Published September 30, 2014 | Version v1

UHPLC-MS/MS based target profiling of stress-induced phytohormones

Description

Floková, Kristýna, Tarkowská, Danuše, Miersch, Otto, Strnad, Miroslav, Wasternack, Claus, Novák, Ondřej (2014): UHPLC-MS/MS based target profiling of stress-induced phytohormones. Phytochemistry 105: 147-157, DOI: 10.1016/j.phytochem.2014.05.015, URL: http://dx.doi.org/10.1016/j.phytochem.2014.05.015

Files

Restricted

The record is publicly accessible, but files are restricted. Log in to check if you have access.

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:E002FFB2FFE7F769FFA6E37F9850FFC7

References

  • Balcke, G.U., Handrick, V., Bergau, N., Fichtner, M., Henning, A., Stellmach, H., Tissier, A., Hause, B., Frolov, A., 2012. An UPLC-MS/MS method for highly sensitive high-throughput analysis of phytohormones in plant tissues. Plant Methods 8, 47.
  • Baldwin, I.T., Zhang, Z.P., Diab, N., Ohnmeiss, T.E., McCloud, E.S., Lynds, G.Y., Schmelz, E.A., 1997. Quantification, correlation and manipulation of woundinduced changes in jasmonic acid and nicotine in Nicotiana sylvestris. Planta 201, 397-404.
  • Creelman, R., Mullet, J.E., 1995. Jasmonic acid distribution and action in plants: regulation during development and response to biotic and abiotic stress. Proc. Natl. Acad. Sci. U.S.A. 92, 4114-4119.
  • Dobrev, P.I., Havlicek, L., Vagner, M., Malbeck, J., Kaminek, M., 2005. Purification and determination of plant hormones auxin and abscisic acid using solid phase extraction and two-dimensional high performance liquid chromatography. J. Chromatogr. A 1075, 159-166.
  • Durgbanshi, A., Arbona, V., Pozo, O., Miersch, O., Sancho, J.V., Gomez-Cadenas, A., 2005. Simultaneous determination of multiple phytohormones in plant extracts by liquid chromatography-electrospray tandem mass spectrometry. J. Agric. Food Chem. 53, 8437-8442.
  • Engelberth, J., Schmelz, E.A., Alborn, H.T., Cardoza, Y.J., Huang, J., Tumlinson, J.H., 2003. Simultaneous quantification of jasmonic acid and salicylic acid by vapour phase extraction and gas chromatography-chemical ionization-mass spectrometry. Anal. Biochem. 312, 242-250.
  • Fan, S., Wang, X., Li, P., Zhang, Q., Zhang, W., 2011. Simultaneous determination of 13 phytohormones in oilseed rape tissues by liquid chromatography- electrospray tandem mass spectrometry and the evaluation of the matrix effect. J. Sep. Sci. 34, 640-650.
  • Fonseca, S., Chini, A., Hamberg, M., Adie, B., Porzel, A., Kramell, R., Miersch, O., Wasternack, C., Solano, R., 2009. (+)-7-iso -Jasmonoyl-L- isoleucine is the endogenous bioactive jasmonate. Nat. Chem. Biol. 5, 344-350.
  • Forcat, S., Bennett, M.H., Mansfield, J.W., Grant, M.R., 2008. A rapid and robust method for simultaneously measuring changes in the phytohormones ABA, JA and SA in plants following biotic and abiotic stress. Plant Methods 4, 16-23.
  • Glauser, G., Grata, E., Dubugnon, L., Rudaz, S., Farmer, E.E., Wolfender, J.L., 2008. Spatial and temporal dynamics of jasmonate synthesis and accumulation in Arabidopsis in response to wounding. J. Biol. Chem. 283, 16400-16407.
  • Glauser, G., Dubugnon, L., Mousavi, S.A., Rudaz, S., Wolfender, J.L., Farmer, E.E., 2009. Velocity estimates for signal propagation leading to systemic jasmonic acid accumulation in wounded Arabidopsis. J. Biol. Chem. 284, 34506-34513.
