Publications by authors named "T S Wiley"

Gene flow is important for maintaining the genetic diversity required for adaptation to environmental disturbances, though gene flow may be limited by site fidelity in small coastal sharks. Bonnethead sharks ()-a small coastal hammerhead species-demonstrate site fidelity, as females are philopatric while males migrate to mediate gene flow. Consequently, bonnetheads demonstrate population divergence with distance, and Atlantic populations are genetically distinct from those of the Gulf of Mexico.

View Article and Find Full Text PDF

Seizures induce hippocampal subregion dependent enhancements in microglia/macrophage phagocytosis and cytokine release that may contribute to the development of epilepsy. As a model of hyperactive mTOR induced epilepsy, neuronal subset specific phosphatase and tensin homolog (NS-Pten) knockout (KO) mice exhibit hyperactive mTOR signaling in the hippocampus, seizures that progress with age, and enhanced hippocampal microglia/macrophage activation. However, it is unknown where microglia/macrophages are most active within the hippocampus of NS-Pten KO mice.

View Article and Find Full Text PDF

Background: The ongoing and evolving overdose epidemic highlights the need to translate research results into routine clinical practice to address urgent service delivery needs. Implementation science is a relatively new discipline intended to develop systematic, replicable, scalable strategies to accelerate this translation. This article presents a comprehensive review of implementation research funded by the National Institute on Drug Abuse (NIDA).

View Article and Find Full Text PDF

Biallelic pathogenic variants in the essential DNA repair gene causes Fanconi anemia, complementation group FA-D1. Patients in this group are highly prone to develop embryonal tumors, most commonly medulloblastoma arising from the cerebellar granule cell progenitors (GCPs). GCPs undergo high proliferation in the postnatal cerebellum under SHH activation, but the type of DNA lesions that require the function of the BRCA2 to prevent tumorigenesis remains unknown.

View Article and Find Full Text PDF
Article Synopsis
  • The study examines genetic variation in gafftopsail catfish from the U.S. Atlantic and Gulf of Mexico, using genomic data to identify both neutral and adaptive patterns.
  • Four distinct genetic groups were identified: the U.S. Atlantic, northeastern Gulf, northwestern Gulf, and southern Gulf.
  • Results indicate a recent decline in effective population size in the Atlantic region, likely linked to a population reduction driven by an epizootic, highlighting the role of habitat and life stages in shaping genetic structure.
View Article and Find Full Text PDF