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Host-pathogen interactions/Interactions hôte-pathogène

Role of UV-damaged DNA-binding protein-1 (DDB1) in early response to Pseudomonas syringae pv. tomato DC3000 infection in tomato

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Pages 562-570 | Accepted 20 Aug 2018, Published online: 24 Sep 2018

References

  • Agorio A, Vera P. 2007. ARGONAUTE4 is required for resistance to pseudomonas syringae in arabidopsis. Plant Cell. 19:3778–3790.
  • Albert I, Böhm H, Albert M, Feiler CE, Imkampe J, Wallmeroth N, Brancato C, Raaymakers TM, Oome S, Zhang H, et al. 2015. An RLP23-SOBIR1-BAK1 complex mediates NLP-triggered immunity. Nat Plants. 1:15140.
  • Beckers GJM, Jaskiewicz M, Liu Y, Underwood WR, He SY, Zhang S, Conrath U. 2009. Mitogen-activated protein kinases 3 and 6 are required for full priming of stress responses in Arabidopsis thaliana. Plant Cell. 21:944–953.
  • Bernhardt A, Hellmann H. 2010. Arabidopsis DDB1a and DDB1b are critical for embryo development. Planta. 232:555–566.
  • Bowling SA, Clarke JD, Liu Y, Klessig DF, Dong X. 1997. The cpr5 mutant of Arabidopsis expresses both NPR1-dependent and NPR1-independent resistance. Plant Cell. 9:1573–1584.
  • Brader G, Djamei A, Teige M, Palva ET, Hirt H. 2007. The MAP kinase kinase MKK2 affects disease resistance in Arabidopsis. Mol Plant-Microbe Interact. 20:589–596.
  • Cang Y, Zhang J, Nicholas SA, Bastien J, Li B, Zhou P, Goff SP. 2006. Deletion of DDB1 in mouse brain and lens leads to p53-dependent elimination of proliferating cells. Cell. 127:929–940.
  • Chen Z, Silva H, Klessig DF. 1993. Active oxygen species in the induction of plant systemic acquired resistance by salicylic acid. Science. 262:1883–1886.
  • Chisholm ST, Coaker G, Day B, Staskawicz BJ. 2006. Host-microbe interactions: shaping the evolution of the plant immune response. Cell. 124:803–814.
  • Durrant WE, Dong X. 2004. Systemic acquired resistance. Annu Rev Phytopathol. 42:185–209.
  • Enyedi AJ. 1999. Induction of salicylic acid biosynthesis and systemic acquired resistance using the active oxygen species generator rose bengal. J Plant Physiol. 154:106–112.
  • Foyer CH, Noctor G. 2005. Oxidant and antioxidant signalling in plants: a re-evaluation of the concept of oxidative stress in a physiological context. Plant Cell Environ. 28:1056–1071.
  • Halim VA, Altmann S, Ellinger D, Eschen-Lippold L, Miersch O, Scheel D, Rosahl S. 2009. PAMP-induced defense responses in potato require both salicylic acid and jasmonic acid. Plant J. 57:230–242.
  • Iovine B, Iannella ML, Bevilacqua MA. 2011. Damage-specific DNA binding protein 1 (DDB1): a protein with a wide range of functions. Int J Biochem Cell Biol. 43:1664–1667.
  • Jalmi SK, Sinha AK. 2015. ROS mediated MAPK signaling in abiotic and biotic stress – striking similarities and differences. Front Plant Sci. 6:1–9.
  • Jones JDG, Dangl JL. 2006. The plant immune system. Nature. 444:323–329.
  • Kadota Y, Shirasu K, Zipfel C. 2015. Regulation of the NADPH oxidase RBOHD during plant immunity. Plant Cell Physiol. 56:1472–1480.
  • Kendrick RE, Peters JL, Kerckhoffs LH, Van Tuinen A, Koornneef M. 1997. Photomorphogenic mutants of tomato. Biochem Soc Symp. 20:746–751.
  • Kimura S, Sinha N. 2008. Tomato (Solanum lycopersicum): A model fruit-bearing crop. Cold Spring Harbor Protoc. 3:1–9.
  • Lee JH, Yoon HJ, Terzaghi W, Martinez C, Dai M, Li J, Byun MO, Deng XW. 2010. DWA1 and DWA2, two Arabidopsis DWD protein components of CUL4-based E3 ligases, act together as negative regulators in ABA signal transduction. Plant Cell. 22:1716–1732.
