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Capstone Projects

Managing the Declining Population of Northern long-eared bats in New York State

Thu, 05/03/2018 - 08:02
Abstract: White-nose syndrome (Geomyces destructans) is a fungal disease that has caused over 5.5 million bat deaths in eastern North America. The fungus affects any open skin including the bat’s patagium and causes lesions. The fungus consists of microscopic spores which can attach to anything it comes into contact with to spread the disease. The fungus is spread from bat to bat and cave systems as well as facilitated by human tourism. Northern long-eared bats (Myotis septentrionalis) are currently threatened in New York State. The northern long-eared bat is an insectivore and must hibernate when its food source is unavailable. During hibernation the bat’s immune system is suppressed, making it more vulnerable to the effects of white-nose syndrome. The bat will deplete its fat reserve to fight off the disease, which will lead to death if the bat cannot find a food source. White-nose syndrome has decreased the northern long-eared bat population by 90% in New York State. There is no cure for white-nose syndrome, and the northern long-eared bat population continues to decrease in New York State. The northern long-eared bat population is relatively unknown, but estimated to be 20,000 individuals in New York State. Population projections predict that the bat may become extirpated from New York State in the next 5 years. Increasing the survivability of the juvenile bat population to 70% and the adult bat population to 80% would prevent the extirpation of the species. The goal of this management plan is to increase the population of northern long-eared bats in New York to prevent the extirpation of the species from the state and create a sustainable population. This should be done by preventing further human facilitation of the disease, increasing educational resources for the public and gathering more information about the fungus and the northern long-eared bat population in New York.
Access: No
Literary Rights: On
Major: Fisheries and Wildlife Science
Year: 2018
File Attachments: The Author has selected not to publish this complete work.
Authors: Bailey Muntz

Monitoring the Zebra Mussel Invasion Front: Use of New Technology

Thu, 02/09/2012 - 15:39
Abstract: Zebra mussels are invasive mollusks that are affecting the well-being of the water bodies in the United States. This study uses environmental DNA (eDNA) is a sensitive early detection system that may be useful in monitoring their spread. The purpose of this study is to determine the effectiveness of eDNA technology in identifying infested water bodies, to determine if zebra mussel DNA is in the Adirondack water bodies not known to be infested, if the water chemistry of these water bodies is favorable for zebra mussel establishment, and if the eDNA technology is transferable to an institution like Paul Smith’s College. Eighteen lakes, all in New York State were sampled, fifteen of which are located in the Adirondack Park. DNA was extracted from water and plankton samples and species specific primers were used for PCR amplification to determine if zebra mussel DNA was present. Of seven samples taken from sites known to be infested, five of these tested positive for zebra mussel eDNA. Four lakes not known to be infested within the Park also tested positive for zebra mussel eDNA. Based on zebra mussel risk parameters (water chemistry) applied to 1,469 Adirondack water bodies, less than 3% are at risk of zebra mussel establishment. However it is possible that established populations could occur at microsites that may have locally high levels of calcium and higher pH.
Access: No
Literary Rights: Off
Major: Biology, Environmental Sciences, Environmental Studies, Fisheries and Wildlife Science, Forestry, Natural Resources Management and Policy
Year: 2011
File Attachments: The Author has selected not to publish this complete work.
Authors: Alexandria Bevilacqua, John Bishop, Charles Cain, Tyler Clark, Seth Crevison, Robert Culyer, Ryan Deibler, Brian DeMeo, Jonathan Eckert, Kirsten Goranowski, Joelle Guisti, Alan Jancef, Korinna Marino, Michelle Melagrano, KaitlynNedo, Joseph Nelson, Aaron Palmieri, Cole Reagan, John Scahill, JohnathanStrassheim, Scott Travis, Sarah Van Nostrand and Sarah Vella