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Project Descriptions
Spring 2025

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Showing 4 projects out of 4 found. On page 1 out of 1.
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Taste preference in nicotine-exposed flies

Rebecca Tarvin - Professor , Integrative Biology, Museum of Vertebrate Zoology

Status: Current Term Now Closed     Weekly Hours: 6-8 hrs     Location: On Campus

Evolutionary transitions underlying phenotypic change are difficult to study because they often occur over millions of years. However, the fruit fly has a short generation time and a small genome that is well annotated and cheap to sequence. We used a large-scale experimental evolution approach to evolve toxin-sequestering...

 Biological & Health Sciences

Effects of toxin exposure on poison frogs

Rebecca Tarvin - Professor , Integrative Biology, Museum of Vertebrate Zoology

Status: Current Term Now Closed     Weekly Hours: 6-8 hrs     Location: On Campus

The Tarvin Lab studies how and why poison frogs don’t poison themselves. We aim to measure the effect of toxin consumption on frog health and chemical defenses through toxin feeding experiments paired with phenotypic assays (health monitoring, jumping challenges) and genomic assessment (RNA and DNA sequencing...

 Biological & Health Sciences

Measuring salamander defensive stickiness

Rebecca Tarvin - Professor , Integrative Biology, Museum of Vertebrate Zoology

Status: Full- no new appr needed     Weekly Hours: 9-11 hrs     Location: On Campus

Amphibians -- frogs, salamanders, and caecilians -- exhibit a stunning variety of chemical defenses, ranging from antimicrobial peptides to antipredator neurotoxins and biological glues. Amphibian glues are the least-studied of these defenses. Additionally, the methods used to measure amphibian stickiness are not standardized, with some researchers gluing together beer cans to...

 Biological & Health Sciences

A Review of Amphibian Chemical Defenses

Rebecca Tarvin - Professor , Integrative Biology, Museum of Vertebrate Zoology

Status: Full- no new appr needed     Weekly Hours: 6-8 hrs     Location: On Campus

Amphibians -- frogs, salamanders, and caecilians -- exhibit a stunning variety of chemical defenses, ranging from antimicrobial peptides to antipredator neurotoxins and biological glues! These defenses generally co-occur with physiological, morphological, and behavioral adaptations that sometimes exhibit convergence with distantly related taxa. However, research into amphibian chemical defense has been far...

 Biological & Health Sciences

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