Arabidopsis local resistance to Botrytis cinerea involves salicylic acid and camalexin and requires EDS4 and PAD2, but not SID2, EDS5 or PAD4

被引:405
作者
Ferrari, S
Plotnikova, JM
De Lorenzo, G
Ausubel, FM [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Genet, Boston, MA 02114 USA
[2] Massachusetts Gen Hosp, Dept Mol Biol, Boston, MA 02114 USA
[3] Univ Roma La Sapienza, Dipartimento Biol Vegetale, I-00185 Rome, Italy
关键词
defense response; plant-pathogen interaction; Arabidopsis; Botrytis cinerea; salicylic acid; camalexin;
D O I
10.1046/j.1365-313X.2003.01794.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Salicylic acid (SA) is an important regulator of plant defense responses, and a variety of Arabidopsis mutants impaired in resistance against bacterial and fungal pathogens show defects in SA accumulation, perception, or signal transduction. Nevertheless, the role of SA-dependent defense responses against necrotrophic fungi is currently unclear. We determined the susceptibility of a set of previously identified Arabidopsis mutants impaired in defense responses to the necrotrophic fungal pathogen Botrytis cinerea . The rate of development of B. cinerea disease symptoms on primary infected leaves was affected by responses mediated by the genes EIN2, JAR1, EDS4, PAD2, and PAD3, but was largely independent of EDS5, SID2 /ICS1, and PAD4 . Furthermore, plants expressing a nahG transgene or treated with a phenylalanine ammonia lyase (PAL) inhibitor showed enhanced symptoms, suggesting that SA synthesized via PAL, and not via isochorismate synthase (ICS), mediates lesion development. In addition, the degree of lesion development did not correlate with defensin or PR1 expression, although it was partially dependent upon camalexin accumulation. Although npr1 mutant leaves were normally susceptible to B. cinerea infection, a double ein2 npr1 mutant was significantly more susceptible than ein2 plants, and exogenous application of SA decreased B. cinerea lesion size through an NPR1-dependent mechanism that could be mimicked by the cpr1 mutation. These data indicate that local resistance to B. cinerea requires ethylene-, jasmonate-, and SA-mediated signaling, that the SA affecting this resistance does not require ICS1 and is likely synthesized via PAL, and that camalexin limits lesion development.
引用
收藏
页码:193 / 205
页数:13
相关论文
共 48 条
[1]  
Audenaert K, 2002, PLANT PHYSIOL, V128, P491, DOI 10.1104/pp.010605
[2]   A MUTATION IN ARABIDOPSIS THAT LEADS TO CONSTITUTIVE EXPRESSION OF SYSTEMIC ACQUIRED-RESISTANCE [J].
BOWLING, SA ;
GUO, A ;
CAO, H ;
GORDON, AS ;
KLESSIG, DF ;
DONG, XI .
PLANT CELL, 1994, 6 (12) :1845-1857
[3]   The cpr5 mutant of Arabidopsis expresses both NPR1-dependent and NPR1-independent resistance [J].
Bowling, SA ;
Clarke, JD ;
Liu, YD ;
Klessig, DF ;
Dong, XN .
PLANT CELL, 1997, 9 (09) :1573-1584
[4]   Salicylic acid and its role in plant defense responses: what do we really know? [J].
Cameron, RK .
PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY, 2000, 56 (03) :91-93
[5]  
CAO H, 1994, PLANT CELL, V6, P1583, DOI 10.1105/tpc.6.11.1583
[6]   NDR1, a pathogen-induced component required for Arabidopsis disease resistance [J].
Century, KS ;
Shapiro, AD ;
Repetti, PP ;
Dahlbeck, D ;
Holub, E ;
Staskawicz, BJ .
SCIENCE, 1997, 278 (5345) :1963-1965
[7]   ARABIDOPSIS ETHYLENE-RESPONSE GENE ETR1 - SIMILARITY OF PRODUCT TO 2-COMPONENT REGULATORS [J].
CHANG, C ;
KWOK, SF ;
BLEECKER, AB ;
MEYEROWITZ, EM .
SCIENCE, 1993, 262 (5133) :539-544
[8]   Roles of salicylic acid, jasmonic acid, and ethylene in cpr-induced resistance in Arabidopsis [J].
Clarke, JD ;
Volko, SM ;
Ledford, H ;
Ausubel, FM ;
Dong, XN .
PLANT CELL, 2000, 12 (11) :2175-2190
[9]   Uncoupling PR gene expression from NPR1 and bacterial resistance:: Characterization of the dominant Arabidopsis cpr6-1 mutant [J].
Clarke, JD ;
Liu, YD ;
Klessig, DF ;
Dong, XN .
PLANT CELL, 1998, 10 (04) :557-569
[10]   The biosynthesis of salicylic acid in potato plants [J].
Coquoz, JL ;
Buchala, A ;
Métraux, JP .
PLANT PHYSIOLOGY, 1998, 117 (03) :1095-1101