1 Bent A F. Plant disease resistance genes: Function meets structure. Plant Cell, 1996, 8: 1757–1771. 2 Martin G B, Bogdanove A J, Sesser G. Understanding functions of plant disease resistance proteins. Ann Rev Plant Biol, 2003, 54: 1–5.3 Silue D, Nottenghem J L, Thorreau D. Evidence for a gene-for-gene relationship in the Oryza sativa-Magnaporthe grisea pathosystem. Phytopathology, 1992, 82: 577–580.4 Valent B. The rice blast fungus, Magnaporthe grisea. In: Carroll G C, Tudzynoski P. The Mycota V: Plant Relationships. Part B. Heidelberg, Berlin: Springer-Verlag, 1997: 37–54.5 Jia Y, Valent B, Lee F N. Determination of host resistance responses to Magnaporthe grisea on detached rice leaves using a spot inoculation method. Plant Dis, 2003, 87: 129– 133.6 Talbot N J. On the trail of a cereal killer: Exploring the biology of Magnaporthe grisea. Annu Rev Microbiol, 2003, 57: 177–202.7 Jia Y, McAdams S A, Bryan G T, Hershey H P, Valent B. Direct interaction of resistance gene and avirulence gene products confers rice blast resistance. EMBO J, 2000, 19: 4004–4014.8 Orbach M J, Farrall L, Sweigard J A, Chumley F G, Valent B. A telomeric avirulence gene determines efficacy for the rice blast resistance gene Pi-ta. Plant Cell, 2000, 12: 2019–2032.9 Hammond-Kosack K E, Jones J D G. Resistance gene- dependent plant defense responses. Plant Cell, 1996, 8: 1773– 1791.10 Yang Y, Shah J, Klessig D F. Signal perception and transduction in plant defense responses. Genes Dev, 1997, 11: 1621–1639.11 Dixon R A, Harrison M J, Lamb C J. Early events in the activation of plant defense responses. Annu Rev Phytopath, 1994, 32: 479–501. 12 Jia Y, Martin G B. Rapid transcript accumulation of pathogenesis- related genes during an incompatible interaction in bacterial speck disease-resistant tomato plants. Plant Mol Biol, 1999, 40: 455–465.13 Dietrich R A, Richberg M H, Schmidt R, Dean C, Dangl J L. A novel zinc-finger protein is encoded by the Arabidopsis LSD1 gene and functions as a negative regulator of plant cell death. Cell, 1997, 88: 685–694.14 Greenberg J T, Ausubel F M. Arabidopsis mutants compromised for the control of cellular damage during pathogenesis and aging. Plant J, 1993, 4: 327–342.15 Greenberg J T, Guo A, Klessig D F, Ausubel F M. Programmed cell death in plants: A pathogen-triggered response activated coordinately with multiple defense functions. Cell, 1994, 77: 551–563. 16 Marchetti M A, Bollich C N, Uecker F A. Spontaneous occurrence of the Sekiguchi lesion in two American rice lines: Its induction, inheritance, and utilization. Phytopathology, 1983, 73: 603–606.17 Neuffer M G, Calvert O H. Dominant disease lesion mimics in Maize. J Heredity, 1975, 66: 265– 270.18 Takahashi A, Kawasaki T, Henmi K, Shii K, Kodama O, Satoh H, Shimamoto, K. Lesion mimic mutants of rice with alterations in early signaling events of defense. Plant J, 1999, 17: 535–545.19 Walbot V. Maize mutants for the 21st century. Plant Cell, 1991, 3: 851–856.20 Yin Z, Chen J, Goh M, Leung H, Khush G S, Wang G L. Characterizing rice lesion mimic mutants and identifying a mutant with broad spectrum resistance to rice blast and bacterial blight. Mol Plant-Microbe Interact, 2000, 13: 869– 876.21 Kim S, Ahn I P, Lee Y H. Analysis of genes expressed during rice-Magnaporthe grisea interaction. Mol Plant-Microbe Interact, 2001, 14: 1340–1346.22 Simmons C R, Litts J C, Huang N, Rodriguez R L. Structure of a rice beta-glucanase gene regulated by ethylene, cytokinin, wounding, salicylic acid and fungal elicitors. Plant Mol Biol, 1992, 18: 33–45.23 Xiong L, Lee M W, Qi M, Yang Y. Identification