Plant-To-plant communication triggered by systemin primes anti-herbivore resistance in tomato(232 views) Coppola M, Cascone P, Madonna V, Di Lelio I, Esposito F, Avitabile C, Romanelli A, Guerrieri E, Vitiello A, Pennacchio F, Rao R, Corrado G
Dipartimento di Agraria, Università Degli Studi di Napoli Federico II, Via Università 100, Portici, 80055, Italy
Istituto per la Protezione Sostenibile Delle Piante, CNR, Via Università 133, Portici, NA, Italy
Istituto di Biostrutture e Bioimmagini (CNR), via Mezzocannone 16, Napoli, 80134, Italy
Dipartimento di Farmacia, Università Degli Studi di Napoli Federico II, Via Domenico Montesano, 49, Napoli, NA 80131, Italy
References: Kessler, A., Baldwin, I.T., Plant responses to insect herbivory: The emerging molecular analysis (2002) Annu Rev Plant Biol, 53, pp. 299-32
Heil, M., Indirect defence via tritrophic interactions (2008) New Phytologist, 178, pp. 41-61
McGurl, B., Pearce, G., Structure, expression, and antisense inhibition of the systemin precursor gene (1992) Science, 255, p. 1570
Pearce, G., Strydom, D., Johnson, S., Ryan, C.A., A polypeptide from tomato leaves induces wound-inducible proteinase inhibitor proteins (1991) Science, 253, pp. 895-897
McGurl, B., Orozco-Cardenas, M., Pearce, G., Ryan, C.A., Overexpression of the prosystemin gene in transgenic tomato plants generates a systemic signal that constitutively induces proteinase inhibitor synthesis (1994) P Natl Acad Sci USA, 91, pp. 9799-9802
Schilmiller, A.L., Howe, G.A., Systemic signaling in the wound response (2005) Curr Opin Plant Biol, 8, pp. 369-377
Sun, J.-Q., Jiang, H.-L., Li, C.-Y., Systemin/jasmonate-mediated systemic defense signaling in tomato (2011) Mol Plant, 4, pp. 607-615
Coppola, M., Prosystemin overexpression in tomato enhances resistance to different biotic stresses by activating genes of multiple signaling pathways (2015) Plant Mol Biol Rep, 33, pp. 1270-1285
El Oirdi, M., Botrytis cinerea manipulates the antagonistic effects between immune pathways to promote disease development in tomato (2011) Plant Cell, 23, pp. 2405-2421
Corrado, G., Systemin regulates both systemic and volatile signaling in tomato plants (2007) J Chem Ecol, 33, pp. 669-681
Degenhardt, D.C., Refi-Hind, S., Stratmann, J.W., Lincoln, D.E., Systemin and jasmonic acid regulate constitutive and herbivore-induced systemic volatile emissions in tomato, Solanum lycopersicum (2010) Phytochemistry, 71, pp. 2024-2037
Heil, M., Herbivoreinduced plant volatiles: Targets, perception and unanswered questions (2014) New Phytol, 204, pp. 297-306
Cronin, J.T., Reeve, J.D., Host-parasitoid spatial ecology: A plea for a landscape-level synthesis (2005) P Roy Soc Lond B Bio, 272, pp. 2225-2235
Frost, C.J., Mescher, M.C., Carlson, J.E., De Moraes, C.M., Plant defense priming against herbivores: Getting ready for a different battle (2008) Plant Physiol, 146, pp. 818-824
Conrath, U., Priming of induced plant defense responses (2009) Adv Bot Res, 51, pp. 361-395
Pastor, V., Balmer, A., Gamir, J., Flors, V., Mauch-Mani, B., Preparing to fight back: Generation and storage of priming compounds (2014) Front Plant Sci, 5, p. 295
Conrath, U., Beckers, G.J., Langenbach, C.J., Jaskiewicz, M.R., Priming for enhanced defense (2015) Annu Rev Phytopat, 53, pp. 97-119
