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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Mitochondrial electron transfer in the wheat pathogenic fungus Septoria tritici: on the role of alternative respiratory enzymes in fungicide resistance
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Mitochondrial electron transfer in the wheat pathogenic fungus Septoria tritici: on the role of alternative respiratory enzymes in fungicide resistance

机译:小麦病原真菌线粒体线粒体中的线粒体电子转移:关于替代呼吸酶在抗真菌剂中的作用

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Certain phytopathogenic fungi are able to express alternative NADH- and quinol-oxidising enzymes that are insensitive to inhibitors of the mitochondrial respiratory Complexes I and III. To assess the extent to which such enzymes confer tolerance to respiration-targeted fungicides, an understanding of mitochondrial electron transfer in these species is required. An isolation procedure has been developed which results in intact, active and coupled mitochondria from the wheat pathogen Septoria tritici, as evidenced by morphological and kinetic data. Exogenous NADH, succinate and malate/glutamate are readily oxidised, the latter activity being only partly (approx. 70%) sensitive to rotenone. Of particular importance was the finding that azoxystrobin (a strobilurin fungicide) potently inhibits fungal respiration at the level of Complex III. In some S. tritici strains investigated, a small but significant part of the respiratory activity (approx. 10%) is insensitive to antimycin A and azoxystrobin. Such resistant activity is sensitive to octyl gallate, a specific inhibitor of the plant alternative oxidase. This enzyme, however, could not be detected immunologically. On the basis of the above findings, a conceptual mitochondrial electron transfer chain is presented. Data are discussed in terms of developmental and environmental regulation of the composition of this chain.
机译:某些植物病原真菌能够表达对线粒体呼吸复合物I和III抑制剂不敏感的替代性NADH-和喹诺酮氧化酶。为了评估此类酶赋予以呼吸为目标的杀真菌剂耐受性的程度,需要了解这些物种中的线粒体电子转移。已经开发出一种分离方法,该分离方法可从小麦病原体小麦黑穗病中得到完整,活跃和偶联的线粒体,如形态学和动力学数据所证明的。外源NADH,琥珀酸酯和苹果酸/谷氨酸很容易被氧化,后者的活性仅对鱼藤酮部分敏感(约70%)。尤为重要的发现是,嘧菌酯(一种球果霉素杀菌剂)可以在复合物III水平上有效抑制真菌呼吸。在一些调查过的小麦链霉菌菌株中,一小部分但很大一部分的呼吸活动(约10%)对抗霉素A和嘧菌酯不敏感。这种抗药性对没食子酸辛酯敏感,后者是植物替代氧化酶的特异性抑制剂。但是,该酶不能通过免疫学方法检测到。基于以上发现,提出了一种概念性的线粒体电子转移链。根据该链组成的发展和环境调节来讨论数据。

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