Upchurch Robert G, Rose Mark S, Eweida Mohamed, Callahan Terrence M
Department of Plant Pathology, North Carolina State University, Raleigh, NC 27695, USA.
Curr Genet. 2002 Apr;41(1):25-30. doi: 10.1007/s00294-002-0280-4. Epub 2002 Apr 3.
Cercosporin is a toxic polyketide produced by many phytopathogenic members of the fungal genus Cercospora. Cercospora species, themselves, exhibit the highest level of self-resistance to this almost universally toxic photosensitizer. Although the mechanism of cercosporin self-resistance is multi-faceted, partial resistance does appear to be provided by the encoded product of CFP ( cercosporin facilitator protein), a gene recently isolated from the pathogen of soybean, C. kikuchii. CFP has significant similarity to the major facilitator superfamily of integral membrane transport proteins. We expressed CFP in the cercosporin non-producing, cercosporin-sensitive fungus, Cochliobolus heterostrophus, in order to assess the transport activity of CFP and the contribution of CFP to cercosporin resistance in a fungal species free of endogenous toxin production. Expression of the CFP transgene in this fungus results in increased resistance to cercosporin due, apparently, to its export out of the fungus.
尾孢菌素是一种由尾孢菌属许多植物病原真菌成员产生的有毒聚酮化合物。尾孢菌属自身对这种几乎具有普遍毒性的光敏剂表现出最高水平的自我抗性。尽管尾孢菌素自我抗性的机制是多方面的,但CFP(尾孢菌素促进蛋白)的编码产物似乎确实提供了部分抗性,CFP是最近从大豆病原菌菊池尾孢菌中分离出的一个基因。CFP与完整膜转运蛋白的主要促进剂超家族具有显著相似性。我们在不产生尾孢菌素、对尾孢菌素敏感的真菌——异旋孢腔菌中表达CFP,以便在没有内源性毒素产生的真菌物种中评估CFP的转运活性以及CFP对尾孢菌素抗性的贡献。在这种真菌中CFP转基因的表达导致对尾孢菌素的抗性增加,显然这是由于它被转运出了真菌。