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Genotoxic damage data from wild birds across high-altitude Andean cities (Ecuador)

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Mendeley Data2026-08-09 收录
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1. Research Hypothesis High-altitude tropical cities represent understudied systems where natural stressors associated with elevation (intense UV radiation, hypoxia, cold stress) and urbanization-related pressures (air pollution, impervious surfaces, vehicular emissions) may combine to amplify genotoxic damage in wildlife beyond what either factor would produce alone. We hypothesized that wild birds inhabiting high-altitude Andean cities (>2,000 m a.s.l.) would exhibit elevated frequencies of micronuclei and nuclear abnormalities compared to: (a) rural sites within the same cities, and (b) published benchmark values from lowland South American cities. Furthermore, we predicted that altitude would establish a baseline level of genetic damage that urbanization subsequently amplifies, potentially creating previously unrecognized genotoxic hotspots in high-elevation tropical urban environments. 2. What This Data Shows This dataset contains individual-level genotoxicity measurements from 43 wild birds belonging to 7 species, sampled across 4 Ecuadorian Andean cities (Loja, Cuenca, Quito, and Ibarra) at elevations ranging from 2,068 to 2,780 meters above sea level. Within each city, birds were captured from paired urban sites (parks, gardens, vacant lots) and rural sites (anthropic grasslands), allowing direct urban-rural comparisons. The core data includes: Micronucleus (MN) counts per 10,000 erythrocytes examined per individual Nuclear abnormality (NA) counts per 10,000 erythrocytes, broken down by type: Nuclear buds Notches Binucleated cells Species identification, city, site type (urban/rural), and environmental covariates

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2026-06-24
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