Modeling potential habitats for alien species Dreissena polymorpha in Continental USA |
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Authors: | Li Mingyang Ju Yunwei Sunil Kumar and Thomas J Stohlgren |
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Institution: | 1. College of Forest Resources and Environment, Nanjing Forestry University, Nanjing 210037, China;2. Natural Resource Ecology Laboratory, Colorado State University, Fort Collins, Colorado 80523, USA;3. U.S. Geological Survey, Fort Collins Science Center, Fort Collins, Colorado 80523, USA |
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Abstract: | The effective measure to minimize the damage of invasive species is to block the potential invasive species to enter into suitable areas. 1864 occurrence points with GPS coordinates and 34 environmental variables from Daymet datasets were gathered, and 4 modeling methods, i.e., Logistic Regression (LR), Classification and Regression Trees (CART), Genetic Algorithm for Rule-Set Prediction (GARP), and maximum entropy method (Maxent), were introduced to generate potential geographic distributions for invasive species Dreissena polymorpha in Continental USA. Then 3 statistical criteria of the area under the Receiver Operating Characteristic curve (AUC), Pearson correlation (COR) and Kappa value were calculated to evaluate the performance of the models, followed by analyses on major contribution variables. Results showed that in terms of the 3 statistical criteria, the prediction results of the 4 ecological niche models were either excellent or outstanding, in which Maxent outperformed the others in 3 aspects of predicting current distribution habitats, selecting major contribution factors, and quantifying the influence of environmental variables on habitats. Distance to water, elevation, frequency of precipitation and solar radiation were 4 environmental forcing factors. The method suggested in the paper can have some reference meaning for modeling habitats of alien species in China and provide a direction to prevent Mytilopsis sallei on the Chinese coast line. |
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Keywords: | alien invasive species Dreissena polymorpha potential habitat ecological niche model |
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