979
Views
26
CrossRef citations to date
0
Altmetric
Research Paper

Identification of two-component system elements downstream of AHK5 in the stomatal closure response of Arabidopsis thaliana

, , , , &
Pages 1467-1476 | Published online: 05 Sep 2012

References

  • Schroeder JI, Kwak JM, Allen GJ. Guard cell abscisic acid signalling and engineering drought hardiness in plants. Nature 2001; 410:327 - 30; 10.1038/35066500; PMID: 11268200
  • Underwood W, Melotto M, He SY. Role of plant stomata in bacterial invasion. Cell Microbiol 2007; 9:1621 - 9; 10.1111/j.1462-5822.2007.00938.x; PMID: 17419713
  • Desikan R, Last K, Harrett-Williams R, Tagliavia C, Harter K, Hooley R, et al. Ethylene-induced stomatal closure in Arabidopsis occurs via AtrbohF-mediated hydrogen peroxide synthesis. Plant J 2006; 47:907 - 16; 10.1111/j.1365-313X.2006.02842.x; PMID: 16961732
  • Suhita D, Raghavendra AS, Kwak JM, Vavasseur A. Cytoplasmic alkalization precedes reactive oxygen species production during methyl jasmonate- and abscisic acid-induced stomatal closure. Plant Physiol 2004; 134:1536 - 45; 10.1104/pp.103.032250; PMID: 15064385
  • Desikan R, Cheung MK, Bright J, Henson D, Hancock JT, Neill SJ. ABA, hydrogen peroxide and nitric oxide signalling in stomatal guard cells. J Exp Bot 2004; 55:205 - 12; 10.1093/jxb/erh033; PMID: 14673026
  • Pham J, Desikan R. ROS signalling in stomata. In: Reactive oxygen Species in Plant Signalling. Puppo A, del Rio L, Eds. Springer-Verlag 2009; pp55-71.
  • Desikan R, Horák J, Chaban C, Mira-Rodado V, Witthöft J, Elgass K, et al. The histidine kinase AHK5 integrates endogenous and environmental signals in Arabidopsis guard cells. PLoS One 2008; 3:e2491; 10.1371/journal.pone.0002491; PMID: 18560512
  • Schroeder JI, Allen GJ, Hugouvieux V, Kwak JM, Waner D. Guard Cell Signal Transduction. Annu Rev Plant Physiol Plant Mol Biol 2001; 52:627 - 58; 10.1146/annurev.arplant.52.1.627; PMID: 11337411
  • Grefen C, Harter K. Plant two-component systems: principles, functions, complexity and cross talk. Planta 2004; 219:733 - 42; 10.1007/s00425-004-1316-4; PMID: 15232695
  • Hwang I, Sheen J. Two-component circuitry in Arabidopsis cytokinin signal transduction. Nature 2001; 413:383 - 9; 10.1038/35096500; PMID: 11574878
  • Mira-Rodado V, Sweere U, Grefen C, Kunkel T, Fejes E, Nagy F, et al. Functional cross-talk between two-component and phytochrome B signal transduction in Arabidopsis. J Exp Bot 2007; 58:2595 - 607; 10.1093/jxb/erm087; PMID: 17545225
  • Sweere U, Eichenberg K, Lohrmann J, Mira-Rodado V, Bäurle I, Kudla J, et al. Interaction of the response regulator ARR4 with phytochrome B in modulating red light signaling. Science 2001; 294:1108 - 11; 10.1126/science.1065022; PMID: 11691995
  • Ishida K, Yamashino T, Mizuno T. Expression of the cytokinin-induced type-A response regulator gene ARR9 is regulated by the circadian clock in Arabidopsis thaliana. Biosci Biotechnol Biochem 2008; 72:3025 - 9; 10.1271/bbb.80402; PMID: 18997423
  • Salomé PA, To JP, Kieber JJ, McClung CR. Arabidopsis response regulators ARR3 and ARR4 play cytokinin-independent roles in the control of circadian period. Plant Cell 2006; 18:55 - 69; 10.1105/tpc.105.037994; PMID: 16326927
