vivian, and D. Arnold. "Methods for the Identification of Virulence Genes in Pseudomonas syringae." In Pseudomonas syringae and related pathogens. Springer Netherlands, 2003. http://dx.doi.org/10.1007/978-94-017-0133-4_14.

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Loreti, S., A. Gallelli, R. Jackson, D. Butcher, D. Arnold, and A. Vivian. "Characterisation of Effector Genes of Pseudomonads Causing Disease on Hazelnut." In Pseudomonas syringae and related pathogens. Springer Netherlands, 2003. http://dx.doi.org/10.1007/978-94-017-0133-4_42.

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Sundheim, L. "Effect of Chitinase Encoding Genes in Biocontrol Pseudomonas Spp." In Biological Control of Plant Diseases. Springer US, 1992. http://dx.doi.org/10.1007/978-1-4757-9468-7_45.

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Streszczenia konferencji na temat "Genus Pseudomonas"

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Tanji, Yasunori, Takuya Handa, and Kazuhiko Miyanaga. "Microbiologically Influenced Corrosion of Carbon Steel in Aqueous Natural Gas Plant." In CORROSION 2010. NACE International, 2010. https://doi.org/10.5006/c2010-10219.

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Abstract In the aqueous natural gas plants, the injection well was corroded after a few years because of sulfuric acid addition to adjust pH for iodine separation. To identify the corrosion factor, microbial communities and corrosion in the plants were compared using sulfuric acid or hydrochloric acid as a pH conditioner. Genus Pseudomonas and methanogenic archaea were dominant in 16S rRNA gene library constructed from production water. The dominant SRB species was different depending on the pH conditioner. According to DAPI staining and DGGE analysis, the cell concentration increased and bact
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Bezler, N. V., and M. Yu Petyurenko. "Bacteria of Pseudomonas genus in sugar beet agrocenosis." In 2nd International Scientific Conference "Plants and Microbes: the Future of Biotechnology". PLAMIC2020 Organizing committee, 2020. http://dx.doi.org/10.28983/plamic2020.043.

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Bacteria of Pseudomonas genus able to fix nitrogen and to produce heteroauxin are developed on roots of sugar beet. Their isolation from rhizoplane and introduction onto surface of sugar beet leaf apparatus promotes development of aerobic spore-forming bacteria, ammonificators, and nitrogen immobilizators that activates growing of leaf blade growth, syntheses of sucrose and growth of beet roots.
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Moiseeva, E. V., L. P. Bobrikova, E. V. Karaseva, A. A. Khudokormov, A. A. Samkov, and N. N. Volchenko. "Taxonomic diversity of lipolytic bacteria isolated at oil refineries in Krasnodar that is promising for bio-preparation." In 2nd International Scientific Conference "Plants and Microbes: the Future of Biotechnology". PLAMIC2020 Organizing committee, 2020. http://dx.doi.org/10.28983/plamic2020.173.

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From the lipid-containing wastes, 20 strains of bacteria were isolated. According to MALDI, their taxonomic identity is established, the 13 most active lipolytic strains are classified as 8 genera, the dominant is the genus Pseudomonas.
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Rastimesina, Inna, Olga Postolachi, Valentina Josan, Alina Cotoman, and Vera Mamaliga. "Screening of low density polyethylene degrading microorganisms." In National Scientific Symposium With International Participation: Modern Biotechnologies – Solutions to the Challenges of the Contemporary World. Institute of Microbiology and Biotechnology, Republic of Moldova, 2021. http://dx.doi.org/10.52757/imb21.003.

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Bacteria, actinobacteria, and micromycetes stored in the National Collection of NonPathogenic Microorganisms (CNMN) were assessed for the capacity to grow and degrade LDPE. There were tested 15 strains of bacteria from genera Pseudomonas, Bacillus, Streptomyces, and Rhodococcus, and 15 strains of micromycetes from genera Penicillium and Aspergillus. Among the studied bacterial strains, actinobacteria were more effective in LDPE degradation than bacilli and Pseudomonas spp. The members of genus Penicillium, in comparing with Aspergillus spp., degraded LDPE more actively.
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Harwotova, Marketa. "THE EFFECT OF CONTAMINATED ENVIRONMENT ON THE MULTI-RESISTANCE OF NEW ISOLATES OF PSEUDOMONAS GENUS." In 15th International Multidisciplinary Scientific GeoConference SGEM2015. Stef92 Technology, 2015. http://dx.doi.org/10.5593/sgem2015/b61/s25.083.