  • Liu J, Li H, Miao M, Tang X, Giovannoni J, Xiao F, Liu Y. 2012a. The tomato UV-damaged DNA-binding protein-1 (DDB1) is implicated in pathogenesis-related (PR) gene expression and resistance to Agrobacterium tumefaciens. Mol Plant Pathol. 13:123–134.
  • Liu J, Tang X, Gao L, Gao Y, Li Y, Huang S, Sun X, Miao M, Zeng H, Tian X, et al. 2012b. A role of tomato UV-damaged DNA binding protein 1 (DDB1) in organ size control via an epigenetic manner. PLoS One. 7:e42621.
  • Liu Y, Roof S, Ye Z, Barry C, Van Tuinen A, Vrebalov J, Bowler C, Giovannoni J. 2004. Manipulation of light signal transduction as a means of modifying fruit nutritional quality in tomato. Proc Natl Acad Sci USA. 101:9897–9902.
  • Livak KJ, Schmittgen TD. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2–ΔΔCt method. Methods. 25:402−408.
  • López-Gresa MP, Lisón P, Yenush L, Conejero V, Rodrigo I, Bellés JM. 2016. Salicylic acid is involved in the basal resistance of tomato plants to Citrus exocortis viroid and tomato spotted wilt virus. PLoS One. 11:e0166938.
  • Miura K, Tada Y. 2014. Regulation of water, salinity, and cold stress responses by salicylic acid. Front Plant Sci. 5:1–12.
  • Nguyen HP, Chakravarthy S, Velásquez AC, McLane HL, Zeng L, Nakayashiki H, Park DH, Collmer A, Martin GB. 2010. Methods to study PAMP-triggered immunity using tomato and Nicotiana benthamiana. Mol Plant-Microbe Interact. 23:991–999.
  • Parker J, Koh J, Yoo MJ, Zhu N, Feole M, Yi S, Chen S. 2013. Quantitative proteomics of tomato defence against Pseudomonas syringae infection. Proteomics. 13:1934–1946.
  • Pazhouhandeh M, Molinier J, Berr A, Genschik P. 2011. MSI4/FVE interacts with CUL4-DDB1 and a PRC2-like complex to control epigenetic regulation of flowering time in Arabidopsis. Proc Natl Acad Sci USA. 108:3430–3435.
  • Pitzschke A, Schikora A, Hirt H. 2009. MAPK cascade signalling networks in plant defence. Curr Opin Plant Biol. 12:421–426.
  • Roodbarkelari F, Bramsiepe J, Weinl C, Marquardt S, Novák B, Jakoby MJ, Lechner E, Genschik P, Schnittger A. 2010. Cullin 4-ring finger-ligase plays a key role in the control of endoreplication cycles in Arabidopsis trichomes. Proc Natl Acad Sci USA. 107:15275–15280.
  • Segonzac C, Zipfel C. 2011. Activation of plant pattern-recognition receptors by bacteria. Curr Opin Microbiol. 14:54–61.
  • Song J, Bent AF. 2014. Microbial pathogens trigger host DNA double-strand breaks whose abundance is reduced by plant defence responses. PLoS Pathog. 10:e1004226.
  • Thordal-Christensen H, Zhang Z, Wei Y, Collinge DB. 1997. Subcellular localization of H2O2 in plants. H2O2 accumulation in papillae and hypersensitive response during the barley-powdery mildew interaction. Plant J. 11:1187–1194.
  • Tsuda K, Sato M, Stoddard T, Glazebrook J, Katagiri F. 2009. Network properties of robust immunity in plants. PLoS Genet. 5:e1000772.
  • Xin XF, He SY. 2013. Pseudomonas syringae pv. tomato DC3000: a model pathogen for probing disease susceptibility and hormone signaling in plants. Annu Rev Phytopathol. 51:473–498.
  • Yan S, Wang W, Marqués J, Mohan R, Saleh A, Durrant WE, Song J, Dong X. 2013. Salicylic acid activates DNA damage responses to potentiate plant immunity. Mol Cell. 52:1–18.
  • Yang YX, Ahammed GJ, Wu C, Fan SY, Zhou YH. 2015. Cross talk among jasmonate, salicylate and ethylene signaling pathways in plant disease and immune responses. Curr Protein Pept Sci. 16:450–461.
  • Zhao J, Devaiah SP, Wang C, Li M, Welti R, Wang X. 2013. Arabidopsis phospholipase Dβ1 modulates defense responses to bacterial and fungal pathogens. New Phytol. 199:228–240.

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