  • Ren B, Liang Y, Deng Y, Chen Q, Zhang J, Yang X, et al. Genome-wide comparative analysis of type-A Arabidopsis response regulator genes by overexpression studies reveals their diverse roles and regulatory mechanisms in cytokinin signaling. Cell Res 2009; 19:1178 - 90; 10.1038/cr.2009.88; PMID: 19621034
  • Jeon J, Kim NY, Kim S, Kang NY, Novák O, Ku SJ, et al. A subset of cytokinin two-component signaling system plays a role in cold temperature stress response in Arabidopsis. J Biol Chem 2010; 285:23371 - 86; 10.1074/jbc.M109.096644; PMID: 20463025
  • D’Agostino IB, Deruère J, Kieber JJ. Characterization of the response of the Arabidopsis response regulator gene family to cytokinin. Plant Physiol 2000; 124:1706 - 17; 10.1104/pp.124.4.1706; PMID: 11115887
  • Müller B. Generic signal-specific responses: cytokinin and context-dependent cellular responses. J Exp Bot 2011; 62:3273 - 88; 10.1093/jxb/erq420; PMID: 21212299
  • Desikan R, Hancock JT, Bright J, Harrison J, Weir I, Hooley R, et al. A role for ETR1 in hydrogen peroxide signaling in stomatal guard cells. Plant Physiol 2005; 137:831 - 4; 10.1104/pp.104.056994; PMID: 15761208
  • Schütze K, Harter K, Chaban C. Bimolecular fluorescence complementation (BiFC) to study protein-protein interactions in living plant cells. Methods Mol Biol 2009; 479:189 - 202; 10.1007/978-1-59745-289-2_12; PMID: 19083187
  • Walter M, Chaban C, Schütze K, Batistic O, Weckermann K, Näke C, et al. Visualization of protein interactions in living plant cells using bimolecular fluorescence complementation. Plant J 2004; 40:428 - 38; 10.1111/j.1365-313X.2004.02219.x; PMID: 15469500
  • Hutchison CE, Li J, Argueso C, Gonzalez M, Lee E, Lewis MW, et al. The Arabidopsis histidine phosphotransfer proteins are redundant positive regulators of cytokinin signaling. Plant Cell 2006; 18:3073 - 87; 10.1105/tpc.106.045674; PMID: 17122069
  • To JP, Kieber JJ. Cytokinin signaling: two-components and more. Trends Plant Sci 2008; 13:85 - 92; 10.1016/j.tplants.2007.11.005; PMID: 18262459
  • Dortay H, Mehnert N, Bürkle L, Schmülling T, Heyl A. Analysis of protein interactions within the cytokinin-signaling pathway of Arabidopsis thaliana. FEBS J 2006; 273:4631 - 44; 10.1111/j.1742-4658.2006.05467.x; PMID: 16965536
  • Horák J, Grefen C, Berendzen KW, Hahn A, Stierhof YD, Stadelhofer B, et al. The Arabidopsis thaliana response regulator ARR22 is a putative AHP phospho-histidine phosphatase expressed in the chalaza of developing seeds. BMC Plant Biol 2008; 8:77 - 95; 10.1186/1471-2229-8-77; PMID: 18625081
  • Leonhardt N, Kwak JM, Robert N, Waner D, Leonhardt G, Schroeder JI. Microarray expression analyses of Arabidopsis guard cells and isolation of a recessive abscisic acid hypersensitive protein phosphatase 2C mutant. Plant Cell 2004; 16:596 - 615; 10.1105/tpc.019000; PMID: 14973164
  • Winter D, Vinegar B, Nahal H, Ammar R, Wilson GV, Provart NJ. An “Electronic Fluorescent Pictograph” browser for exploring and analyzing large-scale biological data sets. PLoS One 2007; 2:e718; 10.1371/journal.pone.0000718; PMID: 17684564
