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CPTF1是一种类似CREB的转录因子,参与植物病原体麦角菌的氧化应激反应,并调节其宿主黑麦中的活性氧水平。

CPTF1, a CREB-like transcription factor, is involved in the oxidative stress response in the phytopathogen Claviceps purpurea and modulates ROS level in its host Secale cereale.

作者信息

Nathues Eva, Joshi Suchitra, Tenberge Klaus B, von den Driesch Marcell, Oeser Birgitt, Bäumer Nicole, Mihlan Martina, Tudzynski Paul

机构信息

Institut für Botanik, Westfälische Wilhelms-Universität, Schlossgarten 3, D-48149 Münster, Germany.

出版信息

Mol Plant Microbe Interact. 2004 Apr;17(4):383-93. doi: 10.1094/MPMI.2004.17.4.383.

Abstract

CPTF1, a transcription factor with significant homology to ATF/CREB bZIP factors, was identified during an expressed sequence tag (EST) analysis of in planta-expressed genes of the phytopathogen Claviceps purpurea. Using a gene-replacement approach, deletion mutants of cptf1 were created. Expression studies in axenic culture showed that the H2O2-inducible gene cpcat1 (encoding a secreted catalase) had a reduced basal expression level and no longer responded to oxidative stress in the delta cptf1 mutant. Biochemical analyses indicated that CPTF1 is a general regulator of catalase activity. Delta cptf1 mutants showed significantly reduced virulence on rye. Electron microscopical in situ localization revealed significant amounts of H2O2 in delta cptf1-infected rye epidermal tissues, indicating that the plant tissue displayed an oxidative burst-like reaction, an event not detected in wild-type infections. These data indicate that CPTF1 is involved not only in oxidative stress response in the fungus but also in modulation of the plant's defense reactions.

摘要

CPTF1是一种与ATF/CREB bZIP因子具有显著同源性的转录因子,它是在对植物病原体麦角菌在植物中表达的基因进行表达序列标签(EST)分析时被鉴定出来的。采用基因替换方法构建了cptf1的缺失突变体。在无菌培养中的表达研究表明,H2O2诱导基因cpcat1(编码一种分泌型过氧化氢酶)在δcptf1突变体中的基础表达水平降低,并且不再对氧化应激作出反应。生化分析表明CPTF1是过氧化氢酶活性的一般调节因子。δcptf1突变体在黑麦上的毒力显著降低。电子显微镜原位定位显示,在δcptf1感染的黑麦表皮组织中有大量H2O2,这表明植物组织表现出类似氧化爆发的反应,而在野生型感染中未检测到这一现象。这些数据表明,CPTF1不仅参与真菌的氧化应激反应,还参与调节植物的防御反应。

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