  • Glauser, G., Wolfender, J.L., 2013. Non-targeted approach for an extended LC-MS profiling of free and esterified jasmonates following wounding. In: Goossens, A., Pauwels, L.(Eds.), Methods in Molecular Biology, Jasmonate Signalling: Methods and Protocols, vol. 1011. Humana Press, Springer New York, pp. 123-134.
  • Glauser, G., Vallat, A., Balmer, D., 2014. Hormone Profiling. In: Sanchez-Serrano, J., Salinas, J.J. (Eds.), Methods in Molecular Biology, Arabidopsis Protocols, vol. 1062. Humana Press, Springer New York, pp. 597-608.
  • Guttierrez, L., Mongelard, G., Flokova, K., Pacurar, D.I., Novak, O., Staswick, P., Kowalczyk, M., Pacurar, M., Demailly, H., Geiss, G., Bellini, C., 2012. Auxin controls Arabidopsis adventitious root initiation by regulating jasmonic acid homeostasis. Plant Cell 24, 2515-2527.
  • Izumi, Y., Okazawa, A., Bamba, T., Kobayashi, A., Fukusaki, E., 2009. Development of a method for comprehensive and quantitative analysis of plant hormones by highly sensitive nanoflow liquid chromatography-electrospray ionization-ion trap mass spectrometry. Anal. Chim. Acta 648, 215-225.
  • Jikumaru, Y., Seo, M., Matsuura, H., Kamiya, Y., 2013. Profiling of jasmonic acidrelated metabolites and hormones in wounded leaves. In: Goossens, A., Pauwels, L. (Eds.), Methods in Molecular Biology, Jasmonate Signalling: Methods and Protocols, vol. 1011. Humana Press, Springer New York, pp. 113-122.
  • Knofel, H.D., Sembdner, G., 1995. Jasmonates from pine pollen. Phytochemistry 38, 569-571.
  • Kojima, M., Sakakibara, H., 2012. Highly sensitive high-throughput profiling of six phytohormones using MS-probe modification and liquid chromatography- tandem mass spectrometry. Methods Mol. Biol. 918, 151-164.
  • Li, L., Li, C., Howe, G.A., 2001. Genetic analysis of wound signaling in tomato. Evidence for a dual role of jasmonic acid in defense and female fertility. Plant Physiol. 127, 1414-1417.
  • Linkies, A., Leubner-Metzger, G., 2012. Beyond gibberellins and abscisic acid: how ethylene and jasmonates control seed germination. Plant Cell Rep. 31, 253-270.
  • Liu, H., Li, X., Xiao, J., Wang, S., 2012. A convenient method for simultaneous quantification of multiple phytohormones and metabolites: application in study of rice-bacterium interaction. Plant Methods 8, 2.
  • Matsuura, H., Aoi, A., Satou, C., Nakaya, M., Masuta, C., Nabeta, K., 2009. Simultaneous UPLC MS/MS analysis of endogenous jasmonic acid, salicylic acid, and their related compounds. Plant Growth Regul. 57, 293-301.
  • Miersch, O., Wasternack, C., 2000. Octadecanoid and jasmonate signaling in tomato (Lycopersicon esculentum Mill.) leaves: endogenous jasmonate do not induce jasmonate biosynthesis. Biol. Chem. 381, 715-722.
  • Mueller, M.J., Brodschelm, W., Spannagl, E., Zenk, M.H., 1993. Signaling in the elicitation process is mediated through the octadecanoid pathway leading to jasmonic acid. Proc. Natl. Acad. Sci. USA 90, 7490-7494.
  • Mueller, M.J., Mene-Saffrane, L., Grun, C., Karq, K., Farmer, E.E., 2006. Oxylipin analysis methods. Plant J. 45, 472-489.
  • Muller, M., Munne-Bosch, S., 2011. Rapid and sensitive hormonal profiling of complex plant samples by liquid chromatography coupled to electrospray ionization tandem mass spectrometry. Plant Methods 7, 37.
  • Novak, O., Henykova, E., Sairanen, I., Kowalczyk, M., Pospisil, T., Ljung, K., 2012. Tissue-specific profiling of the Arabidopsis thaliana auxin metabolome. Plant J. 72, 523-536.
