Tarkan, A. S., Emiroğlu, Ö., Aksu, S., Kurtul, I., Błońska, D., Bayçelebi, E., Soto, I., Chan, S. S., Haubrock, P. J. and Bradshaw, C. J. A., 2024. Testing the Dispersal-Origin-Status-Impact (DOSI) scheme to prioritise non-native and translocated species management. Scientific Reports, 14, 31059.
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DOI: 10.1038/s41598-024-82284-z
Abstract
Assessing actual and potential impacts of non-native species is necessary for prioritising their management. Traditional assessments often occur at the species level, potentially overlooking differences among populations. The recently developed Dispersal-Origin-Status-Impact (DOSI) assessment scheme addresses this by treating biological invasions as population-level phenomena, incorporating the complexities affecting populations of non-native species. We applied the DOSI scheme to the non-native and translocated species reported in a shallow alluvial lake (Lake Gala) and a reservoir (Sığırcı Reservoir) in north-western Türkiye. DOSI identified 12 established species across both ecosystems, including nine fish, two invertebrates, and one mammal. Most species received High and Medium–High priority rankings, in both sites. In contrast, Medium and Low priority rankings were less common, each occurring once in Lake Gala and four times in Sığırcı Reservoir. These high-priority species warrant targeted management interventions due to their established status, autonomous spread, and observed negative impacts. By enabling a more nuanced and context-specific approach, DOSI facilitates the development of targeted strategies for managing species posing the highest risks. Moreover, DOSI’s focus on population-level assessment within ecosystems is highly relevant for stakeholders, decision-makers, and environmental managers, because it provides a more detailed and precise unit of evaluation.
Item Type: | Article |
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Uncontrolled Keywords: | Callinectes sapidus; Gymnocephalus cernua; Myocastor coypus; Biological invasions; Invasive species; Lake Gala; Sığırcı reservoir; Animals; Introduced Species; Ecosystem; Conservation of Natural Resources; Lakes; Fishes; Biodiversity; Invertebrates |
Group: | Faculty of Science & Technology |
ID Code: | 40677 |
Deposited By: | Symplectic RT2 |
Deposited On: | 08 Jan 2025 14:08 |
Last Modified: | 08 Jan 2025 14:08 |
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