Frans E. Tax

Affiliations: 
Molecular & Cellular Biology University of Arizona, Tucson, AZ 
Area:
Molecular Biology, Cell Biology
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"Frans Tax"
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Publications

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Racolta A, Nodine MD, Davies K, et al. (2017) A Common Pathway of Root Growth Control and Response to CLE Peptides Through Two Receptor Kinases in Arabidopsis. Genetics
Imkampe J, Halter T, Huang S, et al. (2017) The Arabidopsis Leucine-rich Repeat Receptor Kinase BIR3 Negatively Regulates BAK1 Receptor Complex Formation and Stabilizes BAK1. The Plant Cell
Sun C, Yan K, Han JT, et al. (2017) Scanning for new BRI1 receptor mutations via TILLING analysis. Plant Physiology
Shi T, Dimitrov I, Zhang Y, et al. (2015) Accelerated rates of protein evolution in barley grain and pistil biased genes might be legacy of domestication. Plant Molecular Biology
Ma C, Guo J, Kang Y, et al. (2014) AtPEPTIDE RECEPTOR2 mediates the AtPEPTIDE1-induced cytosolic Ca(2+) rise, which is required for the suppression of Glutamine Dumper gene expression in Arabidopsis roots. Journal of Integrative Plant Biology. 56: 684-94
Racolta A, Bryan AC, Tax FE. (2014) The receptor-like kinases GSO1 and GSO2 together regulate root growth in arabidopsis through control of cell division and cell fate specification. Developmental Dynamics : An Official Publication of the American Association of Anatomists. 243: C1
Halter T, Imkampe J, Mazzotta S, et al. (2014) The leucine-rich repeat receptor kinase BIR2 is a negative regulator of BAK1 in plant immunity. Current Biology : Cb. 24: 134-43
Racolta A, Bryan AC, Tax FE. (2014) The receptor-like kinases GSO1 and GSO2 together regulate root growth in Arabidopsis through control of cell division and cell fate specification. Developmental Dynamics : An Official Publication of the American Association of Anatomists. 243: 257-78
Shi T, Huang H, Sanderson MJ, et al. (2014) Evolutionary dynamics of leucine-rich repeat receptor-like kinases and related genes in plants: A phylogenomic approach Journal of Integrative Plant Biology. 56: 648-662
Mosher S, Seybold H, Rodriguez P, et al. (2013) The tyrosine-sulfated peptide receptors PSKR1 and PSY1R modify the immunity of Arabidopsis to biotrophic and necrotrophic pathogens in an antagonistic manner. The Plant Journal : For Cell and Molecular Biology. 73: 469-82
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