Hunter Bryan Fraser

Affiliations: 
2005 University of California, Berkeley, Berkeley, CA, United States 
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"Hunter Fraser"

Parents

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Michael B. Eisen grad student 2005 UC Berkeley
 (Studies of evolution from a genomic perspective.)

Children

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David Gokhman post-doc
Sur Herrera Paredes post-doc 2017- Stanford (Plant Biology Tree)
Manuel Irimia post-doc 2011-2011 Stanford (Evolution Tree)
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Publications

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Aguilar-Rodríguez J, Vila J, Chen SA, et al. (2024) Massively parallel experimental interrogation of natural variants in ancient signaling pathways reveals both purifying selection and local adaptation. Biorxiv : the Preprint Server For Biology
Starr AL, Nishimura T, Igarashi KJ, et al. (2024) Disentangling cell-intrinsic and extrinsic factors underlying gene expression evolution. Biorxiv : the Preprint Server For Biology
Wang B, Starr AL, Fraser HB. (2024) Cell-type-specific -regulatory divergence in gene expression and chromatin accessibility revealed by human-chimpanzee hybrid cells. Elife. 12
Pettie KP, Mumbach M, Lea AJ, et al. (2024) Chromatin activity identifies differential gene regulation across human ancestries. Genome Biology. 25: 21
Wang B, Starr AL, Fraser HB. (2023) Cell type-specific -regulatory divergence in gene expression and chromatin accessibility revealed by human-chimpanzee hybrid cells. Biorxiv : the Preprint Server For Biology
Chen SA, Kern AF, Ang RML, et al. (2023) Gene-by-environment interactions are pervasive among natural genetic variants. Cell Genomics. 3: 100273
Mack KL, Square TA, Zhao B, et al. (2023) Evolution of spatial and temporal cis-regulatory divergence in sticklebacks. Molecular Biology and Evolution
Starr AL, Gokhman D, Fraser HB. (2023) Accounting for cis-regulatory constraint prioritizes genes likely to affect species-specific traits. Genome Biology. 24: 11
García-Nieto PE, Wang B, Fraser HB. (2022) Transcriptome diversity is a systematic source of variation in RNA-sequencing data. Plos Computational Biology. 18: e1009939
Hu CK, York RA, Metz HC, et al. (2022) cis-Regulatory changes in locomotor genes are associated with the evolution of burrowing behavior. Cell Reports. 38: 110360
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