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Lipoxygenase inhibitors shift the yeast/mycelium dimorphism in Ceratocystis ulmi.

机译:脂氧合酶抑制剂可改变uleroCeratocystis ulmi中酵母/菌丝体的二态性。

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摘要

The yeast-mycelium dimorphism in Ceratocystis ulmi, the causative agent of Dutch elm disease, was switched by gossypol, nordihydroguaiaretic acid, and propylgallate. In each case the mycelial form was converted to the yeast form. These compounds are recognized lipoxygenase inhibitors. Inhibitors of cyclooxygenase and thromboxane synthetase did not cause mycelia to shift to the yeast form. We suggest the following two-part hypothesis: (i) that lipoxygenase is a target for antifungal antibiotics and (ii) that many phytoalexins (antimicrobial compounds of plant origin) are targeted toward fungal lipoxygenases. In addition, in a study to determine potential lipoxygenase substrates, a fatty acid analysis indicated that C. ulmi conidiospores contained high levels of oleic, linoleic, and linolenic acids but no arachidonic acid.
机译:荷兰榆病的病原体ulteroCeratocystis ulmi中的酵母菌丝体二态性被棉酚,去甲双氢愈创木酸和没食子酸丙酯所取代。在每种情况下,菌丝形式都转化为酵母形式。这些化合物是公认的脂氧合酶抑制剂。环氧合酶和血栓烷合成酶的抑制剂不会引起菌丝体转变为酵母形式。我们提出以下两部分的假设:(i)脂氧合酶是抗真菌抗生素的靶标,并且(ii)许多植物抗毒素(植物来源的抗菌化合物)都针对真菌脂氧合酶。此外,在一项确定潜在脂氧合酶底物的研究中,脂肪酸分析表明,乌尔曼锥虫分生孢子含有高含量的油酸,亚油酸和亚麻酸,但不含花生四烯酸。

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