Tolerance of Plants to Pathogens: A Unifying View

被引:66
作者
Pagan, Israel [1 ,2 ,3 ]
Garcia-Arenal, Fernando [1 ,2 ,3 ]
机构
[1] Univ Politecn Madrid UPM, Ctr Biotecnol & Genom Plantas CBGP, Campus Montegancedo, Madrid 28223, Spain
[2] UPM, Inst Nacl Invest & Tecnol Agr & Alimentaria INIA, Campus Montegancedo, Madrid 28223, Spain
[3] UPM, ETSI Agron Alimentaria & Biosistemas, Campus Montegancedo, Madrid 28223, Spain
来源
ANNUAL REVIEW OF PHYTOPATHOLOGY, VOL 58 | 2020年 / 58卷
关键词
plant defense responses; concepts of tolerance; measures of tolerance; tolerance mechanisms; plant-pathogen coevolution; YELLOW-MOSAIC-VIRUS; SENECIO-VULGARIS L; RUST PUCCINIA-LAGENOPHORAE; LEAF CURL VIRUS; ARABIDOPSIS-THALIANA; GENETIC-VARIATION; DWARF-VIRUS; VIRULENCE EVOLUTION; SYMPTOM SEVERITY; LOCAL ADAPTATION;
D O I
10.1146/annurev-phyto-010820-012749
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Increasing evidence indicates that tolerance is a host defense strategy against pathogens as widespread and successful as resistance. Since the concept of tolerance was proposed more than a century ago, it has been in continuous evolution. In parallel, our understanding of its mechanistic bases and its consequences for host and pathogen interactions, ecology, and evolution has grown. This review aims at summarizing the conceptual changes in the meaning of tolerance inside and outside the field of phytopathology, emphasizing difficulties in demonstrating and quantifying this trait. We also discuss evidence of tolerance and current knowledge on its genetic regulation, mechanisms, and role in host-pathogen coevolution, highlighting common patterns across hosts and pathogens. We hope that this comprehensive review attracts more plant pathologists to the study of this key plant defense response.
引用
收藏
页码:77 / 96
页数:20
相关论文
共 152 条
[1]   Virulence evolution and the trade-off hypothesis: history, current state of affairs and the future [J].
Alizon, S. ;
Hurford, A. ;
Mideo, N. ;
Van Baalen, M. .
JOURNAL OF EVOLUTIONARY BIOLOGY, 2009, 22 (02) :245-259
[2]   Adaptive virulence evolution: the good old fitness-based approach [J].
Alizon, Samuel ;
Michalakis, Yannis .
TRENDS IN ECOLOGY & EVOLUTION, 2015, 30 (05) :248-254
[3]   Tolerance to blackeye cowpea mosaic potyvirus not correlated with decreased virus accumulation or protection from cowpea stunt disease [J].
Anderson, EJ ;
Kline, AS ;
Morelock, TE ;
McNew, RW .
PLANT DISEASE, 1996, 80 (08) :847-852
[4]   Tolerance of chickpea (Cicer arietinum L.) lines to root-knot nematode, Meloidogyne java']javanica (Treub) Chitwood [J].
Ansari, MA ;
Patel, BA ;
Mhase, NL ;
Patel, DJ ;
Douaik, A ;
Sharma, SB .
GENETIC RESOURCES AND CROP EVOLUTION, 2004, 51 (04) :449-453
[5]   Identification of QTLs for BYDV tolerance in bread wheat [J].
Ayala, L ;
Henry, M ;
van Ginkel, M ;
Singh, R ;
Keller, B ;
Khairallah, M .
EUPHYTICA, 2002, 128 (02) :249-259
[6]  
Ayres P.G., 1996, PHOTOASSIMILATE DIST, P479
[7]  
Bateman D.F., 1978, Plant Disease, An Advanced Treatise, VIII, P53
[8]   Ecological immunology and tolerance in plants and animals [J].
Baucom, Regina S. ;
de Roode, Jacobus C. .
FUNCTIONAL ECOLOGY, 2011, 25 (01) :18-28
[9]   STUDIES ON TOLERANCE IN WILD PLANTS - EFFECTS OF ERYSIPHE-FISCHERI ON THE GROWTH AND DEVELOPMENT OF SENECIO-VULGARIS [J].
BENKALIO, VD ;
CLARKE, DD .
PHYSIOLOGICAL PLANT PATHOLOGY, 1979, 14 (02) :203-211
[10]   Maintenance of host variation in tolerance to pathogens and parasites [J].
Best, A. ;
White, A. ;
Boots, M. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (52) :20786-20791