Tomato defense to Oidium neolycopersici:: Dominant Ol genes confer isolate-dependent resistance via a different mechanism than recessive ol-2

被引:77
作者
Bai, YL [1 ]
van der Hulst, R [1 ]
Bonnema, G [1 ]
Marcel, TC [1 ]
Meijer-Dekens, F [1 ]
Niks, RE [1 ]
Lindhout, P [1 ]
机构
[1] Univ Wageningen & Res Ctr, Lab Plant Breeding, NL-6700 AJ Wageningen, Netherlands
关键词
D O I
10.1094/MPMI-18-0354
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Tomato powdery mildew caused by Oidium neolycopersici has become a globally important disease of tomato (Lycopersicon esculentum). To study the defense responses of tomato triggered by tomato powdery mildew, we first mapped a set of resistance genes to O. neolycopersici from related Lycopersicon species. An integrated genetic map was generated showing that all the dominant resistance genes (Ol-1, Ol-3, Ol-4, Ol-5, and Ol-6) are located on tomato chromosome 6 and are organized in three genetic loci. Then, near-isogenic lines (NIL) were produced that contain the different dominant Ol genes in a L. esculentum genetic background. These NIL were used in disease tests with local isolates of O. neolycopersici in different geographic locations, demonstrating that the resistance conferred by different Ol genes was isolate-dependent and, hence, may be race-specific. In addition, the resistance mechanism was analyzed histologically. The mechanism of resistance conferred by the dominant Ol genes was associated with hypersensitive response, which varies in details depending on the Ol-gene in the NIL, while the mechanism of resistance governed by the recessive gene ol-2 on tomato chromosome 4 was associated with papillae formation.
引用
收藏
页码:354 / 362
页数:9
相关论文
共 45 条
[1]   The heat-stable root-knot nematode resistance gene Mi-9 from Lycopersicon peruvianum is localized on the short arm of chromosome 6 [J].
Ammiraju, JSS ;
Veremis, JC ;
Huang, X ;
Roberts, PA ;
Kaloshian, I .
THEORETICAL AND APPLIED GENETICS, 2003, 106 (03) :478-484
[2]   Mapping Ol-4, a gene conferring resistance to Oidium neolycopersici and originating from Lycopersicon peruvianum LA2172, requires multi-allelic, single-locus markers [J].
Bai, Y ;
van der Hulst, R ;
Huang, CC ;
Wei, L ;
Stam, P ;
Lindhout, P .
THEORETICAL AND APPLIED GENETICS, 2004, 109 (06) :1215-1223
[3]   A set of simple PCR markers converted from sequence specific RFLP markers on tomato chromosomes 9 to 12 [J].
Bai, YL ;
Feng, XH ;
van der Hulst, R ;
Lindhout, P .
MOLECULAR BREEDING, 2004, 13 (03) :281-287
[4]   QTLs for tomato powdery mildew resistance (Oidium lycopersici) in Lycopersicon parviflorum G1.1601 co-localize with two qualitative powdery mildew resistance genes [J].
Bai, YL ;
Huang, CC ;
van der Hulst, R ;
Meijer-Dekens, F ;
Bonnema, G ;
Lindhout, P .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2003, 16 (02) :169-176
[5]   A new and versatile method for the successful conversion of AFLP™ markers into simple single locus markers -: art. no. e55 [J].
Brugmans, B ;
van der Hulst, RGM ;
Visser, RGF ;
Lindhout, P ;
van Eck, HJ .
NUCLEIC ACIDS RESEARCH, 2003, 31 (10)
[6]   Occurrence and inheritance of resistance to powdery mildew (Oidium lycopersici) in Lycopersicon species [J].
Ciccarese, F ;
Amenduni, M ;
Schiavone, D ;
Cirulli, M .
PLANT PATHOLOGY, 1998, 47 (04) :417-419
[7]   Plant pathogens and integrated defence responses to infection [J].
Dangl, JL ;
Jones, JDG .
NATURE, 2001, 411 (6839) :826-833
[8]   Identification of PCR-based markers (RAPD, AFLP) linked to a novel powdery mildew resistance gene (ol-2) in tomato [J].
De Giovanni, C ;
Dell' Orco, P ;
Bruno, A ;
Ciccarese, F ;
Lotti, C ;
Ricciardi, L .
PLANT SCIENCE, 2004, 166 (01) :41-48
[9]   The tomato Cf-2 disease resistance locus comprises two functional genes encoding leucine-rich repeat proteins [J].
Dixon, MS ;
Jones, DA ;
Keddie, JS ;
Thomas, CM ;
Harrison, K ;
Jones, JDG .
CELL, 1996, 84 (03) :451-459
[10]   Organization of genes controlling disease resistance in the potato genome [J].
Gebhardt, C ;
Valkonen, JPT .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 2001, 39 :79-102