Proteome and metabolome profiling of cytokinin action in Arabidopsis identifying both distinct and similar responses to cytokinin down- and up-regulation

. 2013 Nov ; 64 (14) : 4193-206. [epub] 20130924

Jazyk angličtina Země Velká Británie, Anglie Médium print-electronic

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/pmid24064926

In plants, numerous developmental processes are controlled by cytokinin (CK) levels and their ratios to levels of other hormones. While molecular mechanisms underlying the regulatory roles of CKs have been intensely researched, proteomic and metabolomic responses to CK deficiency are unknown. Transgenic Arabidopsis seedlings carrying inducible barley cytokinin oxidase/dehydrogenase (CaMV35S>GR>HvCKX2) and agrobacterial isopentenyl transferase (CaMV35S>GR>ipt) constructs were profiled to elucidate proteome- and metabolome-wide responses to down- and up-regulation of CK levels, respectively. Proteome profiling identified >1100 proteins, 155 of which responded to HvCKX2 and/or ipt activation, mostly involved in growth, development, and/or hormone and light signalling. The metabolome profiling covered 79 metabolites, 33 of which responded to HvCKX2 and/or ipt activation, mostly amino acids, carbohydrates, and organic acids. Comparison of the data sets obtained from activated CaMV35S>GR>HvCKX2 and CaMV35S>GR>ipt plants revealed unexpectedly extensive overlaps. Integration of the proteomic and metabolomic data sets revealed: (i) novel components of molecular circuits involved in CK action (e.g. ribosomal proteins); (ii) previously unrecognized links to redox regulation and stress hormone signalling networks; and (iii) CK content markers. The striking overlaps in profiles observed in CK-deficient and CK-overproducing seedlings might explain surprising previously reported similarities between plants with down- and up-regulated CK levels.

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Argueso CT, Ferreira FJ, Kieber JJ. 2009. Environmental perception avenues: the interaction of cytokinin and environmental response pathways. Plant, Cell and Environment 32, 1147–1160 PubMed

Baginsky S, Hennig L, Zimmermann P, Gruissem W. 2010. Gene expression analysis, proteomics, and network discovery. Plant Physiology 152, 402–410 PubMed PMC

Bartrina I, Otto E, Strnad M, Werner T, Schmülling T. 2011. Cytokinin regulates the activity of reproductive meristems, flower organ size, ovule formation, and thus seed yield in Arabidopsis thaliana . The Plant Cell 23, 69–80 PubMed PMC

Bechtold N, Ellis J, Pelletier G. 1993. In planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants. Comptes Rendus de l Academie des Sciences Paris, Sciences de la vie/Life Sciences 316, 1194–1199

Benková E, Witters E, Van Dongen W, Kolář J, Motyka V, Brzobohatý B, Van Onckelen HA, Macháčková I. 1999. Cytokinins in tobacco and wheat chloroplasts: occurrence and changes due to light/dark treatment. Plant Physiology 121, 245–251 PubMed PMC

Bieleski RL. 1964. The problem of halting enzyme action when extracting plant tissues. Analytical Biochemistry 9, 431–442 PubMed

Brenner WG, Ramireddy E, Heyl A, Schmülling T. 2012. Gene regulation by cytokinin in Arabidopsis. Frontiers in Plant Science 3, 8. PubMed PMC

Brenner WG, Romanov GA, Köllmer I, Bürkle L, Schmülling T. 2005. Immediate-early and delayed cytokinin response genes of Arabidopsis thaliana identified by genome-wide expression profiling reveal novel cytokinin-sensitive processes and suggest cytokinin action through transcriptional cascades. The Plant Journal 44, 314–333 PubMed

Brenner WG, Schmulling T. 2012. Transcript profiling of cytokinin action in Arabidopsis roots and shoots discovers largely similar but also organ-specific responses. BMC Plant Biology 12, 112. PubMed PMC

Brzobohatý B, Morre I, Kristoffersen P, Bako L, Campos N, Schell J, Palme K. 1993. Release of active cytokinin by a β-glucosidase localized to the maize root meristem. Science 262, 1051–1054 PubMed

