Identification of Arabidopsis loci required for susceptibility to the downy mildew pathogen Hyaloperonospora parasitica

被引:77
作者
Van Damme, M
Andel, A
Huibers, RP
Panstruga, R
Weisbeek, PJ
Van den Ackerveken, G
机构
[1] Univ Utrecht, Dept Mol & Cell Biol, NL-3584 CH Utrecht, Netherlands
[2] Max Planck Inst Plant Breeding Res, Dept Plant Microbe Interact, D-50829 Cologne, Germany
关键词
disease resistance; disease susceptibility; downy mildew resistance; obligate biotroph; oomycete;
D O I
10.1094/MPMI-18-0583
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
Plants are susceptible to a limited number of pathogens. Most infections fail due to active defense or absence of compatibility. Many components of the plant's surveillance system and defense arsenal have been identified in the last decades. However, knowledge is limited on compatibility; in particular, the role of plant factors in the infection process. To gain insight into these processes, we have initiated an Arabidopsis thaliana mutant screen for reduced susceptibility to the downy mildew pathogen Hyaloperonospora parasitica. Ethyl methane sulfonate (EMS) mutants were generated in the highly susceptible Arabidopsis line Ler eds1-2. Eight downy mildew-resistant (dmr) mutants were analyzed in detail, corresponding to six different loci. Microscopic analysis showed that, in all mutants, H. parasitica growth was severely reduced. Resistance of dmr3, dmr4, and dmr5 was associated with constitutive expression of PR-1. Furthermore, dmr3 and dmr4, but not dmr5, also were resistant to Pseudomonas syringae and Golovinomyces orondi, respectively. However, enhanced activation of plant defense was not observed in dmr1, dmr2, and dmr6. We postulate that, in these susceptibility mutants, cellular processes are disrupted which are required for H. parasitica infection. This interesting new set of mutants provides a basis to elucidate the molecular processes underlying susceptibility to downy mildew in Arabidopsis.
引用
收藏
页码:583 / 592
页数:10
相关论文
共 56 条
[31]   Plant infection and the establishment of fungal biotrophy [J].
Mendgen, K ;
Hahn, M .
TRENDS IN PLANT SCIENCE, 2002, 7 (08) :352-356
[32]   Recognition and response in the plant immune system [J].
Nimchuk, Z ;
Eulgem, T ;
Holt, BE ;
Dangl, JL .
ANNUAL REVIEW OF GENETICS, 2003, 37 :579-609
[33]   Loss of a callose synthase results in salicylic acid-dependent disease resistance [J].
Nishimura, MT ;
Stein, M ;
Hou, BH ;
Vogel, JP ;
Edwards, H ;
Somerville, SC .
SCIENCE, 2003, 301 (5635) :969-972
[34]   Innate immunity in plants and animals:: striking similarities and obvious differences [J].
Nürnberger, T ;
Brunner, F ;
Kemmerling, B ;
Piater, L .
IMMUNOLOGICAL REVIEWS, 2004, 198 :249-266
[35]   Establishing compatibility between plants and obligate biotrophic pathogens [J].
Panstruga, R .
CURRENT OPINION IN PLANT BIOLOGY, 2003, 6 (04) :320-326
[36]   Live and let live: insights into powdery mildew disease and resistance [J].
Panstruga, R ;
Schulze-Lefert, P .
MOLECULAR PLANT PATHOLOGY, 2002, 3 (06) :495-502
[37]   Characterization of eds1, a mutation in Arabidopsis suppressing resistance to Peronospora parasitica specified by several different RPP genes [J].
Parker, JE ;
Holub, EB ;
Frost, LN ;
Falk, A ;
Gunn, ND ;
Daniels, MJ .
PLANT CELL, 1996, 8 (11) :2033-2046
[38]   Powdery mildew pathogenesis of Arabidopsis thaliana [J].
Plotnikova, JM ;
Reuber, TL ;
Ausubel, FM .
MYCOLOGIA, 1998, 90 (06) :1009-1016
[39]   CHARACTERIZATION OF THE GENOME OF ARABIDOPSIS-THALIANA [J].
PRUITT, RE ;
MEYEROWITZ, EM .
JOURNAL OF MOLECULAR BIOLOGY, 1986, 187 (02) :169-183
[40]   The gain-of-function Arabidopsis acd6 mutant reveals novel regulation and function of the salicylic acid signaling pathway in controlling cell death, defenses, and cell growth [J].
Rate, DN ;
Cuenca, JV ;
Bowman, GR ;
Guttman, DS ;
Greenberg, JT .
PLANT CELL, 1999, 11 (09) :1695-1708