Mark Rebeiz
Affiliations: | University of Pittsburgh, Pittsburgh, PA, United States |
Area:
Evolution and DevelopmentGoogle:
"Mark Rebeiz"Parents
Sign in to add mentorJames W. Posakony | grad student | 2000-2006 | UCSD | |
(Logic, genomics, and evolution of the peripheral nervous system transcriptional network of Drosophila.) | ||||
Sean B. Carroll | post-doc | 2006-2010 | UW Madison |
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Publications
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Finet C, Kassner VA, Carvalho AB, et al. (2021) DrosoPhyla: resources for Drosophilid Phylogeny and Systematics. Genome Biology and Evolution |
Hughes JT, Williams ME, Rebeiz M, et al. (2021) Widespread cis- and trans-regulatory evolution underlies the origin, diversification, and loss of a sexually dimorphic fruit fly pigmentation trait. Journal of Experimental Zoology. Part B, Molecular and Developmental Evolution |
McQueen E, Rebeiz M. (2020) On the specificity of gene regulatory networks: How does network co-option affect subsequent evolution? Current Topics in Developmental Biology. 139: 375-405 |
Smith SJ, Davidson LA, Rebeiz M. (2020) Evolutionary expansion of apical extracellular matrix is required for the elongation of cells in a novel structure. Elife. 9 |
Camino EM, Weinstein ML, List MP, et al. (2020) Red Light/Green Light, a Dual Fluorescent Protein Reporter System To Study Enhancer-Promoter Specificity in . G3 (Bethesda, Md.) |
Hughes JT, Williams ME, Johnson R, et al. (2020) Gene Regulatory Network Homoplasy Underlies Recurrent Sexually Dimorphic Fruit Fly Pigmentation Frontiers in Ecology and Evolution. 8 |
Vincent BJ, Rice GR, Wong GM, et al. (2019) An Atlas of Transcription Factors Expressed in Male Pupal Terminalia of . G3 (Bethesda, Md.) |
Liu Y, Ramos-Womack M, Han C, et al. (2019) Changes throughout a Genetic Network Mask the Contribution of Hox Gene Evolution. Current Biology : Cb |
Rice G, Rebeiz M. (2019) Evolution: How Many Phenotypes Do Regulatory Mutations Affect? Current Biology : Cb. 29: R21-R23 |
Smith SJ, Rebeiz M, Davidson L. (2018) From pattern to process: studies at the interface of gene regulatory networks, morphogenesis, and evolution. Current Opinion in Genetics & Development. 51: 103-110 |