Li, HangHu, JinyuWei, HaochenPeter, SolomonVuong, DanielLacey, EStubbs, Keith APiggott, Andrew M.Chooi, Yit-Heng2019-06-211523-7060http://hdl.handle.net/1885/164145A biosynthetic gene cluster that is significantly upregulated in the fungal wheat pathogen Parastagonospora nodorum during plant infection was reconstructed heterologously in Aspergillus nidulans. This led to the discovery of five new α-pyrone polyketides, alternapyrones B-F (2-6). Compounds 5 and 6, which contain a highly substituted dihydrofuran, exhibited phytotoxicity on wheat seed germination. It is demonstrated that only three enzymes, one highly reducing polyketide synthase and two multifunctional P450 oxygenases, are needed to synthesize the structurally complex products.This study was supported by an Australian Research Council (ARC) Discovery Project grant (DP170100228). H.L. and J.H. are supported by an Australian Government International Postgraduate Research Scholarship. Y.-H.C., K.A.S., and A.M.P. are ARC Future Fellows.application/pdfen-AU© 2018 American Chemical SocietyChemical Ecogenomics-Guided Discovery of Phytotoxic a-Pyrones from the Fungal Wheat Pathogen Parastagonospora nodorum201810.1021/acs.orglett.8b026172019-03-24