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Showing 1 to 4 of 4 for “"glcD"”.

  1. Bacterial community composition in stream biofilms is influenced by algal response to varying light and phosphorus ratios

    … possess the gene, glycolate oxidase subunit D (glcD). This gene was used as a marker to identify changes in specific bacterial populations that respond to algal exudates. In this study, development of periphyton biofilms in an experimental stream system was monitored across different light and …

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  2. Investigating the effect of phytoplankton on bacterial community composition across different environmental contexts

    … exudates to affect bacterial succession, the glcD gene, which indicates genetic potential for bacteria to use the algal exudate glycolate, was characterized in Emerald Lake, an oligotrophic high-elevation lake that shifts from primarily terrestrial-derived organic matter following ice-off to …

    uiuc Repository record for Investigating the effect of phytoplankton on bacterial community composition across different environmental contexts (opens in a new tab)

  3. Investigating exudate- and habitat-mediated effects of phytoplankton on lake bacterial community dynamics

    … functional gene glycolate oxidase subunit D (glcD). Freshwater glycolate-utilizing populations exhibited a range of taxonomic diversity and contained many sequences clustering with a glcD sequence from the cosmopolitan freshwater Polynucleobacter genus. Glycolate-utilizing and total bacterial …

    uiuc Repository record for Investigating exudate- and habitat-mediated effects of phytoplankton on lake bacterial community dynamics (opens in a new tab)

  4. Functional and physiological discovery in the mannonate dehydratase subgroup of the enolase superfamily

    … This pathway directly involves a low efficiency GlcD that is a member of the ManD subgroup and raises interesting questions about the physiological role of low efficiency enzymes and redundant pathways. As a whole, this dissertation displays how function diverges as sequence diverges while laying …

    uiuc Repository record for Functional and physiological discovery in the mannonate dehydratase subgroup of the enolase superfamily (opens in a new tab)