Karen Schumaker

Plant Science University of Arizona, Tucson, AZ 
Plant Culture Agriculture, Molecular Biology, Evolution and Development Biology
"Karen Schumaker"
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Monihan SM, Magness CA, Ryu CH, et al. (2020) Duplication and functional divergence of a calcium sensor in the Brassicaceae. Journal of Experimental Botany
Monihan SM, Ryu CH, Magness CA, et al. (2019) Linking duplication of a calcium sensor to salt tolerance in Eutrema salsugineum. Plant Physiology
Monihan SM, Magness CA, Yadegari R, et al. (2016) Arabidopsis CALCINEURIN B-LIKE10 functions independently of the SOS pathway during reproductive development in saline conditions. Plant Physiology
Li J, Liu J, Wang G, et al. (2015) A chaperone function of NO CATALASE ACTIVITY1 is required to maintain catalase activity and for multiple stress responses in Arabidopsis. The Plant Cell. 27: 908-25
Jarvis DE, Ryu CH, Beilstein MA, et al. (2014) Distinct roles for SOS1 in the convergent evolution of salt tolerance in Eutrema salsugineum and Schrenkiella parvula. Molecular Biology and Evolution. 31: 2094-107
Zhou H, Lin H, Chen S, et al. (2014) Inhibition of the Arabidopsis salt overly sensitive pathway by 14-3-3 proteins. The Plant Cell. 26: 1166-82
Lin H, Du W, Yang Y, et al. (2014) A calcium-independent activation of the Arabidopsis SOS2-like protein kinase24 by its interacting SOS3-like calcium binding protein1. Plant Physiology. 164: 2197-206
Haudry A, Platts AE, Vello E, et al. (2013) An atlas of over 90,000 conserved noncoding sequences provides insight into crucifer regulatory regions. Nature Genetics. 45: 891-8
Yang R, Jarvis DE, Chen H, et al. (2013) The Reference Genome of the Halophytic Plant Eutrema salsugineum. Frontiers in Plant Science. 4: 46
Zhou H, Zhao J, Yang Y, et al. (2012) Ubiquitin-specific protease16 modulates salt tolerance in Arabidopsis by regulating Na(+)/H(+) antiport activity and serine hydroxymethyltransferase stability. The Plant Cell. 24: 5106-22
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