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Experimentally derived salinity tolerance of hatchling Burmese pythons (Python molurus bivittatus) from the Everglades,Florida (USA)
Authors:Kristen M Hart  Pamela J Schofield  Denise R Gregoire
Institution:1. School of Life and Environmental Sciences, University of Sydney, NSW 2006, Australia;2. Resource Evaluation and Development Limited, Frogs Hollow, NSW 2550, Australia;3. Queensland Health Forensic and Scientific Services, QLD 4108, Australia;4. School of Animal, Plant and Environmental Sciences, University of the Witwatersrand, Johannesburg, South Africa;5. National Key Laboratory, Institute of Tropical Biology, Vietnamese Academy of Sciences and Technology, Ho Chi Minh, Viet Nam;6. Museum Zoologicum Bogoriense Research Centre for Biology, Indonesian Institute of Sciences, Cibinong, Bogor, Indonesia
Abstract:In a laboratory setting, we tested the ability of 24 non-native, wild-caught hatchling Burmese pythons (Python molurus bivittatus) collected in the Florida Everglades to survive when given water containing salt to drink. After a one-month acclimation period in the laboratory, we grouped snakes into three treatments, giving them access to water that was fresh (salinity of 0, control), brackish (salinity of 10), or full-strength sea water (salinity of 35). Hatchlings survived about one month at the highest marine salinity and about five months at the brackish-water salinity; no control animals perished during the experiment. These results are indicative of a “worst-case scenario”, as in the laboratory we denied access to alternate fresh-water sources that may be accessible in the wild (e.g., through rainfall). Therefore, our results may underestimate the potential of hatchling pythons to persist in saline habitats in the wild. Because of the effect of different salinity regimes on survival, predictions of ultimate geographic expansion by non-native Burmese pythons that consider salt water as barriers to dispersal for pythons may warrant re-evaluation, especially under global climate change and associated sea-level-rise scenarios.
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