  • To JP, Haberer G, Ferreira FJ, Deruère J, Mason MG, Schaller GE, et al. Type-A Arabidopsis response regulators are partially redundant negative regulators of cytokinin signaling. Plant Cell 2004; 16:658 - 71; 10.1105/tpc.018978; PMID: 14973166
  • 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 - 5; 10.1038/nature04270; PMID: 16372013
  • Dortay H, Gruhn N, Pfeifer A, Schwerdtner M, Schmülling T, Heyl A. Toward an interaction map of the two-component signaling pathway of Arabidopsis thaliana. J Proteome Res 2008; 7:3649 - 60; 10.1021/pr0703831; PMID: 18642946
  • Urao T, Miyata S, Yamaguchi-Shinozaki K, Shinozaki K. Possible His to Asp phosphorelay signaling in an Arabidopsis two-component system. FEBS Lett 2000; 478:227 - 32; 10.1016/S0014-5793(00)01860-3; PMID: 10930573
  • Grefen C, Donald N, Hashimoto K, Kudla J, Schumacher K, Blatt MR. A ubiquitin-10 promoter-based vector set for fluorescent protein tagging facilitates temporal stability and native protein distribution in transient and stable expression studies. Plant J 2010; 64:355 - 65; 10.1111/j.1365-313X.2010.04322.x; PMID: 20735773
  • Iwama A, Yamashino T, Tanaka Y, Sakakibara H, Kakimoto T, Sato S, et al. AHK5 histidine kinase regulates root elongation through an ETR1-dependent abscisic acid and ethylene signaling pathway in Arabidopsis thaliana.. Plant Cell Physiol 2007; 48:375 - 80; 10.1093/pcp/pcl065; PMID: 17202180
  • Tran LS, Urao T, Qin F, Maruyama K, Kakimoto T, Shinozaki K, et al. Functional analysis of AHK1/ATHK1 and cytokinin receptor histidine kinases in response to abscisic acid, drought, and salt stress in Arabidopsis. Proc Natl Acad Sci U S A 2007; 104:20623 - 8; 10.1073/pnas.0706547105; PMID: 18077346
  • Hwang I, Chen HC, Sheen J. Two-component signal transduction pathways in Arabidopsis. Plant Physiol 2002; 129:500 - 15; 10.1104/pp.005504; PMID: 12068096
  • Hass C, Lohrmann J, Albrecht V, Sweere U, Hummel F, Yoo SD, et al. The response regulator 2 mediates ethylene signalling and hormone signal integration in Arabidopsis. EMBO J 2004; 23:3290 - 302; 10.1038/sj.emboj.7600337; PMID: 15282545
  • Scharein B, Voet-van-Vormizeele J, Harter K, Groth G. Ethylene signaling: identification of a putative ETR1-AHP1 phosphorelay complex by fluorescence spectroscopy. Anal Biochem 2008; 377:72 - 6; 10.1016/j.ab.2008.03.015; PMID: 18384742
  • Qu X, Schaller GE. Requirement of the histidine kinase domain for signal transduction by the ethylene receptor ETR1. Plant Physiol 2004; 136:2961 - 70; 10.1104/pp.104.047126; PMID: 15466228
  • Wanke D, Hohenstatt ML, Dynowski M, Bloss U, Hecker A, Elgass K, et al. Alanine zipper-like coiled-coil domains are necessary for homotypic dimerization of plant GAGA-factors in the nucleus and nucleolus. PLoS One 2011; 6:e16070; 10.1371/journal.pone.0016070; PMID: 21347358
  • Grefen C, Obrdlik P, Harter K. The determination of protein-protein interactions by the mating-based split-ubiquitin system (mbSUS). Methods Mol Biol 2009; 479:217 - 33; 10.1007/978-1-59745-289-2_14; PMID: 19083185

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.