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Lichen Biosynthetic Gene Clusters Part II: Homology Mapping Suggests a Functional Diversity

机译:地衣生物合成基因集群第二部分:同源映射表明功能多样性

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Lichens are renowned for their diverse natural products though little is known of the genetic programming dictating lichen natural product biosynthesis. We sequenced the genome of i>Cladonia uncialis and profiled its secondary metabolite biosynthetic gene clusters. Through a homology searching approach, we can now propose specific functions for gene products as well as the biosynthetic pathways that are encoded in several of these gene clusters. This analysis revealed that the lichen genome encodes the required enzymes for patulin and betaenones A–C biosynthesis, fungal toxins not known to be produced by lichens. Within several gene clusters, some (but not all) genes are genetically similar to genes devoted to secondary metabolite biosynthesis in Fungi. These lichen clusters also contain accessory tailoring genes without such genetic similarity, suggesting that the encoded tailoring enzymes perform distinct chemical transformations. We hypothesize that i>C. uncialis gene clusters have evolved by shuffling components of ancestral fungal clusters to create new series of chemical steps, leading to the production of hitherto undiscovered derivatives of fungal secondary metabolites.
机译:虽然众所周知,地衣着名是他们多样化的天然产品,但遗传编程决定了地衣天然产物生物合成。我们测序了&lt中的基因组。uncalia undialis和突出的次级代谢物生物合成基因簇。通过同源性搜索方法,我们现在可以提出基因产品的特定功能以及在这些基因簇中的几种中编码的生物合成途径。该分析表明,地衣基因组编码了对鉴定和β-C生物合成的必需酶,未知的真菌毒素未被衣原体生产。在几个基因簇中,一些(但不是全部)基因在遗传上类似于致力于真菌中的次级代谢物生物合成的基因。这些地衣簇还含有没有这种遗传相似性的附件剪裁基因,表明编码的剪裁酶进行不同的化学转化。我们假设& i> c。 UncaIlis基因集群通过祖先真菌群组分的组分而发展,以创造新的一系列化学步骤,导致迄今为止的真菌次生代谢物的衍生物的生产。

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