Animalia > Chordata > Squamata > Scincidae > Notomabuya > Notomabuya frenataNotomabuya frenata (Cope's Mabuya)Synonyms: Emoea frenata; Mabuya frenata Adult Weight [1] | 7.8 grams | Female Weight [2] | 8 grams | | Habitat Substrate [3] | Arboreal, Terrestrial | | Litter Size [2] | 5 | Litters / Year [2] | 1 | Reproductive Mode [3] | Viviparous | Snout to Vent Length [2] | 2.756 inches (7 cm) |
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Name |
Countries |
Ecozone |
Biome |
Species |
Report |
Climate |
Land Use |
Alta Paraná Atlantic forests |
Brazil, Paraguay, Argentina |
Neotropic |
Tropical and Subtropical Moist Broadleaf Forests |
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Araucaria moist forests |
Brazil |
Neotropic |
Tropical and Subtropical Moist Broadleaf Forests |
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Bolivian montane dry forests |
Bolivia |
Neotropic |
Tropical and Subtropical Dry Broadleaf Forests |
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Cerrado |
Brazil, Bolivia, Paraguay |
Neotropic |
Tropical and Subtropical Grasslands, Savannas, and Shrublands |
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Chiquitano dry forests |
Bolivia, Brazil |
Neotropic |
Tropical and Subtropical Dry Broadleaf Forests |
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Dry Chaco |
Bolivia, Paraguay, Argentina |
Neotropic |
Tropical and Subtropical Dry Broadleaf Forests |
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Espinal |
Argentina |
Neotropic |
Temperate Grasslands, Savannas, and Shrublands |
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Humid Chaco |
Argentina, Paraguay, Brazil |
Neotropic |
Tropical and Subtropical Grasslands, Savannas, and Shrublands |
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Humid Pampas |
Argentina |
Neotropic |
Temperate Grasslands, Savannas, and Shrublands |
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Pantanal |
Brazil, Bolivia, Paraguay |
Neotropic |
Flooded Grasslands and Savannas |
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Serra do Mar coastal forests |
Brazil |
Neotropic |
Tropical and Subtropical Moist Broadleaf Forests |
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Southern Andean Yungas |
Bolivia, Argentina |
Neotropic |
Tropical and Subtropical Moist Broadleaf Forests |
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Southern Cone Mesopotamian savanna |
Argentina |
Neotropic |
Flooded Grasslands and Savannas |
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Name |
Location |
Endemic |
Species |
Website |
Atlantic Forest |
Argentina, Brazil, Paraguay, Uruguay |
No |
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Cerrado |
Brazil |
No |
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Tropical Andes |
Argentina, Bolivia, Chile, Colombia, Ecuador, Peru, Venezuela |
No |
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Attributes / relations provided by ♦ 1Length–weight allometries in lizards, S. Meiri, Journal of Zoology 281 (2010) 218–226 ♦ 2Nathan P. Myhrvold, Elita Baldridge, Benjamin Chan, Dhileep Sivam, Daniel L. Freeman, and S. K. Morgan Ernest. 2015. An amniote life-history database to perform comparative analyses with birds, mammals, and reptiles. Ecology 96:3109 ♦ 3Meiri, Shai (2019), Data from: Traits of lizards of the world: variation around a successful evolutionary design, Dryad, Dataset, https://doi.org/10.5061/dryad.f6t39kj ♦ 4Galictis cuja, Eric Yensen and Teresa Tarifa, MAMMALIAN SPECIES No. 728, pp. 18 (2003) ♦ 5Gibson, D. I., Bray, R. A., & Harris, E. A. (Compilers) (2005). Host-Parasite Database of the Natural History Museum, London Ecoregions provided by World Wide Fund For Nature (WWF). WildFinder: Online database of species distributions, ver. 01.06 Wildfinder Database |
Species taxanomy provided by GBIF Secretariat (2022). GBIF Backbone Taxonomy. Checklist dataset https://doi.org/10.15468/39omei accessed via GBIF.org on 2023-06-13; License: CC BY 4.0
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