of defense- related rice genes by suppression subtractive hybridization and differential screening. Mol Plant-Microbe Interact, 2001, 14: 685– 692.24 Xu Y, Zhu Q, Panbangred W, Shirasu K, Lamb C. Regulation, expression and function of a new basic chitinase gene in rice (Oryza sativa L.). Plant Mol Biol, 1996, 30: 387–401.25 Zhu Q, Dabi T, Beeche A, Yamamoto R, Lawton M A, Lamb C. Cloning and properties of a rice gene encoding phenylalanine ammonia-lyase. Plant Mol Biol, 1995, 29: 535–550.26 Zhu Q, Lamb C J. Isolation and characterization of a rice gene encoding a basic chitinase. Mol Gen Genet, 1991, 226: 289– 296.27 Correll J C, Harp T L, Guerber J C, Zeigler R S, Liu B, Cartwright R D, Lee F N. Characterization of Pyricularia grisea in the United States using independent genetic and molecular markers. Phytopathology, 2000, 90: 1396–1404.28 Bryan G T, Wu K S, Farrall L, Jia Y, Hershey H P, McAdams S, Faulk K N, Donaldson G K, Tarchini R, Valent B. A single amino acid difference distinguishes resistant and susceptible alleles of the rice blast resistance gene Pi-ta. Plant Cell, 2000, 12: 2033–2045.29 Jia Y. Registration of Katy lesion mimic mutant 1. Crop Sci, 2005, 45: 1675.30 Counce P A, Keisling T C, Mitchell A J. A uniform adaptive and objective system for describing rice development. Crop Sci, 2000, 40: 436–443.31 Valent B, Farrall L, Chumley F G. Magnaporthe grisea genes for pathogenicity and virulence identified through a series of backcrosses. Genetics, 1991, 127: 87–101.32 Ausubel F M, Brent R, Kingston R E, Moore D D, Smith J A, Sideman J G, Estrual K. Protocols in Molecular Biology. New York: John Wiley and Sons, 1987.33 Kim S T, Cho K S, Yu S, Kim S G, Hong J C, Han C, Bae D W, Nam M H, Kang K Y. Proteomic analysis of differentially expressed proteins induced by rice blast fungus and elicitor in suspension-cultured rice cells. Proxemics, 2003, 3: 2368– 2378.34 Bhatia Y, Misra S, Bisaria V S. Microbial β-glucosidases: Cloning, properties and applications. Critic Rev Biotech, 2002, 22: 375–407.35 Jia Y, Rutger J N, Wang Z, Singh P, Martin R, Pinson S R M. Development and characterization of rice mutant populations for functional genomics of host-parasite interactions. Phytopathology, 2004, 94 (suppl): S47. 36 Buschges R, Hollricher K, Panstruga R, Simons G, Wolter M, Frijters A, van Daelen R, van der Lee T, Diergaarde P, Groenendijk J, Topsch S, Vos P, Salmini F, Schulze-Lefert P. A novel control element of plant pathogen resistance. Cell, 1997, 88: 596–705.37 Jarosch B, Kogel K H, Schaffrath U. The ambivalence of the barley Mlo locus: Mutations conferring resistance against powdery mildew (Blumeria graminis f. sp. hordei) enhance susceptibility to the rice blast fungus Magnaporthe grisea. Mol Plant-Microbe Interact, 1999, 12: 508–514.38 Hu G, Yalpani N, Briggs S P, Johal G S. A prophyrin pathway impairment is responsible for the phenotype of a dominantdisease lesion mimic mutant of maize. Plant Cell, 1998, 10: 531–536.39 Heath M C, Howard R J, Valent B, Chumley F G. Ultrastructural interactions of one strain of Magnaporthe grisea with goosegrass and weeping lovegrass. Can J Bot, 1992, 70: 779–787.40 Koga H. Cytological aspects of infection by rice blast fungus Pyricularia oryzae. In: Sreenivasaprasad S, Johnson R. Major Fungal Disease of Rice: Recent Advances. Dordrech: Kluwer Academic, 2001.41 Collmer A, Badel J L, Deng W L, Fouts D E, Ramos A R, Rehm A H, Anderson D M, Scheneewind O, van Dijk K, Alfano J R. Pseudomonas syringae Hrp type III secretion system and effector proteins. Proc Natl Acad Sci USA, 2000, 97: 8770–8777. |