Suchergebnisse - "Schlömann, Michael"

  1. 1

    The iron-oxidizing proteobacteria von Hedrich, Sabrina, Schlömann, Michael, Johnson, D Barrie

    ISSN: 1465-2080, 1465-2080
    Veröffentlicht: England 01.06.2011
    Veröffentlicht in Microbiology (Society for General Microbiology) (01.06.2011)
    “… The 'iron bacteria' are a collection of morphologically and phylogenetically heterogeneous prokaryotes. They include some of the first micro-organisms to be …”
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  2. 2

    Biochemical characterization of an azoreductase from Rhodococcus opacus 1CP possessing methyl red degradation ability von Qi, Jingxian, Schlömann, Michael, Tischler, Dirk

    ISSN: 1381-1177, 1873-3158
    Veröffentlicht: Elsevier B.V 01.08.2016
    Veröffentlicht in Journal of molecular catalysis. B, Enzymatic (01.08.2016)
    “… [Display omitted] •Rhodococcus opacus 1CP grows on methyl red.•First azoreductase annotated and described of rhodococci.•Oxygen-insensitive and stable …”
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  3. 3

    Transcriptomic analysis of chloride tolerance in Leptospirillum ferriphilum DSM 14647 adapted to NaCl von Rivera-Araya, Javier, Heine, Thomas, Chávez, Renato, Schlömann, Michael, Levicán, Gloria

    ISSN: 1932-6203, 1932-6203
    Veröffentlicht: United States Public Library of Science 29.04.2022
    Veröffentlicht in PloS one (29.04.2022)
    “… Chloride ions are toxic for most acidophilic microorganisms. In this study, the chloride tolerance mechanisms in the acidophilic iron-oxidizing bacterium …”
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  4. 4

    Osmotic Imbalance, Cytoplasm Acidification and Oxidative Stress Induction Support the High Toxicity of Chloride in Acidophilic Bacteria von Rivera-Araya, Javier, Pollender, Andre, Huynh, Dieu, Schlömann, Michael, Chávez, Renato, Levicán, Gloria

    ISSN: 1664-302X, 1664-302X
    Veröffentlicht: Frontiers Media S.A 29.10.2019
    Veröffentlicht in Frontiers in microbiology (29.10.2019)
    “… In acidophilic microorganisms, anions like chloride have higher toxicity than their neutrophilic counterparts. In addition to the osmotic imbalance, chloride …”
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  5. 5

    Identification of a novel self-sufficient styrene monooxygenase from Rhodococcus opacus 1CP von Tischler, Dirk, Eulberg, Dirk, Lakner, Silvia, Kaschabek, Stefan R, van Berkel, Willem J H, Schlömann, Michael

    ISSN: 1098-5530, 1098-5530
    Veröffentlicht: United States 01.08.2009
    Veröffentlicht in Journal of bacteriology (01.08.2009)
    “… Sequence analysis of a 9-kb genomic fragment of the actinobacterium Rhodococcus opacus 1CP led to identification of an open reading frame encoding a novel …”
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  6. 6

    Metabolic history and metabolic fitness as drivers of anabolic heterogeneity in isogenic microbial populations von Calabrese, Federica, Stryhanyuk, Hryhoriy, Moraru, Cristina, Schlömann, Michael, Wick, Lukas Y., Richnow, Hans H., Musat, Florin, Musat, Niculina

    ISSN: 1462-2912, 1462-2920, 1462-2920
    Veröffentlicht: Hoboken, USA John Wiley & Sons, Inc 01.11.2021
    Veröffentlicht in Environmental microbiology (01.11.2021)
    “… Summary Microbial populations often display different degrees of heterogeneity in their substrate assimilation, that is, anabolic heterogeneity. It has been …”
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  7. 7

    Quantitation and Comparison of Phenotypic Heterogeneity Among Single Cells of Monoclonal Microbial Populations von Calabrese, Federica, Voloshynovska, Iryna, Musat, Florin, Thullner, Martin, Schlömann, Michael, Richnow, Hans H., Lambrecht, Johannes, Müller, Susann, Wick, Lukas Y., Musat, Niculina, Stryhanyuk, Hryhoriy

