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Reductive detoxification as a mechanism of fungal resistance to singlet oxygen-generating photosensitizers.

机译:还原性解毒是真菌对单线态产氧光敏剂的抗性机制。

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摘要

Fungi that are resistant or sensitive to the singlet oxygen-generating toxin cercosporin were assayed for their ability to detoxify it by reduction. Cercosporin reduction was assayed microscopically by using bandpass filters to differentiate between fluorescence emission from cercosporin and reduced cercosporin. Hyphae of the resistant Cercospora and Alternaria species emitted a green fluorescence, indicative of reduced cercosporin. Hyphae of nonviable cultures and of cercosporin-sensitive fungi did not reduce cercosporin. Sensitive fungi occasionally reduced cercosporin when incubated with reducing agents that protect against cercosporin toxicity. Cercosporin could not be efficiently photoreduced in the absence of the fungus. Cercospora species were also resistant to eosin Y but were sensitive to rose bengal. Microscopic observation demonstrated that Cercospora species were not capable of reducing rose bengal but were capable of reducing eosin Y. These observations were supported by in vitro electrochemical measurements that revealed the following order with respect to ease of reduction: cercosporin >> eosin Y > rose bengal. The formal redox potential (E 0') of cercosporin at pH 7.5 was found to be -0.14 V vs. the normal hydrogen electrode. We conclude that Cercospora species protect themselves against cercosporin by the reduction and detoxification of the toxin molecule.
机译:对对产生单线态氧的头孢菌素具有抗性或敏感性的真菌通过还原来解毒的能力得以测定。通过使用带通滤光片在显微镜下测定头孢菌素的还原,以区分头孢菌素的荧光发射和还原的头孢菌素。抗性Cercospora和Alternaria菌丝的绿色荧光发出绿色荧光,表明cercosporin减少。不能存活的培养物和对尾孢菌素敏感的真菌的菌丝并没有减少尾孢菌素。当与可预防头孢菌素毒性的还原剂一起孵育时,敏感真菌有时会降低头孢菌素。在没有真菌的情况下,尾孢菌素不能被有效地光还原。尾孢菌种也对曙红Y产生抗性,但对玫瑰红敏感。显微镜观察表明Cercospora物种不能还原玫瑰红,但能够还原曙红Y。这些观察结果得到体外电化学测量的支持,该测量显示出关于还原的容易性的以下顺序:cercosporin >>曙红Y>玫瑰红。相对于正常氢电极,在pH 7.5下,头孢菌素的形式氧化还原电势(E 0')为-0.14V。我们得出的结论是,尾孢菌种通过减少和排毒毒素分子来保护自己免受尾孢菌素的侵害。

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