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Strobilurin biosynthesis in Basidiomycete fungi

机译:担子菌真菌中嗜球果伞素的合成

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摘要

Strobilurins from fungi are the inspiration for the creation of the β-methoxyacrylate class of agricultural fungicides. However, molecular details of the biosynthesis of strobilurins have remained cryptic. Here we report the sequence of genomes of two fungi that produce strobilurins and show that each contains a biosynthetic gene cluster, which encodes a highly reducing polyketide synthase with very unusual C-terminal hydrolase and methyltransferase domains. Expression of stpks1 in Aspergillus oryzae leads to the production of prestrobilurin A when the fermentation is supplemented with a benzoyl coenzyme A (CoA) analogue. This enables the discovery of a previously unobserved route to benzoyl CoA. Reconstruction of the gene cluster in A. oryzae leads to the formation of prestrobilurin A, and addition of the gene str9 encoding an FAD-dependent oxygenase leads to the key oxidative rearrangement responsible for the creation of the β-methoxyacrylate toxophore. Finally, two methyltransferases are required to complete the synthesis.
机译:来自真菌的嗜球果伞素是产生β-甲氧基丙烯酸酯类农业杀真菌剂的灵感。然而,嗜球果伞素的生物合成的分子细节仍然是不清楚的。在这里,我们报告了两种产生嗜球果伞菌素的真菌的基因组序列,并显示每个都包含一个生物合成基因簇,该簇编码具有非常不寻常的C末端水解酶和甲基转移酶结构域的高度还原的聚酮化合物合酶。当发酵中添加苯甲酰基辅酶A(CoA)类似物时,米曲霉中stpks1的表达会导致链球菌素A的产生。这使得能够发现以前未被发现的苯甲酰CoA途径。在米曲霉中基因簇的重建导致前星形胶质蛋白A的形成,而编码FAD依赖性加氧酶的基因str9的添加导致负责产生β-甲氧基丙烯酸类毒素的关键氧化重排。最后,需要两个甲基转移酶来完成合成。

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