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John and Marcia Price College of Engineering (16/60) -- RANGE: Journal of Undergraduate Research...

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John and Marcia Price College of Engineering

John and Marcia Price College of Engineering 16 Good Predators and Where to Find Them Vivian Marcoux and Jennifer Weidhaas Faculty Mentor: Jennifer Weidhaas (Civil and Environmental Engineering, University of Utah) Introduction Wastewater surveillance is a valuable and frequently utilized tool in microbial ecology, with a history in epidemiology extending as far back as the 1854 Broad Street cholera epidemic (7). Communities of bacteria live in wastewater, forming ecological communities that interact with a variety of other organisms. Of note is the presence of predators, and if or how they interact with these bacterial communities. It is also valuable to search for the presence of antibiotic- resistance genes (ARG), due to their considerable scientific and medical implications. This investigation is therefore a survey of findings in wastewater in search of these predators. Methods Microscopy was performed at 4x, 10x, 20x, and 40x magnification via compound and inversion light microscope, documented via attached and labeled using attached Amscope MJ900 and Moticam BTW8 cameras and software. Slides were prepared, including unstained wet mount slides, and a variety of staining was performed: gram staining with crystal violet and safranin, methylene blue staining, malachite green staining with safranin. These slides were then inspected and findings cataloged. Samples were from wastewater sampled from the University of Utah campus and Nielsen Rehabilitation Hospital sewer system via grab and automatic capture. A fellow lab mate analyzed wastewater representative of that used in this survey for ARG via Cepheid Gene Xpert analysis. Results The invariable observation of this survey was a great quantity of bacterial colonies of varying size, predominantly arranged into flocs. This is typical of wastewater studies of this type. Bacteria was also present in filamentous colonies that mimicked fibers, which were also present, of organic and inorganic origin. Predators were visualized in this survey. This included apparent prokaryotes, as well as amoebaform and nematodous findings. This indicates that within the wastewater sampled, predators were present, and therefore likely to have interacted with bacterial colonies and impacted these ecological communities. The predators observed are typical in these types of studies(2,5), but this survey did not reveal the presence of several of the other potential varieties of predators. Conclusion This survey detected predators of prokaryotic, amoebaform, and nematodous nature in wastewater sampled from across the University of Utah, indicating that these ecological communities may include active predation that may impact bacterial population. Gene Xpert analysis by a labmate revealed the presence of multiple ARG in wastewater representative of that used in this study, which indicates a dangerous potential for the development of antibiotic resistance with larger health implication than those currently observed. These pr
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