Brzobohatý B, Morre I, Palme K. 1994. Cytokinin metabolism: implications for regulation of plant growth and development. Plant Molecular Biology 26, 1483–1497 PubMed

Černý M, Doubnerová V, Müller K, Ryšlavá H. 2010. Characterization of phosphoenolpyruvate carboxylase from mature maize seeds: properties of phosphorylated and dephosphorylated forms. Biochimie 92, 1362–1370 PubMed

Černý M, Dyčka F, Bobál’ová J, Brzobohatý B. 2011. a Early cytokinin response proteins and phosphoproteins of Arabidopsis thaliana identified by proteome and phosphoproteome profiling. Journal of Experimental Botany 62, 921–937 PubMed PMC

Černý M, Skalák J, Kurková B, Babuliaková E, Brzobohatý B. 2011. b Using a commercial method for Rubisco immunodepletion in analysis of plant proteome. Chemické listy 105, 640–642

Chen R, Binder BM, Garrett WM, Tucker ML, Chang C, Cooper B. 2011. Proteomic responses in Arabidopsis thaliana seedlings treated with ethylene. Molecular BioSystems 7, 2637–2650 PubMed

Chen Y, Hoehenwarter W, Weckwerth W. 2010. Comparative analysis of phytohormone-responsive phosphoproteins in Arabidopsis thaliana using TiO2-phosphopeptide enrichment and mass accuracy precursor alignment. The Plant Journal 63, 1–17 PubMed

Chory J, Reinecke D, Sim S, Washburn T, Brenner M. 1994. A role for cytokinins in de-etiolation in Arabidopsis (det mutants have an altered response to cytokinins). Plant Physiology 104, 339–347 PubMed PMC

Cline MG. 1994. The role of hormones in apical dominance—new approaches to an old problem in plant development. Physiologia Plantarum 90, 230–237

Craft J, Šámalová M, Baroux C, Townley H, Martinez A, Jepson I, Tsiantis M, Moore I. 2005. New pOp/LhG4 vectors for stringent glucocorticoid-dependent transgene expression in Arabidopsis. The Plant Journal 41, 899–918 PubMed

D’Agostino IB, Deruère J, Kieber JJ. 2000. Characterization of the response of the Arabidopsis response regulator gene family to cytokinin. Plant Physiology 124, 1706–1717 PubMed PMC

Damerval C, De Vienne D, Zivy M, Thiellement H. 1986. Technical improvements in two-dimensional electrophoresis increase the level of genetic variation detected in wheat-seedling proteins. Electrophoresis 7, 52–54

Frébort I, Kowalska M, Hluska T, Frébortová J, Galuszka P. 2011. Evolution of cytokinin biosynthesis and degradation. Journal of Experimental Botany 62, 2431–2452 PubMed

Gadallah M. 1999. Effects of kinetin on growth, grain yield and some mineral elements in wheat plants growing under excess salinity and oxygen deficiency. Plant Growth Regulation 27, 63–74

Galuszka P, Frébort I, Šebela M, Sauer P, Jacobsen S, Peč P. 2001. Cytokinin oxidase or dehydrogenase? Mechanism of cytokinin degradation in cereals. European Journal of Biochemistry 268, 450–461 PubMed

Galuszka P, Frébortová J, Werner T, Yamada M, Strnad M, Schmülling T, Frébort I. 2004. Cytokinin oxidase/dehydrogenase genes in barley and wheat: cloning and heterologous expression. European Journal of Biochemistry 271, 3990–4002 PubMed

Galuszka P, Popelková H, Werner T, Frébortová J, Pospíšilová H, Mik V, Köllmer I, Schmülling T, Frébort I. 2007. Biochemical characterization of cytokinin oxidases/dehydrogenases from Arabidopsis thaliana expressed in Nicotiana tabacum L. Journal of Plant Growth Regulation 26, 255–267

Ghanem ME, Albacete A, Smigocki AC, et al. 2011. Root-synthesized cytokinins improve shoot growth and fruit yield in salinized tomato (Solanum lycopersicum L.) plants. Journal of Experimental Botany 62, 125–140 PubMed PMC

