Nonhost resistance in Arabidopsis-colletotrichum interactions acts at the cell periphery and requires actin filament function

被引:120
作者
Shimada, C
Lipka, V
O'Connel, R
Okuno, T
Schulze-Lefert, P
Takano, Y [1 ]
机构
[1] Kyoto Univ, Grad Sch Agr, Kyoto, Japan
[2] Univ Tubingen, Ctr Plant Mol Biol, Tubingen, Germany
[3] Max Planck Inst Plant Breeding Res, Cologne, Germany
关键词
D O I
10.1094/MPMI-19-0270
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
Pathogenesis of nonadapted fungal pathogens is often terminated coincident with their attempted penetration into epidermal cells of nonhost plants. The genus Colletotrichum represents an economically important group of fungal plant pathogens that are amenable to molecular genetic analysis. Here, we investigated interactions between Arabidopsis and Colletotrichum to gain insights in plant and pathogen processes activating nonhost resistance responses. Three tested nonadapted Colletotrichum species differentiated melanized appressoria on Arabidopsis leaves but failed to form intracellular hyphae. Plant cells responded to Colletotrichum invasion attempts by the formation of PMR4/GSLSdependent papillary callose. Appressorium differentiation and melanization were insufficient to trigger this localized plant cell response, but analysis of nonpathogenic C. lagenarium mutants implicates penetration-peg formation as the inductive cue. We show that Arabidopsis PEN1 syntaxin controls timely accumulation of papillary callose but is functionally dispensable for effective preinvasion (penetration) resistance in nonhost interactions. Consistent with this observation, green fluorescent protein-tagged PEN1 did not accumulate at sites of attempted penetration by either adapted or nonadapted Colletotrichum species, in contrast to the pronounced focal accumulations of PEN1 associated with entry of powdery mildews. We observed extensive reorganization of actin microfilaments leading to polar orientation of large actin bundles towards appressorial contact sites in interactions with the nonadapted Colletotrichum species. Pharmacological inhibition of actin filament function indicates a functional contribution of the actin cytoskeleton for both preinvasion resistance and papillary callose formation. Interestingly the incidence of papilla formation at entry sites was greatly reduced in interactions with C higginsianum isolates, indicating that this adapted pathogen may suppress preinvasion resistance at the cell periphery.
引用
收藏
页码:270 / 279
页数:10
相关论文
共 37 条
[1]   Genetic characterization of five powdery mildew disease resistance loci in Arabidopsis thaliana [J].
Adam, L ;
Somerville, SC .
PLANT JOURNAL, 1996, 9 (03) :341-356
[2]  
Agrios G.N., 1988, Plant pathology, Vthird
[3]   The PEN1 syntaxin defines a novel cellular compartment upon fungal attack and is required for the timely assembly of papillae\ [J].
Assaad, FF ;
Qiu, JL ;
Youngs, H ;
Ehrhardt, D ;
Zimmerli, L ;
Kalde, M ;
Wanner, G ;
Peck, SC ;
Edwards, H ;
Ramonell, K ;
Somerville, CR ;
Thordal-Christensen, H .
MOLECULAR BIOLOGY OF THE CELL, 2004, 15 (11) :5118-5129
[4]   Optical measurements of invasive forces exerted by appressoria of a plant pathogenic fungus [J].
Bechinger, C ;
Giebel, KF ;
Schnell, M ;
Leiderer, P ;
Deising, HB ;
Bastmeyer, M .
SCIENCE, 1999, 285 (5435) :1896-1899
[5]   Recruitment and interaction dynamics of plant penetration resistance components in a plasma membrane microdomain [J].
Bhat, RA ;
Miklis, M ;
Schmelzer, E ;
Schulze-Lefert, P ;
Panstruga, R .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (08) :3135-3140
[7]   Localization of components of the oxidative cross-linking of glycoproteins and of callose synthesis in papillae formed during the interaction between non-pathogenic strains of Xanthomonas campestris and French bean mesophyll cells [J].
Brown, I ;
Trethowan, J ;
Kerry, M ;
Mansfield, J ;
Bolwell, GP .
PLANT JOURNAL, 1998, 15 (03) :333-343
[8]   The barley mlo gene: A novel control element of plant pathogen resistance [J].
Buschges, R ;
Hollricher, K ;
Panstruga, R ;
Simons, G ;
Wolter, M ;
Frijters, A ;
vanDaelen, R ;
vanderLee, T ;
Diergaarde, P ;
Groenendijk, J ;
Topsch, S ;
Vos, P ;
Salamini, F ;
Schulze-Lefert, P .
CELL, 1997, 88 (05) :695-705
[9]   SNARE-protein-mediated disease resistance at the plant cell wall [J].
Collins, NC ;
Thordal-Christensen, H ;
Lipka, V ;
Bau, S ;
Kombrink, E ;
Qiu, JL ;
Hückelhoven, R ;
Stein, M ;
Freialdenhoven, A ;
Somerville, SC ;
Schulze-Lefert, P .
NATURE, 2003, 425 (6961) :973-977
[10]  
Dhingra O.D., 1985, BASIC PLANT PATHOLOG