Page:Cell-to-Cell Communication During Plant-Pathogen Interaction.pdf/11

From Wikisource
Jump to navigation Jump to search
This page has been proofread, but needs to be validated.
  • Rinne, P. L. H., and van der Schoot, C. 2003. Plasmodesmata at the crossroads between development, dormancy, and defense. Can. J. Bot. 81:1182-1197.
  • Robert, H. S., and Friml, J. 2009. Auxin and other signals on the move in plants. Nat. Chem. Biol. 5:325-332.
  • Ruiz-Medrano, R., Xoconostle-Cázares, B., and Lucas, W. J. 1999. Phloem long-distance transport of CmNACP mRNA: Implications for supracellular regulation in plants. Development 126:4405-4419.
  • Saatian, B., Austin, R. S., Tian, G., Chen, C., Nguyen, V., Kohalmi, S. E., Geelen, D., and Cui, Y. 2018. Analysis of a novel mutant allele of GSL8 reveals its key roles in cytokinesis and symplastic trafficking in Arabidopsis. BMC Plant Biol. 18:295.
  • Sager, R., Wang, X., Hill, K., Yoo, B. C., Caplan, J., Nedo, A., Tran, T., Bennett, M. J., and Lee, J. Y. 2020. Auxin-dependent control of a plasmodesmal regulator creates a negative feedback loop modulating lateral root emergence. Nat. Commun. 11:364.
  • Sakulkoo, W., Osés-Ruiz, M., Garcia, E. O., Soanes, D. M., Littlejohn, G. R., Hacker, C., Correia, A., Valent, B., and Talbot, N. J. 2018. A single fungal MAP kinase controls plant cell-to-cell invasion by the rice blast fungus. Science 359:1399-1403.
  • Schoelz, J. E., Harries, P. A., and Nelson, R. S. 2011. Intracellular transport of plant viruses: Finding the door out of the cell. Mol. Plant 4:813-831.
  • Shikanai, Y., Yoshida, R., Hirano, T., Enomoto, Y., Li, B., Asada, M., Yamagami, M., Yamaguchi, K., Shigenobu, S., Tabata, R., Sawa, S., Okada, H., Ohya, Y., Kamiya, T., and Fujiwara, T. 2020. Callose synthesis suppresses cell death induced by low-calcium conditions in leaves1. Plant Physiol. 182:2199-2212.
  • Shivaprasad, P. V., Chen, H. M., Patel, K., Bond, D. M., Santos, B. A. C. M., and Baulcombe, D. C. 2012. A microRNA superfamily regulates nucleotide binding site-leucine-rich repeats and other mRNAs. Plant Cell 24:859-874.
  • Singh, A., Lim, G. H., and Kachroo, P. 2017. Transport of chemical signals in systemic acquired resistance. J. Integr. Plant Biol. 59:336-344.
  • Somerville, C., Bauer, S., Brininstool, G., Facette, M., Hamann, T., Milne, J., Osborne, E., Paredez, A., Persson, S., Raab, T., Vorwerk, S., and Youngs, H. 2004. Toward a systems approach to understanding plant cell walls. Science 306:2206-2211.
  • Stahl, Y., and Faulkner, C. 2016. Receptor complex mediated regulation of symplastic traffic. Trends Plant Sci. 21:450-459.
  • Stonebloom, S., Brunkard, J. O., Cheung, A. C., Jiang, K., Feldman, L., and Zambryski, P. 2012. Redox states of plastids and mitochondria differentially regulate intercellular transport via plasmodesmata. Plant Physiol. 158:190-199.
  • Taliansky, M., Mayo, M. A., and Barker, H. 2003. Potato leafroll virus: A classic pathogen shows some new tricks. Mol. Plant Pathol. 4:81-89.
  • Thomas, C. L., Bayer, E. M., Ritzenthaler, C., Fernandez-Calvino, L., and Maule, A. J. 2008. Specific targeting of a plasmodesmal protein affecting cell-to-cell communication. PLoS Biol. 6:e7.
