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Biotic velocity identifies potential climate refugia beyond climate velocity estimates

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DataONE2025-12-01 更新2025-12-06 收录
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We developed a biotic velocity–based framework to identify three functionally distinct types of climate refugia with significant conservation value at the regional scale: (1) in-situ refugia, where species assemblage can persist locally without spatial displacement (i.e., areas with mean forward or backward biotic velocity equal to 0), (2) stepping-stone refugia, where species can track shifting climates with relatively low forward biotic velocity, and (3) ex-situ refugia, which are areas that can be readily colonized by species from other regions due to low backward biotic velocity. This framework, which integrates species distribution models (SDMs), climate exposure metrics, and biotic velocity, was applied to four taxa (mammals, reptiles, birds, and amphibians) under two climate scenarios in the Middle and Lower Reaches of the Yangtze River (MLRYR), China. , , # Data from: Biotic velocity identifies potential climate refugia beyond climate velocity estimates Dataset DOI: [10.5061/dryad.v15dv427w](10.5061/dryad.v15dv427w) This dataset supports the research titled \"Biotic velocity identifies potential climate refugia beyond climate velocity estimates\". It contains the data and scripts required to reproduce key analytical steps, including species distribution models (SDMs), climate exposure assessments, and biotic velocity calculations. ## Description of the data and file structure #### 1.Data.zip * *Species List.xlsx*\ Provides detailed information for the 95 species included in this study, encompassing: scientific name, taxonomy, IUCN Red List threatened categories, number of points generated from the Area of Habitat (AOH - referring to species distribution ranges refined by incorporating land cover and elevation information), number of pre-processed occurrence records obtained from GBIF and iDigBio, number of occurrence points after fi...,
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2025-12-02
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