Conrath, U., Molecular aspects of defence priming (2011) Trends Plant Sci, 16, pp. 524-531
Collinge, M., Boller, T., Differential induction of two potato genes, Stprx2 and StNAC, in response to infection by Phytophthora infestans and to wounding (2001) Plant Mol Biol, 46, pp. 521-529
Gill, S.S., Tuteja, N., Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants (2010) Plant Physiol Bioch, 48, pp. 909-930
Naoumkina, M.A., Genome wide analysis of phenylpropanoid defence pathways (2010) Mol Plant Pathol, 11, pp. 829-846
Albert, M., Peptides as triggers of plant defence (2013) J Exp Bot, p. ert275
Jander, G., Howe, G., Plant interactions with arthropod herbivores: State of the field (2008) Plant Physiol, 146, pp. 801-803
Martinez-Medina, A., Recognizing Plant Defense Priming (2016) Trends Plant Sci 2016, 21, pp. 818-822. , https://doi.org/10.1016/j.tplants.2016.07.009
Goff, K.E., Ramonell, K.M., The role and regulation of receptor-like kinases in plant defense (2007) Gene Reg Sys Biol, 1, p. 167
Deyoung, B.J., Innes, R.W., Plant NBS-LRR proteins in pathogen sensing and host defense (2006) Nat Immunol, 7, pp. 1243-1249
Kandoth, P.K., Tomato MAPKs LeMPK1, LeMPK2, and LeMPK3 function in the systemin-mediated defense response against herbivorous insects (2007) P Natl Acad Sci USA, 104, pp. 12205-12210
Bruce, T.J., Matthes, M.C., Napier, J.A., Pickett, J.A., Stressful "memories" of plants: Evidence and possible mechanisms (2007) Plant Sc, 173, pp. 603-608
Jaskiewicz, M., Conrath, U., Peterhänsel, C., Chromatin modification acts as a memory for systemic acquired resistance in the plant stress response (2011) EMBO Rep, 12, pp. 50-55
Alvarez-Venegas, R., Abdallat, A.A., Guo, M., Alfano, J.R., Avramova, Z., Epigenetic control of a transcription factor at the cross section of two antagonistic pathways (2007) Epigenetics, 2, pp. 106-113
Van Hulten, M., Pelser, M., Vanloon, L., Pieterse, C.M., Ton, J., Costs and benefits of priming for defense in Arabidopsis (2006) P Natl Acad Sci USA, 103, pp. 5602-5607
Walters, D.R., Paterson, L., Walsh, D.J., Havis, N.D., Priming for plant defense in barley provides benefits only under high disease pressure (2008) Physiol Mol Plant P, 73, pp. 95-100
Ali, M., Sugimoto, K., Ramadan, A., Arimura, G.-I., Memory of plant communications for priming anti-herbivore responses (2013) Sci Rep, 3
Fäldt, J., Martin, D., Miller, B., Rawat, S., Bohlmann, J., Traumatic resin defense in Norway spruce (Picea abies): Methyl jasmonate-induced terpene synthase gene expression, and cDNA cloning and functional characterization of (+)-3-carene synthase (2003) Plant Mol Biol, 51, pp. 119-133
Turlings, T.C., Davison, A., Tamò, C., A six arm olfactometer permitting simultaneous observation of insect attraction and odour trapping (2004) Physiol Entomol, 29, pp. 45-55
Birkett, M.A., New roles for cis-jasmone as an insect semiochemical and in plant defense (2000) P Natl Acad Sci USA, 97, pp. 9329-9334
Cascone, P., Tobacco overexpressing β-ocimene induces direct and indirect responses against aphids in receiver tomato plants (2015) J Plant Physiol, 173, pp. 28-32
Weldegergis, B.T., Zhu, F., Poelman, E.H., Dicke, M., Drought stress affects plant metabolites and herbivore preference but not host location by its parasitoids (2015) Oecologia, 177, pp. 701-713