Ha S, Vankova R, Yamaguchi-Shinozaki K, Shinozaki K, Tran LP. 2012. Cytokinins: metabolism and function in plant adaptation to environmental stresses. Trends in Plant Science 17, 172–179 PubMed

Hay S, Tsiantis M. 2010. KNOX genes: versatile regulators of plant development and diversity. Development 137, 3153–3165 PubMed

Heazlewood JL, Verboom RE, Tonti-Filippini J, Small I, Millar AH. 2007. SUBA: the Arabidopsis Subcellular Database. Nucleic Acids Research 35, D213–D218 PubMed PMC

Hoehenwarter W, Wienkoop S. 2010. Spectral counting robust on high mass accuracy mass spectrometers. Rapid Communications in Mass Spectrometry 24, 3609–3614 PubMed

Holst K, Schmülling T, Werner T. 2011. Enhanced cytokinin degradation in leaf primordia of transgenic Arabidopsis plants reduces leaf size and shoot organ primordia formation. Journal of Plant Physiology 168, 1328–1334 PubMed

Horiguchi G, Mollá-Morales A, Pérez-Pérez JM, Kojima K, Robles P, Ponce MR, Micol JL, Tsukaya H. 2011. Differential contributions of ribosomal protein genes to Arabidopsis thaliana leaf development. The Plant Journal 65, 724–736 PubMed

Hoth S, Ikeda Y, Morgante M, Wang X, Zuo J, Hanafey MK, Gaasterland T, Tingey SV, Chua N. 2003. Monitoring genome-wide changes in gene expression in response to endogenous cytokinin reveals targets in Arabidopsis thaliana. FEBS Letters 554, 373–380 PubMed

Hradilová J, Malbeck J, Brzobohatý B. 2007. Cytokinin regulation of gene expression in the AHP gene family in Arabidopsis thaliana . Journal of Plant Growth Regulation 26, 229–244

Hradilová J, Rehulka P, Rehulková H, Vrbová M, Griga M, Brzobohatý B. 2010. Comparative analysis of proteomic changes in contrasting flax cultivars upon cadmium exposure. Electrophoresis 31, 421–431 PubMed

Jung C, Lyou SH, Yeu S, Kim MA, Rhee S, Kim M, Lee JS, Choi YD, Cheong J. 2007. Microarray-based screening of jasmonate-responsive genes in Arabidopsis thaliana . Plant Cell Reports 26, 1053–1063 PubMed

Jung C, Yeu S, Koo Y, Kim M, Choi Y, Cheong J. 2007. Transcript profile of transgenic Arabidopsis constitutively producing methyl jasmonate. Journal of Plant Biology 50, 12–17

Katari MS, Nowicki SD, Aceituno FF, et al. 2010. VirtualPlant: a software platform to support systems biology research. Plant Physiology 152, 500–515 PubMed PMC

Kaundal R, Saini R, Zhao PX. 2010. Combining machine learning and homology-based approaches to accurately predict subcellular localization in Arabidopsis. Plant Physiology 154, 36–54 PubMed PMC

Kiba T, Naitou T, Koizumi N, Yamashino T, Sakakibara H, Mizuno T. 2005. Combinatorial microarray analysis revealing arabidopsis genes implicated in cytokinin responses through the His→Asp phosphorelay circuitry. Plant and Cell Physiology 46, 339–355 PubMed

Kiran NS, Polanská L, Fohlerová R, et al. 2006. Ectopic over-expression of the maize β-glucosidase Zm-p60.1 perturbs cytokinin homeostasis in transgenic tobacco. Journal of Experimental Botany 57, 985–996 PubMed

Kowalska M, Galuszka P, Frébortová J, Šebela M, Béres T, Hluska T, Šmehilová M, Bilyeu KD, Frébort I. 2010. Vacuolar and cytosolic cytokinin dehydrogenases of Arabidopsis thaliana: heterologous expression, purification and properties. Phytochemistry 71, 1970–1978 PubMed

Kristoffersen P, Brzobohatý B, Höhfeld I, Bako L, Melkonian M, Palme K. 2000. Developmental regulation of the maize Zm-p60.1 gene encoding a β-glucosidase located to plastids. Planta 210, 407–415 PubMed

