Julia Foght

Affiliations: 
Biological Sciences University of Alberta, Edmonton, Alberta, Canada 
Area:
Microbiology Biology
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"Julia Foght"
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Publications

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Nesbø CL, Charchuk R, Pollo SMJ, et al. (2018) Genomic analysis of the mesophilic Thermotogae genus Mesotoga reveals phylogeographic structure and genomic determinants of its distinct metabolism. Environmental Microbiology
Pollo SMJ, Adebusuyi AA, Straub TJ, et al. (2017) Genomic insights into temperature-dependent transcriptional responses of Kosmotoga olearia, a deep-biosphere bacterium that can grow from 20 to 79 °C. Extremophiles : Life Under Extreme Conditions
Wilson SL, Li C, Ramos-Padrón E, et al. (2016) Oil sands tailings ponds harbour a small core prokaryotic microbiome and diverse accessory communities. Journal of Biotechnology
Aguilar M, Richardson E, Tan B, et al. (2016) Next-generation Sequencing Assessment of Eukaryotic Diversity in Oil Sands Tailings Ponds Sediments and Surface Water. The Journal of Eukaryotic Microbiology
Laban NA, Dao A, Foght J. (2015) DNA stable-isotope probing of oil sands tailings pond enrichment cultures reveals different key players for toluene degradation under methanogenic and sulfidogenic conditions. Fems Microbiology Ecology. 91
Tan B, Semple K, Foght J. (2015) Anaerobic alkane biodegradation by cultures enriched from oil sands tailings ponds involves multiple species capable of fumarate addition. Fems Microbiology Ecology. 91
Tan B, Jane Fowler S, Laban NA, et al. (2015) Comparative analysis of metagenomes from three methanogenic hydrocarbon-degrading enrichment cultures with 41 environmental samples. The Isme Journal
Abu Laban N, Tan B, Dao A, et al. (2015) Draft Genome Sequence of Uncultivated Desulfosporosinus sp. Strain Tol-M, Obtained by Stable Isotope Probing Using [13C6]Toluene. Genome Announcements. 3
Abu Laban N, Dao A, Semple K, et al. (2015) Biodegradation of C7 and C8 iso-alkanes under methanogenic conditions. Environmental Microbiology. 17: 4898-915
Tan B, de Araújo E Silva R, Rozycki T, et al. (2014) Draft Genome Sequences of Three Smithella spp. Obtained from a Methanogenic Alkane-Degrading Culture and Oil Field Produced Water. Genome Announcements. 2
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