Generation of a Biobank From Two Adult Thoroughbred Stallions for the Functional Annotation of Animal Genomes Initiative

Abstract

Following the successful creation of a biobank from two adult Thoroughbred mares, this study aimed to recapitulate sample collection in two adult Thoroughbred stallions as part of the Functional Annotation of the Animal Genome (FAANG) initiative. Both stallions underwent thorough physical, lameness, neurologic, and ophthalmic (including electroretinography) examinations prior to humane euthanasia. Epididymal sperm was recovered from both stallions immediately postmortem and cryopreserved. Aseptically collected full thickness skin biopsies were used to isolate, culture and cryopreserve dermal fibroblasts. Serum, plasma, cerebrospinal fluid, urine, and gastrointestinal content from various locations were collected and cryopreserved. Under guidance of a board-certified veterinary anatomic pathologist, 102 representative tissue samples were collected from both horses. Whole tissue samples were flash-frozen and prioritized tissues had nuclei isolated and cryopreserved. Spatially contemporaneous samples of each tissue were submitted for histologic examination. Antemortem and gross pathologic examination revealed mild abnormalities in both stallions. One stallion (ECA_UCD_AH3) had unilateral thoracic limb lameness and bilateral chorioretinal scars. The second stallion (ECA_UCD_AH4) had subtle symmetrical pelvic limb ataxia, symmetrical prostatomegally, and moderate gastrointestinal nematodiasis. DNA from each was whole-genome sequenced and genotyped using the GGP Equine 70K SNP array. The genomic resources and banked biological samples from these animals augments the existing resource available to the equine genomics community. Importantly we may now improve the resolution of tissue-specific gene regulation as affected by sex, as well as add sex-specific tissues and gametes.

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Published Version (Please cite this version)

10.3389/fgene.2021.650305

Publication Info

Donnelly, Callum G, Rebecca R Bellone, Erin N Hales, Annee Nguyen, Scott A Katzman, Ghislaine A Dujovne, Kelly E Knickelbein, Felipe Avila, et al. (2021). Generation of a Biobank From Two Adult Thoroughbred Stallions for the Functional Annotation of Animal Genomes Initiative. Frontiers in Genetics, 12. 10.3389/fgene.2021.650305 Retrieved from https://hdl.handle.net/10161/33172.

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Nguyen

Annee Nguyen

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Annee is a graduate student in Duke's Department of Pharmacology, a joint program with Molecular Cancer Biology. She is excited to identify therapeutic molecules and elucidate therapeutic mechanisms of antitumor efficacy that may also target secondary comorbid conditions, such as pain or neurological deficits. She is passionate about scientific education and communication and hopes to remain in academia with the goal of cultivating the next generation of scientists.

In 2017, Annee graduated from the University of California, San Diego, from Warren College, with a Bachelor of Science in Human Biology (double minoring in Psychology and Theatre) as magna cum laude and as part of the Sigma Chapter of the Phi Beta Kappa Society and obtained a contiguous Master of Science in Biology in 2018, concentrating in Neuropathology and Scientific Communication. 

Since 2014, her prior research experience includes working with various preclinical models of peripheral neuropathy (with Dr. Nigel Calcutt and Dr. Christina Sigurdson of UC San Diego’s Department of Pathology), equine and murine models of neuroaxonal dystrophy (with Dr. Carrie Finno of UC Davis’s School of Veterinary Medicine), and CNS tumor preclinical models of recurrent glioblastoma and spine tumors and metastases at Duke University Medical Center with Dr. Rory Goodwin of the Duke Center for Brain and Spine Metastasis and the Department of Neurosurgery. In each lab, she sought to identify therapeutics that could prevent, reverse, or abate the neurodegenerative diseases of focus and explored mechanisms of disease development and therapeutic impact. Throughout her experiences, Annee has continually focused on developing projects driven by clinical impact and focused on taking science from bench to bedside and back.


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