Van der Hoorn R A L, Kamoun S. From guard to decoy: a new model for perception of plant pathogen effectors[J]. Plant Cell,2008, 20(8): 2009-2017
[2]
Dangl J L, Jones J D. Plant pathogens and integrated defence responses to infection[J]. Nature, 2001, 411(6839): 826-833
[3]
Hulbert S H, Webb C A, Smith S M, Sun Q. Resistance gene complexes: evolution and utilization[J]. Annual Review of Phytopathology,2001, 39(1): 285-312
[4]
Lukasik E, Takken F L W. Standing strong, resistance proteins instigators of plant defence[J]. Current Opinion in Plant Biology,2009, 12(4): 427-436
[5]
Meyers B C, Kozik A, Griego A, Kuang H, Michelmore R W. Genome-wide analysis of NBS-LRR-encoding genes in Arabidopsis[J]. Plant Cell, 2003, 15(4): 809-834
[6]
Jupe F, Pritchard L, Etherington G J, Mackenzie K, Cock P J, Wright F, Sharma S K, Bolser D, Bryan G J, Jones J D, Hein I. Identification and localisation of the NBS-LRR gene family within the potato genome [J]. BioMed central genomics, 2012, 13(1): 75-88
[7]
Lozano R, Ponce O, Ramirez M, Mostajo N, Orjeda G. Genome-wide identification and mapping of NBS-encoding resistance genes in Solanum tuberosum group phureja[J]. Plos One,2012, 7(4): e34775
[8]
Zhou T, Wang Y, Chen J Q, Araki H, Jing Z, Jiang K, Shen J, Tian D. Genome-wide identification of NBS genes in japonica rice reveals significant expansion of divergent non-TIR NBS-LRR genes[J]. Molecular Genetics and Genomics,2004, 271(4): 402-415
[9]
Ameline-Torregrosa C, Wang BB, Bleness M S O, Deshpande S, Zhu H, Roe B, Young N D, Cannon S B. Identification and characterization of nucleotide-binding site-leucine-rich repeat genes in the model plantMedicago truncatula[J]. Plant Physiology,2008, 146(1): 5-21
[10]
Cheng Y, Li X, Jiang H, Ma W, Miao W, Yamada T, Zhang M. Systematic analysis and comparison of nucleotide-binding site disease resistance genes in maize[J]. FEBS Journal,2012, 279(13): 2431-2443
[11]
Paterson A H, Bowers J E, Bruggmann R, Dubchak I, Grimwood J, Gundlach H, Haberer G, Hellsten U, Mitros T, Poliakov A. The Sorghum bicolor genome and the diversification of grasses[J]. Nature,2009, 457(7229): 551-556
[12]
Liu, J, Liu, X, Dai, L, Wang, G. Recent progress in elucidating the structure, function and evolution of disease resistance genes in plants[J]. Journal of Genetics and Genomics, 2007, 34(9), 765-776
[13]
Ercolano M R, Sanseverino W, Carli P, Ferriello F, Frusciante L. Genetic and genomic approaches for R-gene mediated disease resistance in tomato: retrospects and prospects[J]. Plant Cell Reports,2012, 31(6): 973-985
[14]
Sato S, Tabata S, Hirakawa H, Asamizu E, Shirasawa K, Isobe S, Kaneko T, Nakamura Y, Shibata D, Aoki K. The tomato genome sequence provides insights into fleshy fruit evolution[J]. Nature,2012, 485(7400): 635-641
[15]
Guo Y L, Fitz J, Schneeberger K, Ossowski S, Cao J, Weigel D. Genome-wide comparison of nucleotide-binding site-leucine-rich repeat-encoding genes in Arabidopsis[J]. Plant Physiology, 2011, 157(2): 757-769
[16]
Yang S, Zhang X, Yue J X, Tian D, Chen J Q. Recent duplications dominate NBS-encoding gene expansion in two woody species[J]. Molecular Genetics and Genomics,2008b, 280(3): 187-198
[17]
