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Results: 11
Number of items: 11
  • Klomp, R., van Asselt, T., Baas, E., Behrends, T., Berben, T., Egas, R. A., van Erk, M., van Helmond, N., Ter Horst, P., Rigutto, I., Röckmann, T., Wallenius, A., Zygadlowska, O., Lenstra, W., Jetten, M., & Slomp, C. (2025, September 22). Anaerobic oxidation of methane coupled to manganese oxide reduction by ANME-2a in brackish coastal sediments [Data set]. Zenodo. https://doi.org/10.5281/zenodo.17174801
  • Open Access
    Berben, T., Overmars, L., Sorokin, D. Y., & Muyzer, G. (2019). Diversity and Distribution of Sulfur Oxidation-Related Genes in Thioalkalivibrio, a Genus of Chemolithoautotrophic and Haloalkaliphilic Sulfur-Oxidizing Bacteria. Frontiers in Microbiology, 10, Article 160. https://doi.org/10.3389/fmicb.2019.00160
  • Open Access
    Berben, T. (2019). Comparative analysis of sulfur oxidation pathways in haloalkaliphilic thiocyanate-utilizing species of the genus Thioalkalivibrio. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Berben, T., Overmars, L., Sorokin, D. Y., & Muyzer, G. (2017). Comparative genome analysis of three thiocyanate oxidizing Thioalkalivibrio species isolated from soda lakes. Frontiers in Microbiology, 8, Article 254. https://doi.org/10.3389/fmicb.2017.00254
  • Open Access
    Berben, T., Balkema, C., Sorokin, D. Y., & Muyzer, G. (2017). Analysis of the Genes Involved in Thiocyanate Oxidation during Growth in Continuous Culture of the Haloalkaliphilic Sulfur-Oxidizing Bacterium Thioalkalivibrio thiocyanoxidans ARh 2T Using Transcriptomics. mSystems, 2(6), Article e00102-17. https://doi.org/10.1128/mSystems.00102-17
  • Open Access
    Salman, V., Berben, T., Bowers, R. M., Woyke, T., Teske, A., & Angert, E. R. (2016). Insights into the single cell draft genome of "Candidatus Achromatium palustre". Standards in Genomic Sciences, 11, Article 28. https://doi.org/10.1186/s40793-016-0146-x
  • Salman, V., Yang, T., Berben, T., Klein, F., Angert, E., & Teske, A. (2015). Calcite-accumulating large sulfur bacteria of the genus Achromatium in Sippewissett Salt Marsh. The ISME Journal, 9(11), 2503-2514. https://doi.org/10.1038/ismej.2015.62
  • Open Access
    Berben, T., Sorokin, D. Y., Ivanova, N., Pati, A., Kyrpides, N., Goodwin, L. A., Woyke, T., & Muyzer, G. (2015). Partial genome sequence of Thioalkalivibrio thiocyanodenitrificans ARhD 1T, a chemolithoautotrophic haloalkaliphilic sulfur-oxidizing bacterium capable of complete denitrification. Standards in Genomic Sciences, 10, Article 84. https://doi.org/10.1186/s40793-015-0080-3
  • Open Access
    Berben, T., Sorokin, D. Y., Ivanova, N., Pati, A., Kyrpides, N., Goodwin, L. A., Woyke, T., & Muyzer, G. (2015). Complete genome sequence of Thioalkalivibrio paradoxus type strain ARh 1T, an obligately chemolithoautotrophic haloalkaliphilic sulfur-oxidizing bacterium isolated from a Kenyan soda lake. Standards in Genomic Sciences, 10, Article 105. https://doi.org/10.1186/s40793-015-0097-7
  • Open Access
    Berben, T., Sorokin, D. Y., Ivanova, N., Pati, A., Kyrpides, N., Goodwin, L. A., Woyke, T., & Muyzer, G. (2015). Partial genome sequence of the haloalkaliphilic soda lake bacterium Thioalkalivibrio thiocyanoxidans ARh 2T. Standards in Genomic Sciences, 10, Article 85. https://doi.org/10.1186/s40793-015-0078-x
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