Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (6): 992-997.doi: 10.3724/SP.J.1006.2009.00992
• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Previous Articles Next Articles
XU Jian-Fei,JIN Li-Ping,DUAN Shao-Guang,HUANG San-Wen,QU Dong-Yu*
| [1] McDonald B A, Linde C. Pathogen population genetics, evolutionary potential and durable resistance. Annu Rev Phytopathol, 2002, 40: 349-379 [2] Andrivon D, Lucas J M, Ellissèche D. Development of natural late blight epidemics in pure and mixed plots of potato cultivars with different levels of partial resistance. Plant Pathol, 2003, 52: 586-594 [3] Dangl J L, Jones J D. Plant pathogens and integrated defense responses to infection. Nature, 2001, 411: 826-833 [4] Mundt C C. Use of multiline cultivars and cultivar mixtures for disease management. Annu Rev Phytopathol, 2002, 40: 381-410 [5] Ballvora A, Ercolano M R, Weiss J, Meksem K, Bormann C A, Oberhagemann P, Salamini F, Gebhardt C. The R1 gene for potato resistance to late blight (Phytophthora infestans) belongs to the leucine zipper/NBS/LRR class of plant resistance genes. Plant J, 2002, 30: 361-371 [6] Huang S, van der Vossen E A, Kuang H, Vleeshouwers V G, Zhang N, Borm T J, van Eck H J, Baker B, Jacobsen E, Visser R G. Comparative genomics enabled the isolation of the R3a late blight resistance gene in potato. Plant J, 2005, 42: 251-261 [7]Song J, Bradeen J M, Naess S K, Raasch J A, Wielgus S M, Haberlach G T, Liu J, Kuang H, Austin-Phillips S, Buell C R, Helgeson J P, Jiang J. Gene RB cloned from Solanum bulbocastanum confers broad spectrum resistance to potato late blight. Proc Natl Acad Sci USA, 2003, 100: 9128-9133 [8] Huang S. Discovery and characterization of the major late blight resistance complex in potato: Genomic structure, functional diversity, and implications. Wageningen Netherlands: Wageningen Universiteit (Wageningen University), 2005 [9] Bradshaw J E, Bryan G J, Lees A K, McLean K, Solomon-Blackburn R M. Mapping the R10 and R11 genes for resistance to late blight (Phytophthora infestans) present in the potato (Solanum tuberosum) R-gene differentials of black. Theor Appl Genet, 2006, 112: 744-751 [10] Vleeshouwers V G, van Dooijeweert W, Keizer L C P, Sijpkes L, Govers F, Colon L T. A laboratory assay for Phytophthora infestans resistance in various Solanum species reflects the field situation. Eur J Plant Pathol, 1999, 105: 241-250 [11] van der Lee T, Testa A, van’t Klooster J, van den Berg-Velthuis G, Govers F. Chromosomal deletion in isolates of Phytophthora infestans correlates with virulence on R3, R10, and R11 potato lines. Mol Plant Microbe Interact, 2001, 14: 1444-1452 [12] Vos P, Hogers R, Bleeker M, Reijans M, van de Lee T, Hornes M, Frijters A, Pot J, Peleman j, Kuiper M, Zabeau M. AFLP: A new technique for DNA fingerprinting. Nucl Acids Res, 1995, 23: 4407-4414 [13] Malcolmson J F, Black W. New R-genes in Solanum demissum Lindl. and their complementary races of Phytophthora infestans (Mont.) de Bary. Euphytica, 1966, 15: 199-203 [14] Flor H H. Current status of the gene-for-gene concept. Annu Rev Phytopathol, 1971, 9: 276-296 [15] Xu J-F(徐建飞), Wang J-J(王加加), Li Y(李颖), Jin L-P(金黎平), Jacobsen E, Huang S-W(黄三文), Qu D-Y(屈冬玉). Genetic mapping of the R10 gene for resisting late blight in potato by comparative genomics. Sci Technol Rev (科技导报), 2007, 25: 30-35(in Chinese with English abstract) [16] Harrison J G, Lowe R. Stability of R-gene resistance to late blight in potato leaves. In: Dowley L J, Bannon E, Cooke L R, Keane T, O’Sullivan E, eds. Phytophthora infestans. Dublin: Boole Press Ltd, 1995. 365-367 [17] Turkensteen L J. Interaction of R-genes in breeding for resistance of potatoes against Phytophthora infestans. In: Rep of the Planning Conf: Fungal Diseases of the Potato. Lima: International Potato Center, 1989. pp 85-96 [18] Stewart H E, Gourlay F. Recognising race-specific resistance to Phytophthora infestans. In: Dowley L J, Bannon E, Cooke L R, Keane T, O’Sullivan E, eds. Phytophthora infestans. Dublin: Boole Press Ltd, 1995. pp 255-260 [19] Brouwer D J, Jones E S, St. Clair D A. QTL analysis of quantitative resistance to Phytophthora infestans (late blight) in tomato and comparisons with potato. Genome, 2004, 47: 475-492 [20] Li X, van Eck H J, Rouppe van der Voort J N A M, Huigen, D J, Stam P, Jacobsen E. Autotetraploids and genetic mapping using common AFLP markers: The R2 allele conferring resistance to Phytophthora infestans mapped on potato chromosome 4. Theor Appl Genet, 1998, 96: 1121-1128 [21] Leonards-Schippers C, Gieffers W, Salamini F, Gebhardt C. The R1 gene conferring race-specific resistance to Phytophthora infestans in potato is located on potato chromosome V. Mol Gen Genet,1992, 233: 278-283 [22] Huang S, Vleeshouwers V G A A, Werij J S, Hutten R C B, van Eck H J, Visser R G F, Jacobsen E. The R3 resistance to Phytophthora infestans in potato is conferred by two closely linked R genes with distinct specificities. Mol Plant Microbe Interact,2004, 17: 428-435 [23] Naess S K, Bradeen J M, Wielgus S M, Haberlach G T, McGrath J M, Helgeson J P. Resistance to late blight in Solanum bulbocastanum is mapped to chromosome 8. Theor Appl Genet,2000, 101: 697-704 [24] Colon L T, Budding D J. Hoogendoorn J. Breeding for foliar resistance to Phytophthora infestans in potato: the influence of test conditions on the results of screening for field resistance. In: Dowley L J, Bannon E, Cooke L R, Keane T, O’Sullivan E, eds. Phytophthora infestans. Dublin: Boole Press Ltd, 1995. pp 282-288 [25] Meyers B C, Chin D B, Shen K A, Sivaramakrishnan S, Lavelle D O, Zhang Z, Michelmore R W. The major resistance gene cluster in lettuce is highly duplicated and spans several megabases. Plant Cell, 1998, 10: 1817-1832 |
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