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来自玉米黑粉菌的具有抗真菌活性的分泌型纤维二糖脂的生物合成基因簇。

A biosynthetic gene cluster for a secreted cellobiose lipid with antifungal activity from Ustilago maydis.

作者信息

Teichmann Beate, Linne Uwe, Hewald Sandra, Marahiel Mohamed A, Bölker Michael

机构信息

Department of Biology, Philipps-University Marburg, D-35032 Marburg, Germany.

出版信息

Mol Microbiol. 2007 Oct;66(2):525-33. doi: 10.1111/j.1365-2958.2007.05941.x. Epub 2007 Sep 10.

Abstract

The phytopathogenic basidiomycetous fungus Ustilago maydis secretes large amounts of the glycolipid biosurfactant ustilagic acid (UA). UA consists of 15,16-dihydroxypalmitic or 2,15,16-trihydroxypalmitic acid, which is O-glycosidically linked to cellobiose at its terminal hydroxyl group. In addition, the cellobiose moiety is acetylated and acylated with a short-chain hydroxy fatty acid. We have identified a 58 kb spanning gene cluster that contains 12 open reading frames coding for most, if not all, enzymes needed for UA biosynthesis. Using a combination of genetic and mass spectrometric analysis we were able to assign functional roles to three of the proteins encoded by the gene cluster. This allowed us to propose a biosynthesis route for UA. The Ahd1 protein belongs to the family of non-haem diiron reductases and is required for alpha-hydroxylation of palmitic acid. Two P450 monooxygenases, Cyp1 and Cyp2, catalyse terminal and subterminal hydroxylation of palmitic acid. We could demonstrate that infection of tomato leaves by the plant pathogenic fungus Botrytis cinerea is prevented by co-inoculation with wild-type U. maydis sporidia. U. maydis mutants defective in UA biosynthesis were unable to inhibit B. cinerea infection indicating that UA secretion is critical for antagonistic activity.

摘要

植物病原担子菌玉米黑粉菌分泌大量糖脂生物表面活性剂黑粉菌酸(UA)。UA由15,16 - 二羟基棕榈酸或2,15,16 - 三羟基棕榈酸组成,其在末端羟基处与纤维二糖以O - 糖苷键相连。此外,纤维二糖部分被乙酰化并用短链羟基脂肪酸进行酰化。我们鉴定出一个跨度为58 kb的基因簇,其中包含12个开放阅读框,编码了UA生物合成所需的大部分(如果不是全部)酶。通过结合遗传分析和质谱分析,我们能够为该基因簇编码的三种蛋白质赋予功能角色。这使我们能够提出UA的生物合成途径。Ahd1蛋白属于非血红素双铁还原酶家族,是棕榈酸α - 羟基化所必需的。两种细胞色素P450单加氧酶Cyp1和Cyp2催化棕榈酸的末端和亚末端羟基化。我们可以证明,通过与野生型玉米黑粉菌担孢子共同接种,可以防止植物病原真菌灰葡萄孢对番茄叶片的感染。UA生物合成有缺陷的玉米黑粉菌突变体无法抑制灰葡萄孢的感染,这表明UA的分泌对于拮抗活性至关重要。

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