Undergraduate Special Problem
Permanent URI for this collectionhttps://hdl.handle.net/20.500.14583/30
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Item Oxygen requirement of Sea Cucumber (Bohadschia marmorata)Cahuya, Jezyl Leigh D. (Division of Biological Sciences, College of Arts and Sciences, University of the Philippines Visayas, 2017-06)The oxygen consumption of juvenile sea cucumber Bohadschia marmorata was studied in the laboratory. The effects of temperature and body weight on oxygen consumption rate (OCR) were determined by measuring the dissolved oxygen levels using closed bottle respiratory method. Mean weight specific OCR of B. marmorata juveniles was low (9±4 pgO2h-1g-1). The OCR decreased with time from 16.9±9.1 to 6.09±3.86 ugO2h-1g-1 rapidly declining in the first two hours then, more gradually thereafter (R2=-0.92). Factors such as temperature and size affect OCR. Oxygen consumption rate tends to increase with increasing temperature. Bigger animals have low OCR levels than smaller ones (R2=0.32).Item Behavior pattern of hatchery-produced sea cucumber Bohadschia marmorata (Jaeger, 1833) juveniles upon releaseArcenas, Jascha S. (Division of Biological Sciences, College of Arts and Sciences, University of the Philippines Visayas, 2017-06)This study reports on the behavior of hatchery-reared Bohadschia marmorata juveniles upon release in two different microhabitat types within TINMR: a bare sand patch (TALISAY) and a seagrass vegetated area (BANAGO) during high tide and low tide. Percentage of burrowed juveniles, burying rates, traveled distances, speeds, and direction of movement were determined hourly over a 3-hr period. Results show that more than half of the juveniles released at the vegetated microhabitat displayed burrowing behavior at both tidal conditions. The mean percentage of burrowed individuals differed significantly with tides and their interaction with the microhabitat. Juveniles released at barren microhabitats yielded the highest burying rates (9 animals hr-1) and percentage of burrowed individuals. Coarse sand substrates with poor organic matter content induced mobility of Bohadschia marmorata. Results from the release experiments suggest that seagrass beds may be a potential release site for tropical species like Bohadschia marmorata.
