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project to isolate, synthesize, and bioassay natural products that mediate plant-insect interaction. Project activities include 1) the chemical characterization of mealybug pheromones and 2) the development
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; surveillance-data analysis; and scientific manuscript development for peer-reviewed publication. Gain experience with updates to DNPAO’s interactive, web-based data portal that displays Division surveillance
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of pear root systems, both in common rootstock cultivars and in genetically distinct pear genotypes. This project is part of a larger effort to understand the interactions between rootstocks and scions
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–vector interactions involved in viral infection, replication, pathogenesis, and transmission. Learn to design and execute complex laboratory experiments related to virology and infectious disease research
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USDA-ARS Molecular Biology Postdoctoral Fellowship in the Natural Products Utilization Research Unit
interactions. These directives require a multifaceted approach involving physiological, biochemical, and molecular experiments and the use of numerous techniques such as RNA-seq, data mining of DNA and protein
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biology and ecology will also be investigated. You will interact with team members and stakeholders. Learning Objectives: Under the guidance of a mentor, the participant will: Learn about the development
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interactions from every perspective—molecular, microbe, and natural host. For more information about the Agricultural Research Service (ARS) Research Participation Program, please visit the Program Website
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, you will gain significant knowledge and experience related to the modeling and analysis of weapons systems interactions with targets and the response and damage of targets to weapons effects. Where will
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modeling techniques to identify patterns, trends, and emerging public health concerns. Design and evaluation of interactive data visualizations and dashboards to communicate scientific findings. Best
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cloning, and gene expression analyses. Learn to design and carry out laboratory, greenhouse, and field studies involving plant–microbe interactions. Learn to integrate molecular and physiological approaches