Kudo T, Kiba T, Sakakibara H. 2010. Metabolism and long-distance translocation of cytokinins. Journal of Integrative Plant Biology 52, 53–60 PubMed

Larrainzar E, Wienkoop S, Weckwerth W, Ladrera R, Arrese-Igor C, González EM. 2007. Medicago truncatula root nodule proteome analysis reveals differential plant and bacteroid responses to drought stress. Plant Physiology 144, 1495–1507 PubMed PMC

Li H, Wong WS, Zhu L, Guo HW, Ecker J, Li N. 2009. Phosphoproteomic analysis of ethylene-regulated protein phosphorylation in etiolated seedlings of Arabidopsis mutant ein2 using two-dimensional separations coupled with a hybrid quadrupole time-of-flight mass spectrometer. Proteomics 9, 1646–1661 PubMed

Lloyd J, Meinke D. 2012. A comprehensive dataset of genes with a loss-of-function mutant phenotype in Arabidopsis. Plant Physiology 158, 1115–1129 PubMed PMC

Lochmanová G, Zdráhal Z, Konečná H, Koukalová Š, Malbeck J, Souček P, Válková M, Kiran NS, Brzobohatý B. 2008. Cytokinin-induced photomorphogenesis in dark-grown Arabidopsis: a proteomic analysis. Journal of Experimental Botany 59, 3705–3719 PubMed

Luo T, Fan T, Liu Y, Rothbart M, Yu J, Zhou S, Grimm B, Luo M. 2012. Thioredoxin redox regulates ATPase activity of magnesium chelatase CHLI subunit and modulates redox-mediated signaling in tetrapyrrole biosynthesis and homeostasis of reactive oxygen species in pea plants. Plant Physiology 159, 118–130 PubMed PMC

Matsui A, Ishida J, Morosawa T, et al. 2008. Arabidopsis transcriptome analysis under drought, cold, high-salinity and ABA treatment conditions using a tiling array. Plant and Cell Physiology 49, 1135–1149 PubMed

Moore I, Samalova M, Kurup S. 2006. Transactivated and chemically inducible gene expression in plants. The Plant Journal 45, 651–683 PubMed

Morgenthal K, Wienkoop S, Wolschin F, Weckwerth W. 2007. Integrative profiling of metabolites and proteins: improving pattern recognition and biomarker selection for systems level approaches. Methods in Molecular Biology 358, 57–75 PubMed

Nagano AJ, Matsushima R, Hara-Nishimura I. 2005. Activation of an ER-body-localized beta-glucosidase via a cytosolic binding partner in damaged tissues of Arabidopsis thaliana . Plant and Cell Physiology 46, 1140–1148 PubMed

Neilson KA, Ali NA, Muralidharan S, Mirzaei M, Mariani M, Assadourian G, Lee A, van Sluyter SC, Haynes PA. 2011. Less label, more free: approaches in label-free quantitative mass spectrometry. Proteomics 11, 535–553 PubMed

Nemhauser JL, Hong F, Chory J. 2006. Different plant hormones regulate similar processes through largely nonoverlapping transcriptional responses. Cell 126, 467–475 PubMed

Nishiyama R, Le DT, Watanabe Y, Matsui A, Tanaka M, Seki M, Yamaguchi-Shinozaki K, Shinozaki K, Tran LP. 2012. Transcriptome analyses of a salt-tolerant cytokinin-deficient mutant reveal differential regulation of salt stress response by cytokinin deficiency. PLoS One 7, e32124. PubMed PMC

Nishiyama R, Watanabe Y, Fujita Y, et al. 2011. Analysis of cytokinin mutants and regulation of cytokinin metabolic genes reveals important regulatory roles of cytokinins in drought, salt and abscisic acid responses, and abscisic acid biosynthesis. The Plant Cell 23, 2169–2183 PubMed PMC

Novák O, Hauserová E, Amakorová P, Doležal K, Strnad M. 2008. Cytokinin profiling in plant tissues using ultra-performance liquid chromatography-electrospray tandem mass spectrometry. Phytochemistry , 69, 2214–2224 PubMed