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Dmitrieva, A. M., and N. L. Belkova. "IDENTIFICATION OF THE GENE CONTAINING THE PRODUCTION OF ANTIBIOTICS OF 2,4-DIAGETYL FLOROGLUCINOL IN THE GENES OF BACTERIA OF THE GENUS PSEUDOMONAS." In The All-Russian Scientific Conference with International Participation and Schools of Young Scientists "Mechanisms of resistance of plants and microorganisms to unfavorable environmental". SIPPB SB RAS, 2018. http://dx.doi.org/10.31255/978-5-94797-319-8-268-272.

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Andriiciuc, Tatiana, and Alla Skoreiko. "Biofungicides compositions for sunflower protection." In Scientific International Symposium "Plant Protection – Achievements and Perspectives". Institute of Genetics, Physiology and Plant Protection, Republic of Moldova, 2023. http://dx.doi.org/10.53040/ppap2023.16.

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The results of following biofungicides usage on sunflower against Alternaria blight, Embellisia blight, phomosis, phomopsis in Western Region of Ukraine proposed in present paper. Among them were MicoHelp – liquid (fungi genus Trichoderma, bacterium Bacillus subtilis, Azotobacter, Enterobacter, Enterococcus, titer not less than 1,0×109 CFU/cm3), (1,0l/t); Gliocladyn BT- liquid (Gliocladium virens, titer – 1,5·109 CFU/cm3), (2,0 l/t); Trichopsin BT-liquid(fungi spores Trichoderma viride Т-4 and bacterium Pseudomonas aureofaciens 306;titer not less 2,0х1010 CFU/cm3), (2,5l/t) separately or in co
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Galieva, Gulnaz, Guliua Sageeva, Aleksander Gordeev, Polina Kuryntseva, and Polina Galitskaya. "SUPPRESSION OF FUNGAL PHYTOPATHOGENS (FUSARIUM SPP AND ALTERNARIA SPP) ON THE TOMATO LEAVES BY THE RHAMNOLIPIDS PRODUCED BY PSEUDOMONAS AERUGINOSA PAO1." In 23rd SGEM International Multidisciplinary Scientific GeoConference 2023. STEF92 Technology, 2023. http://dx.doi.org/10.5593/sgem2023/6.1/s25.28.

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Suppression of fungal phytopathogens is one of the serious challenges agriculture and forestry since they cause significant biomass and yield losses. One of the alternative methods of suppression phytopathogens is the use of biosurfactants, which are amphiphilic substances produced by many microbes. Bacteria of Pseudomonas genus are known to produce biosurfactants of the rhamnolipid class. These surfactants can possess antimicrobial and fungicidal properties. In this work, we studied the effect of various concentrations of rhamnolipid (100, 500, 1000 mg/l), produced by Pseudomonas aeruginosa P
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Bogdan-Golubi, Nina, and Valerina Slanina. "The viability of bacillus, pseudomonas and lactic acid bacteria strains after 15 years of storage." In 5th International Scientific Conference on Microbial Biotechnology. Institute of Microbiology and Biotechnology, Republic of Moldova, 2022. http://dx.doi.org/10.52757/imb22.14.

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The National Collection of Nonpathogenic Microorganisms (NCNM) contains bacterial species like Rhizobium sp., Pseudomonas sp., Bacillus sp., which are known for their antimicrobial activity, plant stimulation effects, and exometabolites that can be used for plant protection. Some can be used for the insect and plant disease controls. The Collection also contains the lactic acid bacteria isolated from naturally fermented homemade dairy foods, that can be used for obtaining sour cream, fresh cheese, yoghurt, soy milk, brined cheese. These bacteria permit to create a better taste, flavor and text
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Samoilova, Anna. "https://orcid.org/0000-0002-6551-0955." In Scientific International Symposium “Advanced Biotechnologies - Achievements and Prospects” (VIth Edition). Institute of Genetics, Physiology and Plant Protection, 2022. http://dx.doi.org/10.53040/abap6.2022.73.

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Bacterium Pseudomonas syringae van Hall and its pathovars was placed on the top of the ten most important plant pathogens list due to the huge importance for the science and economics [Mansfield et al, 2012]. At present it is known about 60 pathovars of the bacterium Pseudomonas syringae van Hall. The causative agent of bacterial canker disease, bacterium Ps. syringae pv. syringae, is one of the most economically significant Ps. syringae pathovars which affects about 180 plant species. The bacterial pathogen can substantially reduce the yield of economically important cultures such as pear, apple
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Raporty organizacyjne na temat "Genus Pseudomonas"

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Krawiec, S. Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. [Pseudomonas, Thiobacillus, Rhodococcus]. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/5653703.

