Knockout analysis of Arabidopsis transcription factors TGA2, TGA5, and TGA6 reveals their redundant and essential roles in systemic acquired resistance

被引:359
作者
Zhang, YL [1 ]
Tessaro, MJ
Lassner, M
Li, X
机构
[1] Univ British Columbia, Biotechnol Lab, Vancouver, BC V6T 1Z3, Canada
[2] Maxygen Inc, Redwood City, CA 94063 USA
关键词
D O I
10.1105/tpc.014894
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
Arabidopsis nonexpresser of pathogenesis-related (PR) genes (NPR1) is the sole positive regulator that has been shown to be essential for the induction of systemic acquired resistance. In npr1 mutant plants, salicylic acid (SA)-mediated PR gene expression and pathogen resistance are abolished completely. NPR1 has been shown to interact with three closely related TGA transcription factors-TGA2, TGA5, and TGA6-in yeast two-hybrid assays. To elucidate the biological functions of these three TGA transcription factors, we analyzed single and combined deletion knockout mutants of TGA2, TGA5, and TGA6 for SA-induced PR gene expression and pathogen resistance. Induction of PR gene expression and pathogen resistance by the SA analog 2,6-dichloroisonicotinic acid (INA) was blocked in tga6-1 tga2-1 tga5-1 but not in tga6-1 or tga2-1 tga5-1 plants. Loss of INA-induced resistance to Peronospora parasitica Noco2 cosegregated with the tga6-1 mutation in progeny of multiple lines that were heterozygous for tga6-1 and homozygous for tga2-1 tga5-1 and could be complemented by genomic clones of wild-type TGA2 or TGA5, indicating that TGA2, TGA5, and TGA6 encode redundant and essential functions in the positive regulation of systemic acquired resistance. In addition, tga6-1 tga2-1 tga5-1 plants had reduced tolerance to high levels of SA and accumulated higher basal levels of PR-1 under noninducing conditions, suggesting that these TGA factors also are important for SA tolerance and the negative regulation of the basal expression of PR-1.
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页码:2647 / 2653
页数:7
相关论文
共 36 条
[1]   Fold prediction and evolutionary analysis of the POZ domain: Structural and evolutionary relationship with the potassium channel tetramerization domain [J].
Aravind, L ;
Koonin, EV .
JOURNAL OF MOLECULAR BIOLOGY, 1999, 285 (04) :1353-1361
[2]   Generation of broad-spectrum disease resistance by overexpression of an essential regulatory gene in systemic acquired resistance [J].
Cao, H ;
Li, X ;
Dong, XN .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (11) :6531-6536
[3]   The Arabidopsis NPR1 gene that controls systemic acquired resistance encodes a novel protein containing ankyrin repeats [J].
Cao, H ;
Glazebrook, J ;
Clarke, JD ;
Volko, S ;
Dong, XN .
CELL, 1997, 88 (01) :57-63
[4]  
CAO H, 1994, PLANT CELL, V6, P1583, DOI 10.1105/tpc.6.11.1583
[5]   Evidence for a disease-resistance pathway in rice similar to the NPR1-mediated signaling pathway in Arabidopsis [J].
Chern, MS ;
Fitzgerald, HA ;
Yadav, RC ;
Canlas, PE ;
Dong, XN ;
Ronald, PC .
PLANT JOURNAL, 2001, 27 (02) :101-113
[6]   Floral dip:: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana [J].
Clough, SJ ;
Bent, AF .
PLANT JOURNAL, 1998, 16 (06) :735-743
[7]   ARABIDOPSIS SIGNAL-TRANSDUCTION MUTANT DEFECTIVE IN CHEMICALLY AND BIOLOGICALLY INDUCED DISEASE RESISTANCE [J].
DELANEY, TP ;
FRIEDRICH, L ;
RYALS, JA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (14) :6602-6606
[8]   The arabidopsis NPR1/NIM1 protein enhances the DNA binding activity of a subgroup of the TGA family of bZIP transcription factors [J].
Després, C ;
DeLong, C ;
Glaze, S ;
Liu, E ;
Fobert, PR .
PLANT CELL, 2000, 12 (02) :279-290
[9]   In vivo interaction between NPR1 and transcription factor TGA2 leads to salicylic acid-mediated gene activation in Arabidopsis [J].
Fan, WH ;
Dong, XN .
PLANT CELL, 2002, 14 (06) :1377-1389
[10]   REQUIREMENT OF SALICYLIC-ACID FOR THE INDUCTION OF SYSTEMIC ACQUIRED-RESISTANCE [J].
GAFFNEY, T ;
FRIEDRICH, L ;
VERNOOIJ, B ;
NEGROTTO, D ;
NYE, G ;
UKNES, S ;
WARD, E ;
KESSMANN, H ;
RYALS, J .
SCIENCE, 1993, 261 (5122) :754-756