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- W2895939791 endingPage "427" @default.
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- W2895939791 abstract "Fungi are a prolific source of bioactive compounds, some of which have been developed as essential medicines and life-enhancing drugs. Genome sequencing has revealed that fungi have the potential to produce considerably more natural products (NPs) than are typically observed in the laboratory. Recently, there have been significant advances in the identification, understanding, and engineering of fungal biosynthetic gene clusters (BGCs). This review briefly describes examples of the engineering of fungal NP biosynthesis at the global, pathway, and enzyme level using in vivo and in vitro approaches and refers to the range and scale of heterologous expression systems available, developments in combinatorial biosynthesis, progress in understanding how fungal BGCs are regulated, and the applications of these novel biosynthetic enzymes as biocatalysts." @default.
- W2895939791 created "2018-10-26" @default.
- W2895939791 creator A5020625441 @default.
- W2895939791 date "2019-04-01" @default.
- W2895939791 modified "2023-10-08" @default.
- W2895939791 title "Strategies for Engineering Natural Product Biosynthesis in Fungi" @default.
- W2895939791 cites W1807373836 @default.
- W2895939791 cites W1950563285 @default.
- W2895939791 cites W1963299105 @default.
- W2895939791 cites W1975828187 @default.
- W2895939791 cites W1990226486 @default.
- W2895939791 cites W1994444060 @default.
- W2895939791 cites W1996080350 @default.
- W2895939791 cites W1997815203 @default.
- W2895939791 cites W1998240064 @default.
- W2895939791 cites W2011373545 @default.
- W2895939791 cites W2039531605 @default.
- W2895939791 cites W2041507684 @default.
- W2895939791 cites W2063224770 @default.
- W2895939791 cites W2071581416 @default.
- W2895939791 cites W2108107434 @default.
- W2895939791 cites W2109728129 @default.
- W2895939791 cites W2126894726 @default.
- W2895939791 cites W2135874729 @default.
- W2895939791 cites W2147589871 @default.
- W2895939791 cites W2148566874 @default.
- W2895939791 cites W2148862809 @default.
- W2895939791 cites W2163086525 @default.
- W2895939791 cites W2166323054 @default.
- W2895939791 cites W2170358074 @default.
- W2895939791 cites W2178127499 @default.
- W2895939791 cites W2201339123 @default.
- W2895939791 cites W2231604154 @default.
- W2895939791 cites W2234173991 @default.
- W2895939791 cites W2256742438 @default.
- W2895939791 cites W2293215598 @default.
- W2895939791 cites W2295864864 @default.
- W2895939791 cites W2300943831 @default.
- W2895939791 cites W2301310270 @default.
- W2895939791 cites W2313145532 @default.
- W2895939791 cites W2315160004 @default.
- W2895939791 cites W2315769702 @default.
- W2895939791 cites W2316501922 @default.
- W2895939791 cites W2316565238 @default.
- W2895939791 cites W2322408166 @default.
- W2895939791 cites W2322992403 @default.
- W2895939791 cites W2330219559 @default.
- W2895939791 cites W2334054741 @default.
- W2895939791 cites W2341407354 @default.
- W2895939791 cites W2345198528 @default.
- W2895939791 cites W2346047962 @default.
- W2895939791 cites W2347637442 @default.
- W2895939791 cites W2430688210 @default.
- W2895939791 cites W2444206399 @default.
- W2895939791 cites W2510379005 @default.
- W2895939791 cites W2511704018 @default.
- W2895939791 cites W2514798302 @default.
- W2895939791 cites W2535268712 @default.
- W2895939791 cites W2540861638 @default.
- W2895939791 cites W2560259675 @default.
- W2895939791 cites W2562671096 @default.
- W2895939791 cites W2566284484 @default.
- W2895939791 cites W2570212416 @default.
- W2895939791 cites W2599994779 @default.
- W2895939791 cites W2604015395 @default.
- W2895939791 cites W2616993478 @default.
- W2895939791 cites W2617864780 @default.
- W2895939791 cites W2619829249 @default.
- W2895939791 cites W2626832796 @default.
- W2895939791 cites W2737492990 @default.
- W2895939791 cites W2740085246 @default.
- W2895939791 cites W2741562499 @default.
- W2895939791 cites W2742853062 @default.
- W2895939791 cites W2744312350 @default.
- W2895939791 cites W2746812046 @default.
- W2895939791 cites W2747962602 @default.
- W2895939791 cites W2755590767 @default.
- W2895939791 cites W2765523526 @default.
- W2895939791 cites W2768253435 @default.
- W2895939791 cites W2768367491 @default.
- W2895939791 cites W2769767315 @default.
- W2895939791 cites W2781305161 @default.
- W2895939791 cites W2787607673 @default.
- W2895939791 cites W2789540178 @default.
- W2895939791 cites W2790546589 @default.
- W2895939791 cites W2803234722 @default.
- W2895939791 cites W2803255321 @default.
- W2895939791 cites W2803399729 @default.
- W2895939791 cites W2952280526 @default.
- W2895939791 cites W2988290175 @default.
- W2895939791 cites W3006809070 @default.
- W2895939791 doi "https://doi.org/10.1016/j.tibtech.2018.09.003" @default.
- W2895939791 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30316556" @default.
- W2895939791 hasPublicationYear "2019" @default.
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