Catalase Activity Contributes to the High Virulence of the Erwinia amylovora TS3128 Strain

  • Park, Yoo-Seol
  • Choi, Jeong Ho
  • Kim, Yeon Ju
  • Kim, Do Hun
  • Park, Duck Hwan
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초록

One of the earlier responses among plant defenses against phytopathogens is an oxidative burst that rapidly produces reactive oxygen species (ROS). Erwinia amylovora, the causal agent of fire blight in rosaceous plants, induces ROS in host immunity and uses it to invade plant tissues. We hypothesized that the detoxification capacity of H2O2 among ROS would vary among E. amylovora strains, affecting their survival and virulence in/on host plants. We identified E. amylovora TS3128 strain as having the highest minimum inhibitory concentration by catalase activity compared with other strains (TS3315, ATCC15580, and LMG2068). This high catalase activity of TS3128 was correlated with the detoxification of exogenous H2O2 by high expression levels of catalase genes katA and katG. However, the katA gene was observed to play a major role, as demonstrated by mutants lacking each gene. Finally, this process was confirmed to be related to the higher virulence of this strain compared with other strains in an immature apple fruit assay. We also confirmed that the high virulence of TS3128 was due to higher expression levels of catalase genes, the type III secretion system apparatus, and its effector gene under oxidative stress conditions. Our results reveal significant differences in catalase activity among the E. amylovora strains, correlating with their virulence levels through well-known virulence factors, amylovoran, and type III secretion system effector proteins in E. amylovora.

키워드

applecatalase<italic>Erwinia amylovora</italic>fire blighthydrogen peroxideT3SSFIRE BLIGHT DISEASELIPID-PEROXIDATIONHYDROGEN-PEROXIDEOXIDATIVE STRESSAPPLEINVOLVEMENTPEARMECHANISMSINFECTIONREVEALS
제목
Catalase Activity Contributes to the High Virulence of the Erwinia amylovora TS3128 Strain
저자
Park, Yoo-SeolChoi, Jeong HoKim, Yeon JuKim, Do HunPark, Duck Hwan
DOI
10.1094/PHYTO-01-25-0010-R
발행일
2025-10-28
유형
Article
저널명
Phytopathology
115
11
페이지
1437 ~ 1446