Sort by
Refine Your Search
-
Listed
-
Category
-
Program
-
Field
-
), Chronic Wasting Disease (CWD), Scrapie, and emerging camel prion diseases. You will receive hands-on training and mentorship while contributing to high-impact studies that combine cell-based systems
-
, immunohistochemistry, cell/tissue processing, and ELISA/immunoblots, and the scientific communication of research findings. Learning Objectives: Under the guidance of a mentor, you will have the opportunity to learn
-
USDA-ARS Postdoctoral Research Opportunity: Development of Novel Vaccines for Poultry Viral Diseases
motivated scientist in the virology and vaccine development Strong hands-on techniques in DNA/RNA amplification, molecular cloning, transgene gene expression, virus propagation, cell cultures Point of Contact
-
phyllosphere to plants subjected to abiotic stress and/or pathogen infection, (2) understanding the role of host cell wall and carbohydrate composition in microbial community assembly, (3) developing and/or
-
materials. Additionally, the candidate must have experience with spark plasma sintering, x-ray diffraction, SEM/EDS, solid-state synthesis, hot pressing, coin cell and pouch cell building. Candidate must be a
-
protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
-
with these plants using in vitro and in vivo animal models. Animal tissue and cell culture models will be used to study the ability of compounds of interest to cross absorptive barriers as
-
. Gain experience in constructing recombinant viruses and performing Western blot analyses. Hone your microscopy techniques including light and fluorescence microscopy. Learn how to perform cell-based
-
polyunsaturated fats are more liquid at room temperature leading to technological challenges to their use in food products. They are also more easily oxidized, resulting in a shorter shelf life resulting in food
-
your skills in molecular biology, virology, cell culture, vector biology, and animal models, to understand what drives the arbovirus transmission cycle. Additionally, you will be provided opportunities