Cost & earnings at University of Oregon What students borrow here, and what they go on to earn
The PhD in Microbiological Sciences and Immunology at the University of Oregon is a research-intensive doctorate that trains students to investigate microbial biology, host–pathogen interactions, and immune system function using molecular, cellular and computational approaches. It suits candidates who want to lead independent research in academia, industry or public health and who seek interdisciplinary training across laboratory, bioinformatics and translational platforms.
This PhD is built around sustained, original research and graduate-level coursework that together develop theoretical depth and practical skills in microbiology and immunology. Early in the programme students typically complete advanced courses in microbial genetics, cellular and molecular immunology, host–microbe interactions, and experimental design. Core practical training includes molecular cloning, next-generation sequencing workflows, microbial culture and containment techniques, flow cytometry, high-resolution microscopy, and bioinformatics for microbial and immunological datasets.
Applicants are expected to hold a relevant bachelor's or master's degree in biology, microbiology, immunology, biochemistry, molecular biology or a closely related discipline. Strong applicants demonstrate substantial laboratory experience and a record of research activity, such as undergraduate research projects, theses, publications or technical roles in research labs.
Standardised tests such as the GRE may be optional or considered on a programme-by-programme basis; check the graduate admissions guidance for current policy. Competitive applicants typically demonstrate both strong academic preparation and clear evidence of independent research potential.
Graduates leave the programme prepared for a wide range of careers that rely on deep expertise in microbiology and immunology. Common destinations include:
The University of Oregon offers an interdisciplinary research environment with faculty whose programmes span microbial genetics, host–pathogen biology, innate and adaptive immunity, and computational approaches. Students benefit from access to modern core facilities for sequencing, microscopy and flow cytometry and from collaborative ties across campus and with regional institutions, which broaden opportunities for translational projects.
Graduate students join a collegial community with structured mentoring, seminars and professional development resources. The campus environment and regional networks support collaborations with public health, environmental microbiology and biotechnology partners, giving doctoral researchers diverse settings in which to test ideas and translate findings into impact.
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