Identification of PAD2 as a γ-glutamylcysteine synthetase highlights the importance of glutathione in disease resistance of Arabidopsis

被引:261
作者
Parisy, Vincent
Poinssot, Benoit
Owsianowski, Lucas
Buchala, Antony
Glazebrook, Jane
Mauch, Felix [1 ]
机构
[1] Univ Fribourg, Dept Biol, CH-1700 Fribourg, Switzerland
[2] Univ Minnesota, Dept Plant Biol, St Paul, MN 55109 USA
关键词
camalexin; Phytophthora brassicae; Pseudomonas syringae;
D O I
10.1111/j.1365-313X.2006.02938.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The Arabidopsis pad2-1 mutant belongs to a series of non-allelic camalexin-deficient mutants. It was originally described as showing enhanced susceptibility to virulent strains of Pseudomonas syringae and was later shown to be hyper-susceptible to the oomycete pathogen Phytophthora brassicae (formerly P. porri). Surprisingly, in both pathosystems, the disease susceptibility of pad2-1 was not caused by the camalexin deficiency, suggesting additional roles of PAD2 in disease resistance. The susceptibility of pad2-1 to P. brassicae was used to map the mutation to the gene At4g23100, which encodes gamma-glutamylcysteine synthetase (gamma-ECS, GSH1). GSH1 catalyzes the first committed step of glutathione (GSH) biosynthesis. The pad2-1 mutation caused an S to N transition at amino acid position 298 close to the active center. The conclusion that PAD2 encodes GSH1 is supported by several lines of evidence: (i) pad2-1 mutants contained only about 22% of wild-type amounts of GSH, (ii) genetic complementation of pad2-1 with wild-type GSH1 cDNA restored GSH production, accumulation of camalexin in response to P. syringae and resistance to P. brassicae and P. syringae, (iii) another GSH1 mutant, cad2-1, showed pad2-like phenotypes, and (iv) feeding of GSH to excised leaves of pad2-1 restored camalexin production and resistance to P. brassicae. Inoculation of Col-0 with P. brassicae caused a coordinated increase in the transcript abundance of GSH1 and GSH2, the gene encoding the second enzyme in GSH biosynthesis, and resulted in enhanced foliar GSH accumulation. The pad2-1 mutant showed enhanced susceptibility to additional pathogens, suggesting an important general role of GSH in disease resistance of Arabidopsis.
引用
收藏
页码:159 / 172
页数:14
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共 76 条
[1]   Chloroplasts as source and target of cellular redox regulation: a discussion on chloroplast redox signals in the context of plant physiology [J].
Baier, M ;
Dietz, KJ .
JOURNAL OF EXPERIMENTAL BOTANY, 2005, 56 (416) :1449-1462
[2]   Evidence for a direct link between glutathione biosynthesis and stress fefense gene expression in Arabidopsis [J].
Ball, L ;
Accotto, GP ;
Bechtold, U ;
Creissen, G ;
Funck, D ;
Jimenez, A ;
Kular, B ;
Leyland, N ;
Mejia-Carranza, J ;
Reynolds, H ;
Karpinski, S ;
Mullineaux, PM .
PLANT CELL, 2004, 16 (09) :2448-2462
[3]   The timing of senescence and response to pathogens is altered in the ascorbate-deficient Arabidopsis mutant vitamin c-1 [J].
Barth, C ;
Moeder, W ;
Klessig, DF ;
Conklin, PL .
PLANT PHYSIOLOGY, 2004, 134 (04) :1784-1792
[4]   Characterisation of an Arabidopsis-Leptosphaeria maculans pathosystem:: resistance partially requires camalexin biosynthesis and is independent of salicylic acid, ethylene and jasmonic acid signalling [J].
Bohman, S ;
Staal, J ;
Thomma, BPHJ ;
Wang, ML ;
Dixelius, C .
PLANT JOURNAL, 2004, 37 (01) :9-20
[5]   GLUTATHIONE ALTERATIONS IN MELON AND TOMATO ROOTS FOLLOWING TREATMENT WITH CHEMICALS WHICH INDUCE DISEASE RESISTANCE TO FUSARIUM-WILT [J].
BOLTER, C ;
BRAMMALL, RA ;
COHEN, R ;
LAZAROVITS, G .
PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY, 1993, 42 (05) :321-336
[6]   EIL2 transcription factor and glutathione synthetase are required for defense of tobacco against tobacco blue mold [J].
Borrás-Hidalgo, O ;
Thomma, BPHJ ;
Collazo, C ;
Chacón, O ;
Borroto, CJ ;
Ayra, C ;
Portieles, R ;
López, Y ;
Pujol, M .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2006, 19 (04) :399-406
[7]   Phytochelatins and metallothioneins: Roles in heavy metal detoxification and homeostasis [J].
Cobbett, C ;
Goldsbrough, P .
ANNUAL REVIEW OF PLANT BIOLOGY, 2002, 53 :159-182
[8]   The glutathione-deficient, cadmium-sensitive mutant, cad2-1, of Arabidopsis thaliana is deficient in γ-glutamylcysteine synthetase. [J].
Cobbett, CS ;
May, MJ ;
Howden, R ;
Rolls, B .
PLANT JOURNAL, 1998, 16 (01) :73-78
[9]   Elevated glutathione biosynthetic capacity in the chloroplasts of transgenic tobacco plants paradoxically causes increased oxidative stress [J].
Creissen, G ;
Firmin, J ;
Fryer, M ;
Kular, B ;
Leyland, N ;
Reynolds, H ;
Pastori, G ;
Wellburn, F ;
Baker, N ;
Wellburn, A ;
Mullineaux, P .
PLANT CELL, 1999, 11 (07) :1277-1291
[10]   The Arabidopsis NPR1 disease resistance protein is a novel cofactor that confers redox regulation of DNA binding activity to the basic domain/leucine zipper transcription factor TGA1 [J].
Després, C ;
Chubak, C ;
Rochon, A ;
Clark, R ;
Bethune, T ;
Desveaux, D ;
Fobert, PR .
PLANT CELL, 2003, 15 (09) :2181-2191