Jennifer Nemhauser

University of Washington, Seattle, Seattle, WA 
"Jennifer Nemhauser"


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Britney L. Moss post-doc 2011-2015 University of Washington (Cell Biology Tree)
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Guiziou S, Chu JC, Nemhauser JL. (2022) Decoding and recoding plant development. Plant Physiology. 187: 515-526
Wright RC, Moss BL, Nemhauser JL. (2021) The Systems and Synthetic Biology of Auxin. Cold Spring Harbor Perspectives in Biology
Leydon AR, Wang W, Gala HP, et al. (2021) Repression by the TOPLESS corepressor requires association with the core Mediator complex. Elife. 10
Gala HP, Lanctot A, Jean-Baptiste K, et al. (2021) A single cell view of the transcriptome during lateral root initiation in Arabidopsis thaliana. The Plant Cell
Ramos Báez R, Nemhauser JL. (2021) Expansion and innovation in auxin signaling: where do we grow from here? Development (Cambridge, England). 148
Smith S, Zhu S, Joos L, et al. (2020) The CEP5 Peptide Promotes Abiotic Stress Tolerance, As Revealed by Quantitative Proteomics, and Attenuates the AUX/IAA Equilibrium in Arabidopsis. Molecular & Cellular Proteomics : McP. 19: 1248-1262
Henkhaus N, Bartlett M, Gang D, et al. (2020) Plant science decadal vision 2020-2030: Reimagining the potential of plants for a healthy and sustainable future. Plant Direct. 4: e00252
Lanctot A, Nemhauser JL. (2020) It's Morphin' time: how multiple signals converge on ARF transcription factors to direct development. Current Opinion in Plant Biology. 57: 1-7
Smith S, Zhu S, Joos L, et al. (2020) The CEP5 peptide promotes abiotic stress tolerance, as revealed by quantitative proteomics, and attenuates the AUX/IAA equilibrium in Arabidopsis. Molecular & Cellular Proteomics : McP
Ramos Báez R, Buckley Y, Yu H, et al. (2020) A synthetic approach allows rapid characterization of the maize nuclear auxin response circuit. Plant Physiology
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