Sweat Teresa A, Wolpert Thomas J
Department of Botany and Plant Pathology, Center for Genome Research and Biocomputing, Oregon State University, Corvallis, Oregon 97331-2902, USA.
Plant Cell. 2007 Feb;19(2):673-87. doi: 10.1105/tpc.106.047563. Epub 2007 Feb 23.
The fungus Cochliobolus victoriae causes Victoria blight of oats (Avena sativa) and is pathogenic due to its production of victorin, which induces programmed cell death in sensitive plants. Victorin sensitivity has been identified in Arabidopsis thaliana and is conferred by the dominant gene LOCUS ORCHESTRATING VICTORIN EFFECTS1 (LOV1), which encodes a coiled-coil-nucleotide binding site-leucine-rich repeat protein. We isolated 63 victorin-insensitive mutants, including 59 lov1 mutants and four locus of insensitivity to victorin1 (liv1) mutants. The LIV1 gene encodes thioredoxin h5 (ATTRX5), a member of a large family of disulfide oxidoreductases. To date, very few plant thioredoxins have been assigned specific, nonredundant functions. We found that the victorin response was highly specific to ATTRX5, as the closely related ATTRX3 could only partially compensate for loss of ATTRX5, even when overexpressed. We also created chimeric ATTRX5/ATTRX3 proteins, which identified the central portion of the protein as important for conferring specificity to ATTRX5. Furthermore, we found that ATTRX5, but not ATTRX3, is highly induced in sensitive Arabidopsis following victorin treatment. Finally, we determined that only the first of the two active-site Cys residues in ATTRX5 is required for the response to victorin, suggesting that ATTRX5 function in the victorin pathway involves an atypical mechanism of action.
真菌维多利亚旋孢腔菌会引发燕麦( Avena sativa )的维多利亚枯萎病,它具有致病性是因为能产生维克毒素,这种毒素会在敏感植物中诱导程序性细胞死亡。拟南芥中已鉴定出对维克毒素敏感,且这种敏感性由显性基因 LOCUS ORCHESTRATING VICTORIN EFFECTS1(LOV1)赋予,该基因编码一种卷曲螺旋 - 核苷酸结合位点 - 富含亮氨酸重复序列蛋白。我们分离出了63个对维克毒素不敏感的突变体,包括59个lov1突变体和4个维克毒素不敏感位点1(liv1)突变体。LIV1基因编码硫氧还蛋白h5(ATTRX5),它是二硫键氧化还原酶大家族的一员。迄今为止,很少有植物硫氧还蛋白被赋予特定的、非冗余的功能。我们发现对维克毒素的反应对ATTRX5具有高度特异性,因为与之密切相关的ATTRX3即使过表达也只能部分补偿ATTRX5的缺失。我们还构建了嵌合的ATTRX5/ATTRX3蛋白,确定了该蛋白的中央部分对赋予ATTRX5特异性很重要。此外,我们发现维克毒素处理后,敏感型拟南芥中ATTRX5高度诱导表达,而ATTRX3则不然。最后,我们确定ATTRX5中两个活性位点半胱氨酸残基中只有第一个对于对维克毒素的反应是必需的,这表明ATTRX5在维克毒素途径中的功能涉及一种非典型的作用机制。