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University of Texas Rio Grande Valley

2014

Climate change

Articles 1 - 2 of 2

Full-Text Articles in Life Sciences

Effects Of Climate Change On The Potential Distribution Of 12 Endemic Lizards Of The Genus Plestiodon Of Mexico, Mayra Oyervides May 2014

Effects Of Climate Change On The Potential Distribution Of 12 Endemic Lizards Of The Genus Plestiodon Of Mexico, Mayra Oyervides

Theses and Dissertations - UTB/UTPA

Anthropogenic global climate change is a large scale threat to biodiversity. Species distribution models (SDMs) were created to assess the possible effects of climate change on the distribution of 12 Plestiodon lizards of Mexico. Species presence data was obtained from online databases, literature, and field data. Occurrences were correlated with 19 climatic variables from www.worldclim.org to model species' current suitable habitat. These models were then projected to future (2050) conditions for which bioclimatic information was downloaded from the CCAFS website. Forecasts were made using 4 General Circulatory Models, 2 IPCC scenarios, and the software MaxEnt. Models were replicated 10 times …


Implications Of Climate Change On The Distribution Of The Tick Vector Ixodes Scapularis And Risk For Lyme Disease In The Texas-Mexico Transboundary Region, Teresa Patricia Feria-Arroyo, Ivan Castro-Arellano, Guadalupe Gordillo Pérez, Ana L. Cavazos, Margarita Vargas-Sandoval, Abha Grover, Javier Torres, Raul F. Medina, Adalberto A. Pérez De León, Maria Dolores Esteve-Gassent Apr 2014

Implications Of Climate Change On The Distribution Of The Tick Vector Ixodes Scapularis And Risk For Lyme Disease In The Texas-Mexico Transboundary Region, Teresa Patricia Feria-Arroyo, Ivan Castro-Arellano, Guadalupe Gordillo Pérez, Ana L. Cavazos, Margarita Vargas-Sandoval, Abha Grover, Javier Torres, Raul F. Medina, Adalberto A. Pérez De León, Maria Dolores Esteve-Gassent

Biology Faculty Publications and Presentations

Background

Disease risk maps are important tools that help ascertain the likelihood of exposure to specific infectious agents. Understanding how climate change may affect the suitability of habitats for ticks will improve the accuracy of risk maps of tick-borne pathogen transmission in humans and domestic animal populations. Lyme disease (LD) is the most prevalent arthropod borne disease in the US and Europe. The bacterium Borrelia burgdorferi causes LD and it is transmitted to humans and other mammalian hosts through the bite of infected Ixodes ticks. LD risk maps in the transboundary region between the U.S. and Mexico are lacking. Moreover, …