Novák J, Pavlů J, Novák O, Nožková V, Špundová M, Hlavinka J, Koukalová Š, Skalák J, Černý M, Brzobohatý B. 2013. High cytokinin levels induce a hypersensitive-like response in tobacco. Annals of Botany 112, 41–55 PubMed PMC

Novák O, Tarkowski P, Tarkowská D, Doležal K, Lenobel R, Strnad M. 2003. Quantitative analysis of cytokinins in plants by liquid chromatography-single-quadrupole mass spectrometry. Analytica Chimica Acta 480, 207–218

Pačes V, Werstiuk E, Hall RH. 1971. Conversion of N-(Delta-isopentenyl)adenosine to adenosine by enzyme activity in tobacco tissue. Plant Physiology 48, 775–778 PubMed PMC

Passardi F, Tognolli M, De Meyer M, Penel C, Dunand C. 2006. Two cell wall associated peroxidases from Arabidopsis influence root elongation. Planta 223, 965–974 PubMed

Perilli S, Moubayidin L, Sabatini S. 2010. The molecular basis of cytokinin function. Current Opinion in Plant Biology 13, 21–26 PubMed

Polanská L, Vičánková A, Nováková M, Malbeck J, Dobrev PI, Brzobohatý B, Vaňková R, Macháčková I. 2007. Altered cytokinin metabolism affects cytokinin, auxin, and abscisic acid contents in leaves and chloroplasts, and chloroplast ultrastructure in transgenic tobacco. Journal of Experimental Botany 58, 637–649 PubMed

Pracharoenwattana I, Cornah JE, Smith SM. 2007. Arabidopsis peroxisomal malate dehydrogenase functions in beta-oxidation but not in the glyoxylate cycle. The Plant Journal 50, 381–390 PubMed

Rashotte AM, Carson SDB, To JPC, Kieber JJ. 2003. Expression profiling of cytokinin action in Arabidopsis. Plant Physiology 132, 1998–2011 PubMed PMC

Riefler M, Novak O, Strnad M, Schmülling T. 2006. Arabidopsis cytokinin receptor mutants reveal functions in shoot growth, leaf senescence, seed size, germination, root development, and cytokinin metabolism. The Plant Cell 18, 40–54 PubMed PMC

Rittenberg D, Foster GL. 1940. A new procedure for quantitative analysis by isotope dilution, with application to the determination of amino acids and fatty acids. Journal of Biological Chemistry 133, 737–744

Rosado A, Sohn EJ, Drakakaki G, Pan S, Swidergal A, Xiong Y, Kang B, Bressan RA, Raikhel NV. 2010. Auxin-mediated ribosomal biogenesis regulates vacuolar trafficking in Arabidopsis. The Plant Cell 22, 143–158 PubMed PMC

Sakakibara H. 2006. Cytokinins: activity, biosynthesis, and translocation. Annual Review of Plant Biology 57, 431–449 PubMed

Šámalová M, Brzobohatý B, Moore I. 2005. pOp6/LhGR: a stringently regulated and highly responsive dexamethasone-inducible gene expression system for tobacco. The Plant Journal 41, 919–935 PubMed

Shani E, Ben-Gera H, Shleizer-Burko S, Burko Y, Weiss D, Ori N. 2010. Cytokinin regulates compound leaf development in tomato. The Plant Cell 22, 3206–3217 PubMed PMC

Smigocki AC, Owens LD. 1988. Cytokinin gene fused with a strong promoter enhances shoot organogenesis and zeatin levels in transformed plant cells. Proceedings of the National Academy of Sciences, USA 85, 5131–5135 PubMed PMC

Song JT, Lu H, Greenberg JT. 2004. Divergent roles in Arabidopsis thaliana development and defense of two homologous genes, ABERRANT GROWTH AND DEATH2 and AGD2-LIKE DEFENSE RESPONSE PROTEIN1, encoding novel aminotransferases. The Plant Cell 16, 353–366 PubMed PMC

Stolz A, Riefler M, Lomin SN, Achazi K, Romanov GA, Schmülling T. 2011. The specificity of cytokinin signalling in Arabidopsis thaliana is mediated by differing ligand affinities and expression profiles of the receptors. The Plant Journal 67, 157–168 PubMed

