TY - JOUR
T1 - Mutations in Ror1 and Ror2 genes cause modification of hydrogen peroxide accumulation in mlo-barley under attack from the powdery mildew fungus
AU - Hückelhoven, Ralph
AU - Trujillo, Marco
AU - Kogel, Karl Heinz
PY - 2000/9
Y1 - 2000/9
N2 - Race nonspecific resistance of barley against the barley powdery mildew fungus (Blumeria Graminis f.sp. Hordei, Speer, Bgh) is mediated by recessive mlo alleles and is controlled by at least two additional genes 'required for mlo-specified disease resistance' (Ror1 and Ror2). The pathogenesis-related accumulation of hydrogen peroxide (H2O2) was comparatively analysed in a susceptible barley line (Hordeum vulgare L. Cv Ingrid, genotype Mlo Ror1, Ror2), a resistant Ingrid backcross line carrying the mutant allele mlo5 (BCIngrid-mlo5, genotype mlo5 Ror1 Ror2), and in the moderately susceptible mutants A44 and A89 (genotypes mlo5 Ror1 ror2 and mlo5 ror1-2 Ror2, respectively). In situ localization of H2O2 was performed by microscopic detec- tion of 3,3-diaminobenzidine (DAB) polymerization, In BCIngridmlo5, penetration resistance against Bgh attack was closely correlated to H2O2 accumulation in cytoplasmic aggregates and cell wall appositions beneath the appressorium. In contrast, H2O2 accumulation was almost completely absent in susceptible Ingrid. Lines with mutations in Ror genes showed less H2O2 accumulation beneath appressoria, but more interaction sites with whole cell H2O2 accumulation and hypersensitive cell death response than resistant BCIngrid-mlo5. Thus, mutations in Ron or Ror2 genes influence the cellular pattern of H2O2 accumulation in mlo plants attacked by Bgh. The data support the hypothesis that H2O2 accumulation is involved in resistance to fungal penetration.
AB - Race nonspecific resistance of barley against the barley powdery mildew fungus (Blumeria Graminis f.sp. Hordei, Speer, Bgh) is mediated by recessive mlo alleles and is controlled by at least two additional genes 'required for mlo-specified disease resistance' (Ror1 and Ror2). The pathogenesis-related accumulation of hydrogen peroxide (H2O2) was comparatively analysed in a susceptible barley line (Hordeum vulgare L. Cv Ingrid, genotype Mlo Ror1, Ror2), a resistant Ingrid backcross line carrying the mutant allele mlo5 (BCIngrid-mlo5, genotype mlo5 Ror1 Ror2), and in the moderately susceptible mutants A44 and A89 (genotypes mlo5 Ror1 ror2 and mlo5 ror1-2 Ror2, respectively). In situ localization of H2O2 was performed by microscopic detec- tion of 3,3-diaminobenzidine (DAB) polymerization, In BCIngridmlo5, penetration resistance against Bgh attack was closely correlated to H2O2 accumulation in cytoplasmic aggregates and cell wall appositions beneath the appressorium. In contrast, H2O2 accumulation was almost completely absent in susceptible Ingrid. Lines with mutations in Ror genes showed less H2O2 accumulation beneath appressoria, but more interaction sites with whole cell H2O2 accumulation and hypersensitive cell death response than resistant BCIngrid-mlo5. Thus, mutations in Ron or Ror2 genes influence the cellular pattern of H2O2 accumulation in mlo plants attacked by Bgh. The data support the hypothesis that H2O2 accumulation is involved in resistance to fungal penetration.
UR - http://www.scopus.com/inward/record.url?scp=0000416860&partnerID=8YFLogxK
U2 - 10.1046/j.1364-3703.2000.00032.x
DO - 10.1046/j.1364-3703.2000.00032.x
M3 - Article
AN - SCOPUS:0000416860
SN - 1464-6722
VL - 1
SP - 287
EP - 292
JO - Molecular Plant Pathology
JF - Molecular Plant Pathology
IS - 5
ER -