  • Thomas, R., Fang, X., Ranathunge, K., Anderson, T. R., Peterson, C. A., and Bernards, M. A. 2007. Soybean root suberin: Anatomical distribution, chemical composition, and relationship to partial resistance to Phytophthora sojae. Plant Physiol. 144:299-311.
  • Tierens, K. F. M. J., Thomma, B. P. H. J., Brouwer, M., Schmidt, J., Kistner, K., Porzel, A., Mauch-Mani, B., Cammue, B. P. A., and Broekaert, W. F. 2001. Study of the role of antimicrobial glucosinolate-derived isothiocyanates in resistance of Arabidopsis to microbial pathogens. Plant Physiol. 125:1688-1699.
  • Tomczynska, I., Stumpe, M., Doan, T. G., and Mauch, F. 2020. A 'Phytophthora effector protein promotes symplastic cell-to-cell trafficking by physical interaction with plasmodesmata-localised callose synthases. New Phytol. 227:1467-1478.
  • Toruño, T. Y., Stergiopoulos, I., and Coaker, G. 2016. Plant-pathogen effectors: Cellular probes interfering with plant defenses in spatial and temporal manners. Annu. Rev. Phytopathol. 54:419-441.
  • Tsukagoshi, H., Busch, W., and Benfey, P. N. 2010. Transcriptional regulation of ROS controls transition from proliferation to differentiation in the root. Cell 143:606-616.
  • Tylewicz, S., Petterle, A., Marttila, S., Miskolczi, P., Azeez, A., Singh, R. K., Immanen, J., Mähler, N., Hvidsten, T. R., Eklund, D. M., Bowman, J. L., Helariutta, Y., and Bhalerao, R. P. 2018. Photoperiodic control of seasonal growth is mediated by ABA acting on cell-cell communication. Science 360:212-215.
  • van Lent, J., Storms, M., van der Meer, F., Wellink, J., and Goldbach, R. 1991. Tubular structures involved in movement of cowpea mosaic virus are also formed in infected cowpea protoplasts. J. Gen. Virol. 72:2615-2623.
  • Voigt, C. A., and Somerville, S. C. 2009. Callose in biotic stress (pathogenesis) biology, biochemistry and molecular biology of callose in plant defence: Callose deposition and turnover in plant-pathogen interactions. Pages 525-562 in: Chemistry, Biochemistry, and Biology of 1-3 Beta Glucans and Related Polysaccharides. A. Bacic, G. Fincher, and B. Stone, eds. Academic Press, New York, NY, U.S.A.
  • von Mende, N. 1997. Invasion and migration behaviour of sedentary nematodes. Pages 51-64 in: Cellular and Molecular Aspects of Plant-Nematode Interactions. Developments in Plant Pathology, vol. 10. C. Fenoll, F. M. W. Grundler, and S. A. Ohl, eds. Springer, Dordrecht, The Netherlands.
  • Wang, A. 2021. Cell-to-cell movement of plant viruses via plasmodesmata: A current perspective on potyviruses. Curr. Opin. Virol. 48:10-16.
  • Wang, X., Sager, R., Cui, W., Zhang, C., Lu, H., and Lee, J.-Y. 2013. Salicylic acid regulates plasmodesmata closure during innate immune responses in Arabidopsis. Plant Cell 25:2315-2329.
  • Wang, Y., Schuck, S., Wu, J., Yang, P., Döring, A.-C., Zeier, J., and Tsuda, K. 2018. A MPK3/6-WRKY33-ALD1-pipecolic acid regulatory loop contributes to systemic acquired resistance. Plant Cell 30:2480-2494.
  • Wang, Y., Wang, Y., and Wang, Y. 2020. Apoplastic proteases: Powerful weapons against pathogen infection in plants. Plant Commun. 1:100085.
  • Washington, E. J., Mukhtar, M. S., Finkel, O. M., Wan, L., Banfield, M. J., Kieber, J. J., and Dangl, J. L. 2016. Pseudomonas syringae type III effector HopAF1 suppresses plant immunity by targeting methionine recycling to block ethylene induction. Proc. Natl. Acad. Sci. U.S.A. 113:E3577-E3586.
