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十字花科植物抗毒素wasalexin A和B在植物致病真菌黄斑小球腔菌中的代谢

Metabolism of the crucifer phytoalexins wasalexin A and B in the plant pathogenic fungus Leptosphaeria maculans.

作者信息

Pedras M Soledade C, Suchý Mojmír

机构信息

Department of Chemistry, University of Saskatchewan, 110 Science Place, Saskatoon, SK, Canada S7N 5C9.

出版信息

Org Biomol Chem. 2006 Sep 21;4(18):3526-35. doi: 10.1039/b609367a. Epub 2006 Aug 14.

Abstract

Wasalexins A and B are crucifer phytoalexins produced by two substantially different plant species, a wild species abundant in the Canadian prairies and a condiment plant widely cultivated in Japan. Interestingly, both plant species are resistant to an economically important fungal plant pathogen, the blackleg fungus [Leptosphaeria maculans (Desm.) Ces. et de Not., asexual stage Phoma lingam (Tode ex Fr.) Desm.]. The transformation of wasalexins A and B in cultures of isolates of L. maculans, an isolate highly virulent towards canola (BJ 125) and a less common isolate which is virulent towards wasabi (Laird 2/Mayfair 2) was investigated. It was established that both fungal isolates are able to efficiently metabolize and detoxify wasalexins A and B through reduction in the case of wasalexin A or through hydrolysis followed by reduction in the case of wasalexin B. Moreover, a close structural analogue of wasalexins, which does not occur naturally, was also found to be reduced in cultures of L. maculans. The structures of the new metabolic products were elucidated using spectroscopic methods and were confirmed by synthesis. Bioassays indicated that the biotransformation of wasalexins is a detoxification process that may contribute to the aggressive nature of these fungal isolates towards plants that produce wasalexins.

摘要

芥末菌素A和B是由两种截然不同的植物产生的十字花科植物抗毒素,一种是在加拿大大草原上大量生长的野生植物,另一种是在日本广泛种植的调味品植物。有趣的是,这两种植物都对一种具有重要经济意义的真菌性植物病原体——黑胫病菌[大茎点菌(Leptosphaeria maculans (Desm.) Ces. et de Not.),无性阶段为十字花科茎点霉(Phoma lingam (Tode ex Fr.) Desm.)]具有抗性。研究了芥末菌素A和B在大茎点菌分离株培养物中的转化情况,其中包括对油菜具有高毒力的分离株(BJ 125)和对芥末具有毒力的较罕见分离株(Laird 2/Mayfair 2)。结果表明,两种真菌分离株都能够通过对芥末菌素A进行还原或对芥末菌素B先进行水解然后再还原,从而有效地代谢和解毒芥末菌素A和B。此外,还发现一种天然不存在的芥末菌素紧密结构类似物在大茎点菌培养物中也会被还原。利用光谱方法阐明了新代谢产物的结构,并通过合成进行了确认。生物测定表明,芥末菌素的生物转化是一个解毒过程,这可能有助于这些真菌分离株对产生芥末菌素的植物具有侵袭性。

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