Tiffany Lowe-Power, PhD

Affiliations: 
2019- Plant Pathology University of California, Davis, Davis, CA 
Area:
bacteriology, plant pathology, microbial ecology, metabolism, symbiosis
Website:
https://microbiome.ucdavis.edu/people/tiffany-lowe-power
Google:
"Tiffany Lowe-Power"
Bio:

http://lowepowerlab.ucdavis.edu/people/
https://scholar.google.com/citations?user=aMxz2moAAAAJ&hl=en

Parents

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Caitilyn Allen grad student 2017 UW Madison
 (Metabolic analyses of Ralstonia solanacearum during plant pathogenesis)
Steven E. Lindow post-doc (Terrestrial Ecology Tree)
BETA: Related publications

Publications

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Lowe-Power T, Dyson L, Polter AM. (2021) A generation of junior faculty is at risk from the impacts of COVID-19. Plos Biology. 19: e3001266
Wu D, von Roepenack-Lahaye E, Buntru M, et al. (2019) A Plant Pathogen Type III Effector Protein Subverts Translational Regulation to Boost Host Polyamine Levels. Cell Host & Microbe
Khokhani D, Tran TM, Lowe-Power TM, et al. (2018) Plant Assays for Quantifying Virulence. Bio-Protocol. 8: e3028
Lowe-Power TM, Khokhani D, Allen C. (2018) How Ralstonia solanacearum Exploits and Thrives in the Flowing Plant Xylem Environment. Trends in Microbiology
Lowe-Power TM, Hendrich CG, von Roepenack-Lahaye E, et al. (2017) Metabolomics of tomato xylem sap during bacterial wilt reveals Ralstonia solanacearum produces abundant putrescine, a metabolite that accelerates wilt disease. Environmental Microbiology
Khokhani D, Lowe-Power TM, Tran TM, et al. (2017) A Single Regulator Mediates Strategic Switching between Attachment/Spread and Growth/Virulence in the Plant Pathogen Ralstonia solanacearum. Mbio. 8
Tancos MA, Lowe-Power TM, Peritore-Galve FC, et al. (2017) Plant-like bacterial expansins play contrasting roles in two tomato vascular pathogens. Molecular Plant Pathology
Li B, Lowe-Power T, Kurihara S, et al. (2016) Functional Identification of Putrescine C- and N-Hydroxylases. Acs Chemical Biology
Lowe-Power TM, Jacobs JM, Ailloud F, et al. (2016) Degradation of the Plant Defense Signal Salicylic Acid Protects Ralstonia solanacearum from Toxicity and Enhances Virulence on Tobacco. Mbio. 7
Mason CJ, Lowe-Power TM, Rubert-Nason KF, et al. (2016) Interactions between Bacteria And Aspen Defense Chemicals at the Phyllosphere - Herbivore Interface. Journal of Chemical Ecology
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