Strnad M. 1997. The aromatic cytokinins. Physiologia Plantarum 101, 674–688

Szklarczyk D, Franceschini A, Kuhn M, et al. 2011. The STRING database in 2011: functional interaction networks of proteins, globally integrated and scored. Nucleic Acids Research 39, D561–D568 PubMed PMC

Takei K, Ueda N, Aoki K, Kuromori T, Hirayama T, Shinozaki K, Yamaya T, Sakakibara H. 2004. AtIPT3 is a key determinant of nitrate-dependent cytokinin biosynthesis in Arabidopsis. Plant and Cell Physiology 45, 1053–1062 PubMed

Tran LP, Shinozaki K, Yamaguchi-Shinozaki K. 2010. Role of cytokinin responsive two-component system in ABA and osmotic stress signalings. Plant Signaling and Behavior 5, 148–150 PubMed PMC

Ueda N, Kojima M, Suzuki K, Sakakibara H. 2012. Agrobacterium tumefaciens tumor morphology root plastid localization and preferential usage of hydroxylated prenyl donor is important for efficient gall formation. Plant Physiology 159, 1064–1072 PubMed PMC

Vyroubalová Š, Václavíková K, Turečková V, Novák O, Šmehilová M, Hluska T, Ohnoutková L, Frébort I, Galuszka P. 2009. Characterization of new maize genes putatively involved in cytokinin metabolism and their expression during osmotic stress in relation to cytokinin levels. Plant Physiology 151, 433–447 PubMed PMC

Walker MA, Roberts DR, Dumbroff EB. 1988. Effects of cytokinin and light on polyamines during the greening response of cucumber cotyledons. Plant and Cell Physiology 29, 201–205

Wang Y, Li L, Ye T, Zhao S, Liu Z, Feng Y, Wu Y. 2011. Cytokinin antagonizes ABA suppression to seed germination of Arabidopsis by downregulating ABI5 expression. The Plant Journal 68, 249–261 PubMed

Werner T, Motyka V, Laucou V, Smets R, Van Onckelen H, Schmülling T. 2003. Cytokinin-deficient transgenic Arabidopsis plants show multiple developmental alterations indicating opposite functions of cytokinins in the regulation of shoot and root meristem activity. The Plant Cell 15, 2532–2550 PubMed PMC

Werner T, Motyka V, Strnad M, Schmülling T. 2001. Regulation of plant growth by cytokinin. Proceedings of the National Academy of Sciences, USA 98, 10487–10492 PubMed PMC

Werner T, Nehnevajova E, Köllmer I, Novák O, Strnad M, Krämer U, Schmülling T. 2010. Root-specific reduction of cytokinin causes enhanced root growth, drought tolerance, and leaf mineral enrichment in Arabidopsis and tobacco. The Plant Cell 22, 3905–3920 PubMed PMC

Wielopolska A, Townley H, Moore I, Waterhouse P, Helliwell C. 2005. A high-throughput inducible RNAi vector for plants. Plant Biotechnology Journal 3, 583–590 PubMed

Xin Z, Zhao Y, Zheng Z. 2005. Transcriptome analysis reveals specific modulation of abscisic acid signaling by ROP10 small GTPase in Arabidopsis. Plant Physiology 139, 1350–1365 PubMed PMC

Yan J, He H, Tong S, Zhang W, Wang J, Li X, Yang Y. 2009. Voltage-dependent anion channel 2 of Arabidopsis thaliana (AtVDAC2) is involved in ABA-mediated early seedling development. International Journal of Molecular Sciences 10, 2476–2486 PubMed PMC

Zhang Y, Turner JG. 2008. Wound-induced endogenous jasmonates stunt plant growth by inhibiting mitosis. PLoS One 3, e3699. PubMed PMC

Zheng BS, Rönnberg E, Viitanen L, Salminen TA, Lundgren K, Moritz T, Edqvist J. 2008. Arabidopsis sterol carrier protein-2 is required for normal development of seeds and seedlings. Journal of Experimental Botany 59, 3485–3499 PubMed PMC

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