    ISSN: 1664-302X, 1664-302X
    Veröffentlicht: Switzerland Frontiers Media S.A 20.12.2019
    Veröffentlicht in Frontiers in microbiology (20.12.2019)
    “… Phenotypic heterogeneity within microbial populations arises even when the cells are exposed to putatively constant and homogeneous conditions. The outcome of …”
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  8. 8

    Genome Analysis of the Biotechnologically Relevant Acidophilic Iron Oxidising Strain JA12 Indicates Phylogenetic and Metabolic Diversity within the Novel Genus “Ferrovum” von Ullrich, Sophie R., Poehlein, Anja, Tischler, Judith S., González, Carolina, Ossandon, Francisco J., Daniel, Rolf, Holmes, David S., Schlömann, Michael, Mühling, Martin

    ISSN: 1932-6203, 1932-6203
    Veröffentlicht: United States Public Library of Science 01.01.2016
    Veröffentlicht in PloS one (01.01.2016)
    “… Members of the genus "Ferrovum" are ubiquitously distributed in acid mine drainage (AMD) waters which are characterised by their high metal and sulfate loads …”
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  9. 9

    Bench-scale study of the effect of phosphate on an aerobic iron oxidation plant for mine water treatment von Tischler, Judith S., Wiacek, Claudia, Janneck, Eberhard, Schlömann, Michael

    ISSN: 0043-1354, 1879-2448, 1879-2448
    Veröffentlicht: Kidlington Elsevier Ltd 01.01.2014
    Veröffentlicht in Water research (Oxford) (01.01.2014)
    “… At the opencast pit Nochten acidic iron- and sulfate-rich mine waters are treated biotechnologically in a mine-water treatment plant by microbial iron …”
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  10. 10

    Effect of Sodium Chloride on Pyrite Bioleaching and Initial Attachment by Sulfobacillus thermosulfidooxidans von Huynh, Dieu, Norambuena, Javiera, Boldt, Christin, Kaschabek, Stefan R., Levicán, Gloria, Schlömann, Michael

    ISSN: 1664-302X, 1664-302X
    Veröffentlicht: Frontiers Media S.A 11.09.2020
    Veröffentlicht in Frontiers in microbiology (11.09.2020)
    “… Biomining applies microorganisms to extract valuable metals from usually sulfidic ores. However, acidophilic iron (Fe)-oxidizing bacteria tend to be sensitive …”
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  11. 11

    StyA1 and StyA2B from Rhodococcus opacus 1CP: a multifunctional styrene monooxygenase system von Tischler, Dirk, Kermer, René, Gröning, Janosch A D, Kaschabek, Stefan R, van Berkel, Willem J H, Schlömann, Michael

    ISSN: 1098-5530, 1098-5530
    Veröffentlicht: United States 01.10.2010
    Veröffentlicht in Journal of bacteriology (01.10.2010)
    “… Two-component flavoprotein monooxygenases are emerging biocatalysts that generally consist of a monooxygenase and a reductase component. Here we show that …”
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  12. 12

    Bacterial diversity in a mine water treatment plant von Heinzel, Elke, Hedrich, Sabrina, Janneck, Eberhard, Glombitza, Franz, Seifert, Jana, Schlömann, Michael

    ISSN: 1098-5336, 1098-5336
    Veröffentlicht: United States 01.02.2009
    Veröffentlicht in Applied and environmental microbiology (01.02.2009)
    “… We investigated the microbial community in a pilot plant for treatment of acid mine water by biological ferrous iron oxidation using clone library analysis and …”
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  13. 13

    Population dynamics of iron-oxidizing communities in pilot plants for the treatment of acid mine waters von Heinzel, Elke, Janneck, Eberhard, Glombitza, Franz, Schlömann, Michael, Seifert, Jana

    ISSN: 0013-936X
    Veröffentlicht: United States 15.08.2009
    Veröffentlicht in Environmental science & technology (15.08.2009)
    “… The iron-oxidizing microbial community in two pilot plants for the treatment of acid mine water was monitored to investigate the influence of different process …”
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  14. 14

