Department of Chemistry, University of Manitoba, Winnipeg, R3T 2N2, Canada.
J Ind Microbiol Biotechnol. 2018 Dec;45(12):1067-1081. doi: 10.1007/s10295-018-2080-y. Epub 2018 Sep 11.
Lichens are fungi that form symbiotic partnerships with algae. Although lichens produce diverse polyketides, difficulties in establishing and maintaining lichen cultures have prohibited detailed studies of their biosynthetic pathways. Creative, albeit non-definitive, methods have been developed to assign function to biosynthetic gene clusters in lieu of techniques such as gene knockout and heterologous expressions that are commonly applied to easily cultivatable organisms. We review a total of 81 completely sequenced polyketide synthase (PKS) genes from lichenizing fungi, comprising to our best efforts all complete and reported PKS genes in lichenizing fungi to date. This review provides an overview of the approaches used to locate and sequence PKS genes in lichen genomes, current approaches to assign function to lichen PKS gene clusters, and what polyketides are proposed to be biosynthesized by these PKS. We conclude with remarks on prospects for genomics-based natural products discovery in lichens. We hope that this review will serve as a guide to ongoing research efforts on polyketide biosynthesis in lichenizing fungi.
地衣是与藻类形成共生关系的真菌。尽管地衣产生了多种多样的聚酮化合物,但由于难以建立和维持地衣培养物,其生物合成途径的详细研究受到了限制。为了给生物合成基因簇赋予功能,人们开发了一些富有创意的方法(尽管不是定论),而不是像基因敲除和异源表达等常用于易培养生物的技术。我们总共综述了 81 个来自地衣真菌的完全测序的聚酮合酶(PKS)基因,这些基因是我们迄今为止在地衣真菌中发现的所有完整和已报道的 PKS 基因。本文综述了在地衣基因组中定位和测序 PKS 基因的方法、当前赋予地衣 PKS 基因簇功能的方法,以及这些 PKS 被提议合成的聚酮化合物。最后,我们对地衣中基于基因组学的天然产物发现的前景进行了评论。我们希望这篇综述能对地衣化真菌中聚酮生物合成的研究起到指导作用。