Fungal Effector Proteins

被引:614
作者
Stergiopoulos, Ioannis [1 ]
de Wit, Pierre J. G. M. [1 ,2 ]
机构
[1] Univ Wageningen & Res Ctr, Phytopathol Lab, NL-6708 PD Wageningen, Netherlands
[2] Ctr BioSyst Genom, NL-6700 AB Wagengen, Netherlands
关键词
avirulence; cysteine-rich proteins; diversifying selection; guard model; resistance; virulence; PATHOGEN CLADOSPORIUM-FULVUM; RICE BLAST RESISTANCE; AVIRULENCE GENE AVR9; FLAX RUST RESISTANCE; CF-2-DEPENDENT DISEASE RESISTANCE; POWDERY MILDEW RESISTANCE; RACE-SPECIFIC ELICITOR; F-SP HORDEI; MAGNAPORTHE-GRISEA; RHYNCHOSPORIUM-SECALIS;
D O I
10.1146/annurev.phyto.112408.132637
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
It is accepted that most fungal avirulence genes encode virulence factors that are called effectors. Most fungal effectors are secreted, cysteine-rich proteins, and a role in virulence has been shown for a few of them, including Avr2 and Avr4 of Cladosporium fulvum, which inhibit plant cysteine proteases and protect chitin in fungal cell walls against plant chitinases, respectively. In resistant plants, effectors are directly or indirectly recognized by cognate resistance proteins that reside either inside the plant cell or on plasma membranes. Several secreted effectors function inside the host cell, but the uptake mechanism is not yet known. Variation observed among fungal effectors shows two types of selection that appear to relate to whether they interact directly or indirectly with their cognate resistance proteins. Direct interactions seem to favor point mutations in effector genes, leading to amino acid substitutions, whereas indirect interactions seem to favor jettison of effector genes.
引用
收藏
页码:233 / 263
页数:31
相关论文
共 149 条
[1]   Bacterial elicitation and evasion of plant innate immunity [J].
Abramovitch, Robert B. ;
Anderson, Jeffrey C. ;
Martin, Gregory B. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2006, 7 (08) :601-611
[2]   Type III secretion system effector proteins: Double agents in bacterial disease and plant defense [J].
Alfano, JR ;
Collmer, A .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 2004, 42 :385-414
[3]   Host-parasite coevolutionary conflict between Arabidopsis and downy mildew [J].
Allen, RL ;
Bittner-Eddy, PD ;
Grenvitte-Briggs, LJ ;
Meitz, JC ;
Rehmany, AP ;
Rose, LE ;
Beynon, JL .
SCIENCE, 2004, 306 (5703) :1957-1960
[4]   Inactivation of the flax rust resistance gene M associated with loss of a repeated unit within the leucine-rich repeat coding region [J].
Anderson, PA ;
Lawrence, GJ ;
Morrish, BC ;
Ayliffe, MA ;
Finnegan, EJ ;
Ellis, JG .
PLANT CELL, 1997, 9 (04) :641-651
[5]   A large-scale survey of races of Leptosphaeria maculans occurring on oilseed rape in France [J].
Balesdent, MH ;
Louvard, K ;
Pinochet, X ;
Rouxel, T .
EUROPEAN JOURNAL OF PLANT PATHOLOGY, 2006, 114 (01) :53-65
[6]   Analysis of Leptosphaeria maculans race structure in a worldwide collection of isolates [J].
Balesdent, MH ;
Barbetti, MJ ;
Li, H ;
Sivasithamparam, K ;
Gout, L ;
Rouxel, T .
PHYTOPATHOLOGY, 2005, 95 (09) :1061-1071
[7]   New avirulence genes in the phytopathogenic fungus Leptosphaeria maculans [J].
Balesdent, MH ;
Attard, A ;
Kühn, AL ;
Rouxel, T .
PHYTOPATHOLOGY, 2002, 92 (10) :1122-1133
[8]   Elicitors, effectors, and R genes:: The new paradigm and a lifetime supply of questions [J].
Bent, Andrew F. ;
Mackey, David .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 2007, 45 :399-436
[9]   RAR1 positively controls steady state levels of barley MLA resistance proteins and enables sufficient MLA6 accumulation for effective resistance [J].
Bieri, S ;
Mauch, S ;
Shen, QH ;
Peart, J ;
Devoto, A ;
Casais, C ;
Ceron, F ;
Schulze, S ;
Steinbiss, HH ;
Shirasu, K ;
Schulze-Lefert, P .
PLANT CELL, 2004, 16 (12) :3480-3495
[10]   Oomycete RXLR effectors: delivery, functional redundancy and durable disease resistance [J].
Birch, Paul R. J. ;
Boevink, Petra C. ;
Gilroy, Eleanor M. ;
Hein, Ingo ;
Pritchard, Leighton ;
Whisson, Stephen C. .
CURRENT OPINION IN PLANT BIOLOGY, 2008, 11 (04) :373-379