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Hasegawa

P.M. Hasegawa

Professor
Ph.D.

Area of Interest:
Plant Environmental Stress Physiology

E-mail:
Research Homepage

CV

Teaching Responsibilities
  • HORT 515, Plant Cell, Tissue, and Organ Culture

Plant Environmental Stress Physiology

For information on Dr. Hasegawa's Research Interests and Publications, please follow this link.

 

Selected Publications

  • Jin J.B., Y.H. Jin, Y. Lee, K. Miura, C.Y. Yoo, W.-Y. Kim, M. Van Oosten, Y. Hyun, D.E. Somers, I Lee, D.-J. Yun, R.A. Bressan, P.M. Hasegawa. 2008. The SUMO E3 ligase, AtSIZ1, regulates flowering by controlling a salicylic acid-mediated floral promotion pathway and through affects on FLC chromatin structure. Plant J. 53:530-540.
  • Zhu J, Jeong J, Zhu,Y, Sokolchik I, Miyazaki S, Zhu J-K, Hasegawa PM, Bohnert HJ, Shi, H., Yun, D.-J., and Bressan, R.A. (2008) Involvement of Arabidopsis HOS15 in histone deacetylation and cold tolerance. Proc. Natl. Acad. Sci. USA. 105:4945-4950.
  • Chung J-S, Zhu J-K, Bressan RA, Hasegawa PM, Shi H  (2008) Reactive oxygen species mediate Na+-induced SOS1 mRNA stability in Arabidopsis.  Plant J  53:554-464.
  • Miura K., J.B. Jin, P.M. Hasegawa. 2007. Sumoylation, a post-translational regulatory process in plants.  Curr Opin Plant Biol  10:495-502.
  • Miura K., J.B. Jin, J. Lee, C.Y. Yoo, V. Stirm, T. Miura, R.A. Bressan, D.-J. Yun, P.M. Hasegawa. 2007.  SIZ1-Mediated Sumoylation of ICE1 Controls CBF3/DREB1A Expression and Freezing Tolerance in Arabidopsis.  Plant Cell 19:1403-1414.
  • Yoo C.Y., K. Miura, J.B. Jin, J. Lee, H.C. Park, D.E. Salt, D.-J. Yun, R.A. Bressan, P.M. Hasegawa. 2006. SIZ1 small ubiquitin-like modifier E3 ligase facilitates basal thermotolerance in Arabidopsis independent of salicylic acid. Plant Physiol. 142:1548-1558.
  • Miura K., A. Rus, A. Sharkhuu, S. Yokoi, A.S. Karthikeyan, K.G. Raghothama, D. Baek, Y.D. Koo, J.B. Jin, R.A. Bressan, D.-J. Yun, P.M. Hasegawa. 2005. The Arabidopsis SUMO E3 ligase SIZ1 controls phosphate deficiency responses. Proc. Natl. Acad. Sci. USA 102:7760-7765.
  • Miura K., A. Rus, A. Sharkhuu, S. Yokoi, A.S. Karthikeyan, K.G. Raghothama, D. Baek, Y.D. Koo, J.B. Jin, R.A. Bressan, D.-J. Yun, P.M. Hasegawa. 2005. The Arabidopsis SUMO E3 ligase SIZ1 controls phosphate deficiency responses. Proc. Natl. Acad. Sci. USA 102:9734(correction/addition).
  • Rus, A., B.-H. Lee, A. Muñoz-Mayor, A. Sharkhuu, K. Miura, J.-K. Zhu, R.A. Bressan, P.M. Hasegawa. 2004. AtHKT1 facilitates Na+ homeostasis and controls K+ nutrition in planta. Plant Physiol. 136:2500-2511.
  • Koiwa, H., F. Li, M.G. McCully, I. Mendoza, N. Koizumi, Y. Manabe, Y. Nakagawa, J. Zhu, A. Rus, J.M. Pardo, R.A. Bressan, P.M. Hasegawa. 2003. The STT3a subunit isoform of the Arabidopsis oligosaccharyltransferase controls adaptive responses to salt/osmotic stress. Plant Cell 15:2273-2284.
  • Matsumoto, T.K., A.J. Ellsmore, S.G. Cessna, P.S. Low, J.M. Pardo, R.A. Bressan, P.M. Hasegawa. 2002. An osmotically induced cytosolic Ca2+ activates calcineurin signaling to mediate ion homeostasis and salt tolerance of Saccharomyces cerevisiae. J Biol Chem 277:33075-33080.
  • Koiwa, H., A.W. Barb, L. Xiong, F. Li, M.G. McCully, B. Lee, I. Sokolchik, J. Zhu, Z. Gong, M. Reddy, A. Sharkhuu, Y. Manabe, S. Yokoi, J.-K. Zhu, R.A. Bressan, P.M. Hasegawa. 2002. C-terminal domain phosphatase-like family members (AtCPLs) differentially regulate Arabidopsis thaliana abiotic stress signaling, growth, and development. Proc. Natl. Acad. Sci. 99:10893-10898.
  • Yokoi, S., F.J. Quintero, B. Cubero, M.T. Ruiz, R.A. Bressan, P.M. Hasegawa, J.M. Pardo. 2002. Differential expression and function of Arabidopsis thaliana NHX Na+/H+ antiporters in the salt stress response. Plant J. 30:529-539.
  • Huh, G.-H., B. Damsz, T.K. Matsumoto, M.P. Reddy, A.M. Rus, J.I. Ibeas, M.L. Narasimhan, R.A. Bressan, P.M. Hasegawa. 2002. Salt causes ion disequilibrium-induced programmed cell death in yeast and plants. Plant J. 29:649-569.
  • Rus, A., S. Yokoi, A. Sharkhuu, M. Reddy, B. Lee, T.K. Matsumoto, H. Koiwa, J.-K. Zhu, R.A. Bressan, P.M. Hasegawa. 2001. AtHKT1 is a salt tolerance determinant that controls Na+ entry into plant roots. Proc. Natl. Acad. Sci. 98:14150-14155.
  • Koiwa H., M. Paino D'Urzo, I. Machleidt, K. Zhu-Salzman, R.E. Shade, H. An, L.L. Murdock, W. Machleidt, R.A. Bressan, P.M. Hasegawa. 2001. Phage display selection of hairpin loop soyacystatin variants that mediate high affinity inhibition of a cysteine proteinase.  Plant J 14:371-379.
  • Gong Z., H. Koiwa, M.A. Cushman, A. Ray, D. Bufford, S. Kore-eda, T. Matsumoto, J. Zhu, J. Cushman, R.A. Bressan, P.M. Hasegawa. 2001. Genes that are uniquely stress-regulated in salt overly sensitive (sos) mutants.  Plant Physiol 126:1363-1375.
  • Hasegawa, P.M., R.A. Bressan, J.-K. Zhu, H.J. Bohnert. 2000. Plant cellular and molecular responses to high salinity. Annu. Rev. Plant Physiol. Plant Mol. Biol. 51:463-499.
  • Maggio A., J.K. Zhu, P.M. Hasegawa, R.A. Bressan. 2006. Osmogenetics: Aristotle to Arabidopsis. Plant Cell 18:1542-1557.
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