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Addendum

Regulation of NB-LRR-type UNI and its related signaling pathway

Signaling crosstalk and methodology for quick identification of related factors

&
Pages 1219-1222 | Received 28 Apr 2011, Accepted 28 Apr 2011, Published online: 01 Aug 2011

References

  • Igari K, Endo S, Hibara K, Aida M, Sakakibara H, Kawasaki T, et al. Constitutive activation of a CC-NB-LRR protein alters morphogenesis through the cytokinin pathway in Arabidopsis. Plant J 2008; 55:14 - 27
  • Bent AF, Mackey D. Elicitors, effectors and R genes: the new paradigm and a lifetime supply of questions. Annu Rev Phytopathol 2007; 45:399 - 436
  • Jones JD, Dangl JL. The plant immune system. Nature 2006; 444:323 - 329
  • Padmanabhan M, Cournoyer P, Dinesh-Kumar SP. The leucine-rich repeat domain in plant innate immunity: a wealth of possibilities. Cell Microbiol 2009; 11:191 - 198
  • Uchida N, Igari K, Bogenschutz NL, Torii KU, Tasaka M. Arabidopsis ERECTA-family Receptor Kinases Mediate Morphological Alterations Stimulated by Activation of NB-LRR-type UNI proteins. Plant Cell Physiol 2011; 52:804 - 814
  • Mayer KF, Schoof H, Haecker A, Lenhard M, Jurgens G, Laux T. Role of WUSCHEL in regulating stem cell fate in the Arabidopsis shoot meristem. Cell 1998; 95:805 - 815
  • Schoof H, Lenhard M, Haecker A, Mayer KF, Jurgens G, Laux T. The stem cell population of Arabidopsis shoot meristems in maintained by a regulatory loop between the CLAVATA and WUSCHEL genes. Cell 2000; 100:635 - 644
  • Gordon SP, Chickarmane VS, Ohno C, Meyerowitz EM. Multiple feedback loops through cytokinin signaling control stem cell number within the Arabidopsis shoot meristem. Proc Natl Acad Sci USA 2009; 106:16529 - 16534
  • Leibfried A, To JP, Busch W, Stehling S, Kehle A, Demar M, et al. WUSCHEL controls meristem function by direct regulation of cytokinin-inducible response regulators. Nature 2005; 438:1172 - 1175
  • Zhao Z, Andersen SU, Ljung K, Dolezal K, Miotk A, Schultheiss SJ, et al. Hormonal control of the shoot stem-cell niche. Nature 2010; 465:1089 - 1092
  • Takei K, Yamaya T, Sakakibara H. Arabidopsis CYP735A1 and CYP735A2 encode cytokinin hydroxylases that catalyze the biosynthesis of trans-Zeatin. J Biol Chem 2004; 279:41866 - 41872
  • Shpak ED, Berthiaume CT, Hill EJ, Torii KU. Synergistic interaction of three ERECTA-family receptor-like kinases controls Arabidopsis organ growth and flower development by promoting cell proliferation. Development 2004; 131:1491 - 1501
  • Torii KU, Mitsukawa N, Oosumi T, Matsuura Y, Yokoyama R, Whittier RF, et al. The Arabidopsis ERECTA gene encodes a putative receptor protein kinase with extracellular leucine-rich repeats. Plant Cell 1996; 8:735 - 746
  • Shpak ED, Lakeman MB, Torii KU. Dominant-negative receptor uncovers redundancy in the Arabidopsis ERECTA Leucine-rich repeat receptor-like kinase signaling pathway that regulates organ shape. Plant Cell 2003; 15:1095 - 1110
  • Uchida N, Sakamoto T, Kurata T, Tasaka M. Identification of EMS-induced causal mutations in a non-reference Arabidopsis thaliana accession by whole genome sequencing. Plant Cell Physiol 2011; 52:716 - 722
  • Austin MJ, Muskett P, Kahn K, Feys BJ, Jones JD, Parker JE. Regulatory role of SGT1 in early R gene-mediated plant defenses. Science 2002; 295:2077 - 2080
  • Azevedo C, Betsuyaku S, Peart J, Takahashi A, Noel L, Sadanandom A, et al. Role of SGT1 in resistance protein accumulation in plant immunity. EMBO J 2006; 25:2007 - 2016
  • Azevedo C, Sadanandom A, Kitagawa K, Freialdenhoven A, Shirasu K, Schulze-Lefert P. The RAR1 interactor SGT1, an essential component of R gene-triggered disease resistance. Science 2002; 295:2073 - 2076
  • Boter M, Amigues B, Peart J, Breuer C, Kadota Y, Casais C, et al. Structural and functional analysis of SGT1 reveals that its interaction with HSP90 is required for the accumulation of Rx, an R protein involved in plant immunity. Plant Cell 2007; 19:3791 - 3804
  • Hubert DA, Tornero P, Belkhadir Y, Krishna P, Takahashi A, Shirasu K, et al. Cytosolic HSP90 associates with and modulates the Arabidopsis RPM1 disease resistance protein. EMBO J 2003; 22:5679 - 5689
  • Stuttmann J, Parker JE, Noel LD. Staying in the fold: The SGT1/chaperone machinery in maintenance and evolution of leucine-rich repeat proteins. Plant Signal Behav 2008; 3:283 - 285
  • Tor M, Gordon P, Cuzick A, Eulgem T, Sinapidou E, Mert-Turk F, et al. Arabidopsis SGT1b is required for defense signaling conferred by several downy mildew resistance genes. Plant Cell 2002; 14:993 - 1003
  • Yang H, Shi Y, Liu J, Guo L, Zhang X, Yang S. A mutant CHS3 protein with TIR-NB-LRR-LIM domains modulates growth, cell death and freezing tolerance in a temperature-dependent manner in Arabidopsis. Plant J 2010; 63:283 - 296
  • Zhang M, Kadota Y, Prodromou C, Shirasu K, Pearl LH. Structural basis for assembly of Hsp90-Sgt1-CHORD protein complexes: implications for chaperoning of NLR innate immunity receptors. Mol Cell 2010; 39:269 - 281
  • Zhou F, Mosher S, Tian M, Sassi G, Parker J, Klessig DF. The Arabidopsis gain-of-function mutant ssi4 requires RAR1 and SGT1b differentially for defense activation and morphological alterations. Mol Plant Microbe Interact 2008; 21:40 - 49
  • Uchida N, Tasaka M. Intersections between immune responses and morphological regulation in plants. J Exp Bot 2010; 61:2539 - 2547

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