Huang S, Gao Y, Liu J, Peng X, Niu X, Fei Z, Cao S, Liu Y. Genome-wide analysis of WRKY transcription factors in Solanum lycopersicum[J]. Molecular Genetics and Genomics,2012, 287(6): 495-513
[18]
Kohler A, Rinaldi C, Duplessis S, Baucher M, Geelen D, Duchaussoy F, Meyers BC, Boerjan W, Martin F. Genome-wide identification of NBS resistance genes in Populus trichocarpa[J].Plant Molecular Biology,2008, 66(6): 619-636
[19]
Mun J H, Yu H J, Park S, Park B S. Genome-wide identification of NBS-encoding resistance genes in Brassica rapa[J]. Molecular Genetics and Genomics,2009, 282(6): 617-631
[20]
Friedman A R, Baker B J. The evolution of resistance genes in multi-protein plant resistance systems[J]. Current Opinion in Genetics and Development,2007, 17(6): 493-499
[21]
Meyers B C, Dickerman A W, Michelmore R W, Sivaramakrishnan S, Sobral B W, Young N D. Plant disease resistance genes encode members of an ancient and diverse protein family within the nucleotide-binding superfamily[J]. The Plant Journal,1999, 20(3): 317-332
[22]
Salmeron J M, Oldroyd G E D, Rommens C M T, Scofield S R, Kim H S, Lavelle D T, Dahlbeck D, Staskawicz B J. Tomato Prf is a member of the leucine-rich repeat class of plant disease resistance genes and lies embedded within the Pto kinase gene cluster[J]. Cell.1996, 86(1): 123-133
[23]
Ori N, Eshed Y, Paran I, Presting G, Aviv D, Tanksley S, Zamir D, Fluhr R. The I2C family from the wilt disease resistance locus I2 belongs to the nucleotide binding, leucine-rich repeat superfamily of plant resistance genes[J]. Plant Cell,1997, 9(4): 521-532
[24]
Milligan S B, Bodeau J, Yaghoobi J, Kaloshian I, Zabel P, Williamson V M. The root knot nematode resistance gene Mi from tomato is a member of the leucine zipper, nucleotide binding, leucine-rich repeat family of plant genes[J]. Plant Cell,1998, 10(8): 1307-1320
[25]
Spassova M I, Prins T W, Folkertsma R T, Klein-Lankhorst R M, Hille J, Goldbach R W, Prins M. The tomato gene Sw5 is a member of the coiled coil, nucleotide binding, leucine-rich repeat class of plant resistance genes and confers resistance to TSWV in tobacco[J]. Molecular Breeding,2001, 7(2): 151-161
[26]
Ernst K, Kumar A, Kriseleit D, Kloos D U, Phillips M S, Ganal M W. The broad-spectrum potato cyst nematode resistance gene (Hero) from tomato is the only member of a large gene family of NBS-LRR genes with an unusual amino acid repeat in the LRR region[J]. The Plant Journal,2002, 31(2): 127-136
[27]
Lanfermeijer F C, Dijkhuis J, Sturre M J G, de Haan P, Hille J. Cloning and characterization of the durable tomato mosaic virus resistance gene Tm-22 from Lycopersicon esculentum[J]. Plant Molecular Biology,2003, 52(5): 1039-1051
[28]
Schornack S, Ballvora A, Gürlebeck D, Peart J, Ganal M, Baker B, Bonas U, Lahaye T. The tomato resistance protein Bs4 is a predicted non-nuclear TIR-NB-LRR protein that mediates defense responses to severely truncated derivatives of AvrBs4 and overexpressed AvrBs3[J]. The Plant Journal,2004, 37(1): 46-60
[29]
Gabrils S H E J, Vossen J H, Ekengren S K, Ooijen G, Abd-El-Haliem A M, Berg G, Rainey D Y, Martin G B, Takken F L W, Wit P J G M. An NB-LRR protein required for HR signalling mediated by both extra-and intracellular resistance proteins[J]. The Plant Journal,2007, 50(1): 14-28