  • Prinsen, E., Laer, S., Oden, S., Onckelen, H., 2000. Auxin Analysis. In: Tucker, G.A., Roberts, J.A. (Eds.), Plant Hormone Protocols. Humana Press, Totowa - New Jersey, pp. 49-65.
  • Rittenberg, D., Foster, G.L., 1940. A new procedure for quantitative analysis by isotope dilution, with application to the determination of amino acids and fatty acids. J. Biol. Chem. 133, 727-744.
  • Segarra, G., Jauregui, O., Casanova, E., Trillas, I., 2006. Simultaneous quantitative LC- ESI-MS/MS analyses of salicylic acid and jasmonic acid in crude extracts of Cucumis sativus under biotic stress. Phytochemistry 67, 395-401.
  • Sheard, L.B., Tan, X., Mao, H.B., Withers, J., Ben-Nissan, G., Hinds, T.R., Kobayashi, Y., Hsu, F.F., Sharon, M., Browse, J., He, S.Y., Rizo, J., Howe, G.A., Zheng, N., 2010. Jasmonate perception by inositol-phosphate-potentiated COI1-JAZ co-receptor. Nature 468, 400-405.
  • Staswick, P.E., 2009. The tryptophan conjugates of jasmonic and indole-3-acetic acids are endogenous auxin inhibitors. Plant Physiol. 150, 1310-1321.
  • Stintzi, A., Weber, H., Reymond, P., Browse, J., Farmer, E.E., 2001. Plant defense in the absence of jasmonic acid: The role of cyclopentenones. Proc. Natl. Acad. Sci. U. S. A. 98, 12837-12842.
  • Stitz, M., Gase, K., Baldwin, I.T., Gaquerel, E., 2011. Ectopic expression of AtJMT in Nicotiana attenuata: creating a metabolic sink has tissue-specific consequences for the jasmonate metabolic network and silences downstream gene expression. Plant Physiol. 157, 341-354.
  • Stumpe, M., Gobel, C., Faltin, B., Beike, A.K., Hause, B., Himmelsbach, K., Bode, J., Kramell, R., Wasternack, C., Frank, W., Reski, R., Feussner, I., 2010. The moss Physcomitrella patens contains cyclopentenones but no jasmonates: mutations in allene oxide cyclase lead to reduced fertility and altered sporophyte morphology. New Phytol. 188, 740-749.
  • Tamogami, S., Kodama, O., 1997. Quantification of amino acid conjugates of jasmonic acid in rice leaves by high-performance liquid chromatography turboionspray tandem mass spectrometry. J. Chromatogr. A 822, 310-315.
  • Ternes, P., Feussner, K., Werner, S., Lerche, J., Iven, T., Heilmann, I., Riezman, H., Feussner, I., 2011. Disruption of the ceramide synthase LOH1 causes spontaneous cell death in Arabidopsis thaliana. New Phytol. 192, 841-854.
  • Urbanova, T., Tarkowska, D., Novak, O., Hedden, P., Strnad, M., 2013. Analysis of gibberellins as free acids by ultra performance liquid chromatography-tandem mass spectrometry. Talanta 112, 85-94.
  • Wasternack, C., Kombrink, E., 2010. Jasmonates: structural requirements for lipidderived signals active in plant stress responses and development. ACS Chem. Biol. 15, 63-77.
  • Wasternack, C., Hause, B., 2013. Jasmonates: biosynthesis, perception, signal transduction and action in plant stress response, growth and development. An update to the 2007 review in Annals of Botany. Ann. Bot. 111, 1021-1058.
  • Wilbert, S.M., Ericsson, L.H., Gordon, M.P., 1998. Quantification of jasmonic acid, methyl jasmonate, and salicylic acid in plants by capillary liquid chromatography electrospray tandem mass spectrometry. Anal. Biochem. 257, 186-194.
  • Yoshihara, T., Amanuma, M., Tsutsumi, T., Okumura, Y., Matsuura, H., Ichihara, A., 1996. Metabolism and transport of [2-14C](±) jasmonic acid in the potato plant. Plant Cell Physiol. 37, 586-590.
  • Zimmerman, D.C., Feng, P., 1978. Characterization of a prostaglandin-like metabolite of linolenic acid produced by a flaxseed extract. Lipids 13, 313-316.