  • Wildermuth, M. C., Dewdney, J., Wu, G., and Ausubel, F. M. 2001. Isochorismate synthase is required to synthesize salicylic acid for plant defence. Nature 414:562-565.
  • Wu, C.-T., and Bradford, K. J. 2003. Class I chitinase and β-1,3-glucanase are differentially regulated by wounding, methyl jasmonate, ethylene, and gibberellin in tomato seeds and leaves. Plant Physiol. 133:263-273.
  • Wyss, U., and Grundler, F. M. W. 1992. Feeding behavior of sedentary plant parasitic nematodes. Neth. J. Plant Pathol. 98:165-173.
  • Xu, B., Cheval, C., Laohavisit, A., Hocking, B., Chiasson, D., Olsson, T. S. G., Shirasu, K., Faulkner, C., and Gilliham, M. 2017. A calmodulin-like protein regulates plasmodesmal closure during bacterial immune responses. New Phytol. 215:77-84.
  • Xu, G., Yuan, M., Ai, C., Liu, L., Zhuang, E., Karapetyan, S., Wang, S., and Dong, X. 2017. UORF-mediated translation allows engineered plant disease resistance without fitness costs. Nature 545:491-494.
  • Yang, C., Li, W., Cao, J., Meng, F., Yu, Y., Huang, J., Jiang, L., Liu, M., Zhang, Z., Chen, X., Miyamoto, K., Yamane, H., Zhang, J., Chen, S., and Liu, J. 2017. Activation of ethylene signaling pathways enhances disease resistance by regulating ROS and phytoalexin production in rice. Plant J. 89:338-353.
  • Yang, L., Perrera, V., Saplaoura, E., Apelt, F., Bahin, M., Kramdi, A., Olas, J., Mueller-Roeber, B., Sokolowska, E., Zhang, W., Li, R., Pitzalis, N., Heinlein, M., Zhang, S., Genovesio, A., Colot, V., and Kragler, F. 2019. m5C methylation guides systemic transport of messenger RNA over graft junctions in plants. Curr. Biol. 29:2465-2476.e5.
  • Yeats, T. H., and Rose, J. K. C. 2013. The formation and function of plant cuticles. Plant Physiol. 163:5-20.
  • Yimer, H. Z., Nahar, K., Kyndt, T., Haeck, A., Van Meulebroek, L., Vanhaecke, L., Demeestere, K., Höfte, M., and Gheysen, G. 2018. Gibberellin antagonizes jasmonate-induced defense against Meloidogyne graminicola in rice. New Phytol. 218:646-660.
  • Yu, K., Soares, J. M., Mandal, M. K., Wang, C., Chanda, B., Gifford, A. N., Fowler, J. S., Navarre, D., Kachroo, A., and Kachroo, P. 2013. A feedback regulatory loop between G3P and lipid transfer proteins DIR1 and AZI1 mediates azelaic-acid-induced systemic immunity. Cell Rep. 3:1266-1278.
  • Zavaliev, R., Mohan, R., Chen, T., and Dong, X. 2020. Formation of NPR1 condensates promotes cell survival during the plant immune response. Cell 182:1093-1108.e18.
  • Zhang, Z., Zheng, Y., Ham, B. K., Chen, J., Yoshida, A., Kochian, L. V., Fei, Z., and Lucas, W. J. 2016. Vascular-mediated signalling involved in early phosphate stress response in plants. Nat. Plants 2:16033.
  • Zhou, F., Emonet, A., Dénervaud Tendon, V., Marhavy, P., Wu, D., Lahaye, T., and Geldner, N. 2020. Co-incidence of damage and microbial patterns controls localized immune responses in roots. Cell 180:440-453.e18.
  • Zhou, J.-M., and Zhang, Y. 2020. Plant immunity: Danger perception and signaling. Cell 181:978-989.
108 / Molecular Plant-Microbe Interactions