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Chen, Yona, Jeffrey Buyer, and Yitzhak Hadar. Microbial Activity in the Rhizosphere in Relation to the Iron Nutrition of Plants. United States Department of Agriculture, 1993. http://dx.doi.org/10.32747/1993.7613020.bard.

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Iron is the fourth most abundant element in the soil, but since it forms insoluble hydroxides at neutral and basic pH, it often falls short of meeting the basic requirements of plants and microorganisms. Most aerobic and facultative aerobic microorganisms possess a high-affinity Fe transport system in which siderophores are excreted and the consequent Fe complex is taken up via a cognate specific receptor and a transport pathway. The role of the siderophore in Fe uptake by plants and microorganisms was the focus of this study. In this research Rhizopus arrhizus was found to produce a novel sid
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Wackett, Lawrence, Raphi Mandelbaum, and Michael Sadowsky. Bacterial Mineralization of Atrazine as a Model for Herbicide Biodegradation: Molecular and Applied Aspects. United States Department of Agriculture, 1999. http://dx.doi.org/10.32747/1999.7695835.bard.

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Atrazine is a broadly used herbicide in agriculture and it was used here as a model to study the biodegradation of herbicides. The bacterium Pseudomonas sp. ADP metabolizes atrazine to carbon dioxide and ammonia and chloride. The genes encoding atrazine catabolism to cyanuric acid were cloned and expressed in Escherichia coli. The genes were designated atzA, atzB and atzC. Each gene was sequenced. The enzyme activities were characterized. AtzA is atrazine chlorohydrolase which takes atrazine to hydroxyatrizine. AtzB is hydroxyatrazine N-ethylaminohydrolase which produces N-isopropylammelide an
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Michel Jr., Frederick C., Harry A. J. Hoitink, Yitzhak Hadar, and Dror Minz. Microbial Communities Active in Soil-Induced Systemic Plant Disease Resistance. United States Department of Agriculture, 2005. http://dx.doi.org/10.32747/2005.7586476.bard.

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Induced Systemic Resistance (ISR) is a highly variable property that can be induced by compost amendment of potting media and soils. For example, previous studies showed that only 1 of 79 potting mixes prepared with different batches of mature composts produced from several different types of solid wastes were able to suppress the severity of bacterial leaf spot of radish caused by Xanthomonas campestris pv. armoraciae compared with disease on plants produced in a nonamended sphagnum peat mix. In this project, microbial consortia in the rhizosphere of plants grown in ISR-active compost-amended
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Krawiec, S. Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. Tenth quarterly report. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/10134616.

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Zamir, Dani, Steven Tanksley, and Robert Fluhr. Cloning a Fusarium Resistance Gene in Tomato Based on Knowledge of its Map Position. United States Department of Agriculture, 1995. http://dx.doi.org/10.32747/1995.7604934.bard.

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The objectives of this project were to develop the tools and methodologies for positional cloning of genes in tomato and apply them for the cloning a Fusarium resistance gene - I2.. The feasibility of positional cloning of disease resistance genes was demonstrated for Pto which confers resistance to pseudomonas (Martin et al. 1993). The Fusarium resistance gene was mapped genetically and physically and was found to be in close proximity to TG 105 (Segal et al. 1992). To obtain fine mapping of gene I2, and additional target genes in future projects, a high density linkage map was developed (Tan
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Krawiec, S. Molecular biological enhancement of coal desulfurization: Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. Office of Scientific and Technical Information (OSTI), 1991. http://dx.doi.org/10.2172/5587437.

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Krawiec, S. Molecular biological enhancement of coal desulfurization: Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. Office of Scientific and Technical Information (OSTI), 1991. http://dx.doi.org/10.2172/6224900.

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Krawiec, S. Molecular biological enhancement of coal desulfurization: Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. Eleventh quarterly report. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/10159410.

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Krawiec, S. Molecular biological enhancement of coal desulfurization: Cloning and expression of the sulfoxide/sulfone/sulfonate/sulfate genes in Pseudomonads and Thiobacillae. [Rhodococcus erythropolis, Thiobacillus acidophilus, Thiobacillus novellus]. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/5065996.

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