-
, and bioactive compounds from plant, food, microbial, and human samples; develops and optimizes analytical methods; analyzes complex datasets using metabolomics and statistical software tools
-
on environmental samples, incorporating appropriate controls to manage inhibition and contamination. • Apply and optimize molecular detection methods (e.g., qPCR, digital PCR, sequencing) and interpret the results
-
applicable), and other experimental procedures. -Develop and optimize research protocols, collect and maintain accurate research records, and ensure compliance with laboratory safety, biosafety, and
-
, Nuendo, Cubase). Background in electronics, equipment design, or system optimization for field applications. Experience integrating multimedia, visualization, or communication tools into scientific
-
how you can be a part of AgriLife and make a difference in the world! Position Information Responsibilities: -Develop ecohydrological modeling for plant water stress and irrigation optimization. -Study
-
these interactions. The main project investigator, Dr. Juliana Rangel (https://entomology.tamu.edu/people/rangel-juliana/), is based in the Department of Entomology at Texas A&M University, College Station, TX
-
how you can be a part of AgriLife and make a difference in the world! Responsibilities: 50% - Design, perform and analyze experiments to study the structure/function relationships of assigned proteins
-
integrated project. Conduct field trials and collect samples across Texas as needed. 15% Develop and optimize analytical methods for bioactive compounds and assess their changes in different vegetables and
-
/temporal structure, virulence, and effector variation, and to identify diagnostic target regions. Translate genomic targets into field-deployable molecular diagnostics (LAMP), with quantitative cross
-
, or structural biology lab Required Special Knowledge, Skills, and Abilities: -Excellent communication skills (both written and spoken). -Ability to work both independently and as part of