    Investigation of the co-metabolic transformation of 4-chlorostyrene into 4-chlorophenylacetic acid in Pseudomonas fluorescens ST von Stuhr, Anna, Hofmann, Sarah, Schlömann, Michael, Oelschlägel, Michel

    ISSN: 2215-017X, 2215-017X
    Veröffentlicht: Netherlands Elsevier B.V 01.06.2018
    Veröffentlicht in Biotechnology reports (Amsterdam, Netherlands) (01.06.2018)
    “… •Co-metabolic turnover of 4-Cl-styrene was investigated in a Pseudomonas strain.•Important parameters to optimize this co-metabolism were …”
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  15. 15

    Production of a recombinant membrane protein in an Escherichia coli strain for the whole cell biosynthesis of phenylacetic acids von Oelschlägel, Michel, Heiland, Claudia, Schlömann, Michael, Tischler, Dirk

    ISSN: 2215-017X, 2215-017X
    Veröffentlicht: Netherlands Elsevier B.V 01.09.2015
    Veröffentlicht in Biotechnology reports (Amsterdam, Netherlands) (01.09.2015)
    “… [Display omitted] The styrene oxide isomerase (SOI) represents a membrane-bound enzyme of the microbial styrene degradation pathway and has been discussed as …”
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  16. 16

    Co-metabolic formation of substituted phenylacetic acids by styrene-degrading bacteria von Oelschlägel, Michel, Kaschabek, Stefan R., Zimmerling, Juliane, Schlömann, Michael, Tischler, Dirk

    ISSN: 2215-017X, 2215-017X
    Veröffentlicht: Netherlands Elsevier B.V 01.06.2015
    Veröffentlicht in Biotechnology reports (Amsterdam, Netherlands) (01.06.2015)
    “… [Display omitted] •Styrene degradation via phenylacetic acid was shown for the strains described.•Co-metabolic transformation of substituted styrenes was …”
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  17. 17

    Data on metal-chelating, -immobilisation and biosorption properties by Gordonia rubripertincta CWB2 in dependency on rare earth adaptation von Schwabe, Ringo, Senges, Christoph Helmut Rudi, Bandow, Julia Elisabeth, Heine, Thomas, Lehmann, Henry, Wiche, Oliver, Schlömann, Michael, Levicán, Gloria, Tischler, Dirk

    ISSN: 2352-3409, 2352-3409
    Veröffentlicht: Netherlands Elsevier Inc 01.08.2020
    Veröffentlicht in Data in brief (01.08.2020)
    “… Recent studies have shown that the metal adaptation of Actinobacteria offers a rich source of metal inducible environmentally relevant bio-compounds and …”
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  18. 18

    Genomic Characterization of the Arsenic-Tolerant Actinobacterium, Rhodococcus erythropolis S43 von Schlömann, Michael, Mehnert, Marika, Tischler, Dirk, Retamal-Morales, Gerardo, Schwabe, Rïngo, Levicán, Gloria J.

    ISSN: 1012-0394, 1662-9779, 1662-9779
    Veröffentlicht: Zurich Trans Tech Publications Ltd 01.08.2017
    Veröffentlicht in Solid state phenomena (01.08.2017)
    “… Rhodococcus erythropolis S43 is an actinobacterium isolated from an arsenic-contaminated soil sample, collected from an old smelter site, including an arsenic …”
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    New bacterial pathway for 4- and 5-chlorosalicylate degradation via 4-chlorocatechol and maleylacetate in Pseudomonas sp. strain MT1 von Nikodem, Patricia, Hecht, Volker, Schlömann, Michael, Pieper, Dietmar H

    ISSN: 0021-9193
    Veröffentlicht: United States 01.12.2003
    Veröffentlicht in Journal of bacteriology (01.12.2003)
    “… Pseudomonas sp. strain MT1 is capable of degrading 4- and 5-chlorosalicylates via 4-chlorocatechol, 3-chloromuconate, and maleylacetate by a novel pathway …”
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