Gozzo, F., Faoro, F., Systemic acquired resistance (50 years after discovery): Moving from the lab to the field (2013) J Agr Food Chem, 61, pp. 12473-12491
Huffaker, A., Dafoe, N.J., Schmelz, E.A., ZmPep1, an ortholog of Arabidopsis elicitor peptide 1, regulates maize innate immunity and enhances disease resistance (2011) Plant Physiol, 155, pp. 1325-1338
Yamaguchi, Y., Barona, G., Ryan, C.A., Pearce, G., GmPep914, an eight-Amino acid peptide isolated from soybean leaves, activates defense-related genes (2011) Plant Physiol, 156, pp. 932-942
Pickett, J.A., Khan, Z.R., Plant volatilea mediated signalling and its application in agriculture: Successes and challenges (2016) New Phytol, 212, pp. 856-870
Orsini, F., Systemin dependent salinity tolerance in tomato: Evidence of specific convergence of abiotic and biotic stress responses (2010) Physiol Plantarum, 138, pp. 10-21
De Coninck, B., De Smet, I., Plant peptides-taking them to the next level (2016) J Exp Bot, 67, pp. 4791-4795
Avitabile, C., Design, structural and functional characterization of a Temporin-1b analog active against Gram-negative bacteria (2013) BBA-Gen Subjects, 1830, pp. 3767-3775
Scarano, D., Rao, R., Corrado, G., In Silico identification and annotation of non-coding RNAs by RNA-seq and de Novo assembly of the transcriptome of Tomato Fruits (2017) PloS One, 12, p. e0171504
Götz, S., High-Throughput functional annotation and data mining with the Blast2GO suite (2008) Nucleic Acids Research, 36, pp. 3420-3435
Du, Z., Zhou, X., Ling, Y., Zhang, Z., Su, Z., Agrigo: A GO analysis toolkit for the agricultural community (2010) Nuc Acids Res, pp. W64-70
Corrado, G., Molecular interactions between the olive and the fruit fly Bactrocera oleae (2012) BMC Plant Biol, 12
Plant-To-plant communication triggered by systemin primes anti-herbivore resistance in tomato
Kim YH, Shin SW, Pellicano R, Fagoonee S, Choi IJ, Kim YI, Park B, Choi JM, Kim SG, Choi J, Park JY, Oh S, Yang HJ, Lim JH, Im JP, Kim JS, Jung HC, Ponzetto A, Figura N, Malfertheiner P, Choi IJ, Kook MC, Kim YI, Cho SJ, Lee JY, Kim CG, Park B, Nam BH, Bae SE, Choi KD, Choe J, Kim SO, Na HK, Choi JY, Ahn JY, Jung KW, Lee J, Kim DH, Chang HS, Song HJ, Lee GH, Jung HY, Seta T, Takahashi Y, Noguchi Y, Shikata S, Sakai T, Sakai K, Yamashita Y, Nakayama T, Leja M, Park JY, Murillo R, Liepniece-karele I, Isajevs S, Kikuste I, Rudzite D, Krike P, Parshutin S, Polaka I, Kirsners A, Santare D, Folkmanis V, Daugule I, Plummer M, Herrero R, Tsukamoto T, Nakagawa M, Kiriyama Y, Toyoda T, Cao X, Corral JE, Mera R, Dye CW, Morgan DR, Lee YC, Lin JT, Garcia Martin R, Matia Cubillo A, Lee SH, Park JM, Han YM, Ko WJ, Hahm KB, Leontiadis GI, Ford AC, Ichinose M, Sugano K, Jeong M, Park JM, Han YM, Park KY, Lee DH, Yoo JH, Cho JY, Hahm KB, Bang CS, Baik GH, Shin IS, Kim JB, Suk KT, Yoon JH, Kim YS, Kim DJ * Helicobacter pylori Eradication for Prevention of Metachronous Recurrence after Endoscopic Resection of Early Gastric Cancer(307 views) N Engl J Med (ISSN: 0028-4793, 0028-4793linking, 1533-4406electronic), 2015 Jun; 30642104201566393291: 749-756. Impact Factor:59.558 ViewExport to BibTeXExport to EndNote