Robbertse Barbara, Yoder O C, Nguyen Anita, Schoch Conrad L, Turgeon B Gillian
Torrey Mesa Research Institute, 3115 Merryfield Row, San Diego, CA 92122, USA.
Mol Plant Microbe Interact. 2003 Nov;16(11):1013-21. doi: 10.1094/MPMI.2003.16.11.1013.
The genome of the maize pathogen Cochliobolus heterostrophus encodes three unlinked monofunctional catalase-encoding (CAT) genes that singly or in combination could offer protection against the harmful effects of oxidative stress. Phylogenetic analysis placed the CAT2 and CAT3 proteins in a cluster with large subunit catalases (CAT3 has a secretory signal sequence and was grouped with known secreted catalases), whereas CAT1 clustered with small subunit catalases. Single, double, and triple cat mutants were created and screened for sensitivity to hydrogen peroxide and altered virulence on maize. All mutants deficient in CAT3 had enhanced sensitivity to hydrogen peroxide, as compared with wild type or with mutants deficient in CAT1, CAT2, or both. All catalase-deficient mutants had normal virulence to maize. Thus, the secreted CAT3 protein protects the fungus from oxidative stress during vegetative growth, but members of this enzyme family, alone or in combination, are not essential for virulence.
玉米病原体玉米大斑病菌(Cochliobolus heterostrophus)的基因组编码三个不连锁的单功能过氧化氢酶编码(CAT)基因,这些基因单独或组合起来可以提供针对氧化应激有害影响的保护。系统发育分析将CAT2和CAT3蛋白与大亚基过氧化氢酶聚为一类(CAT3有一个分泌信号序列,并与已知的分泌型过氧化氢酶归为一组),而CAT1则与小亚基过氧化氢酶聚为一类。构建了单、双、三cat突变体,并筛选它们对过氧化氢的敏感性以及在玉米上致病性的改变。与野生型或缺乏CAT1、CAT2或两者的突变体相比,所有缺乏CAT3的突变体对过氧化氢的敏感性增强。所有过氧化氢酶缺陷型突变体对玉米的致病性均正常。因此,分泌型CAT3蛋白在营养生长期间保护真菌免受氧化应激,但该酶家族的成员单独或组合起来对于致病性并非必不可少。