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Comparison of Ergot Alkaloid Biosynthesis Gene Clusters in Claviceps Species Indicates Loss of Late Pathway Steps in Evolution of C. fusiformis

机译:麦角菌属物种麦角生物碱生物合成基因簇的比较表明梭状芽胞杆菌进化的后期途径步骤的损失。

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摘要

The grass parasites Claviceps purpurea and Claviceps fusiformis produce ergot alkaloids (EA) in planta and in submerged culture. Whereas EA synthesis (EAS) in C. purpurea proceeds via clavine intermediates to lysergic acid and the complex ergopeptines, C. fusiformis produces only agroclavine and elymoclavine. In C. purpurea the EAS gene (EAS) cluster includes dmaW (encoding the first pathway step), cloA (elymoclavine oxidation to lysergic acid), and the lpsA/lpsB genes (ergopeptine formation). We analyzed the corresponding C. fusiformis EAS cluster to investigate the evolutionary basis for chemotypic differences between the Claviceps species. Other than three peptide synthetase genes (lpsC and the tandem paralogues lpsA1 and lpsA2), homologues of all C. purpurea EAS genes were identified in C. fusiformis, including homologues of lpsB and cloA, which in C. purpurea encode enzymes for steps after clavine synthesis. Rearrangement of the cluster was evident around lpsB, which is truncated in C. fusiformis. This and several frameshift mutations render CflpsB a pseudogene (CflpsBΨ). No obvious inactivating mutation was identified in CfcloA. All C. fusiformis EAS genes, including CflpsBΨ and CfcloA, were expressed in culture. Cross-complementation analyses demonstrated that CfcloA and CflpsBΨ were expressed in C. purpurea but did not encode functional enzymes. In contrast, CpcloA catalyzed lysergic acid biosynthesis in C. fusiformis, indicating that C. fusiformis terminates its EAS pathway at elymoclavine because the cloA gene product is inactive. We propose that the C. fusiformis EAS cluster evolved from a more complete cluster by loss of some lps genes and by rearrangements and mutations inactivating lpsB and cloA.
机译:禾本科寄生虫Claviceps purpurea和Claviceps fusiformis在植物和深水养殖中产生麦角生物碱(EA)。紫杉中的EA合成(EAS)经由锁骨中间产物进行为麦角酸和复杂的麦角肽碱,而梭形梭状芽胞杆菌仅产生农锁骨和乙锁骨。在紫花念珠菌中,EAS基因(EAS)簇包括dmaW(编码第一个途径步骤),cloA(将锁骨环氧化为麦角酸)和lpsA / lpsB基因(麦角肽碱形成)。我们分析了相应的C. fusiformis EAS集群,以研究锁虫物种之间化学型差异的进化基础。除了三个肽合成酶基因(lpsC和串联旁系同源物lpsA1和lpsA2)之外,在梭状芽胞杆菌中还鉴定了所有紫氏梭菌EAS基因的同源物,包括 lpsB cloA ,在 C中。紫癜编码锁骨环合成后的步骤的酶。簇的重新排列在 lpsB 周围很明显,在 C中被截断。 fusiformis 。这个和几个移码突变使Cf lpsB 成为伪基因(Cf lpsB Ψ )。 Cf cloA 中未发现明显的失活突变。所有 C。在培养中表达了梭状芽孢杆菌EAS 基因,包括Cf lpsB Ψ 和Cf cloA 。交叉互补分析表明Cf cloA 和Cf lpsB Ψ C中表达。紫癜,但不编码功能性酶。相反,Cp cloA C中催化了麦角酸的生物合成。 fusiformis ,表示 C。 fusiformis 在Elymoclavine终止了EAS途径,因为 cloA 基因产物没有活性。我们建议使用 C。 fusiformis EAS 簇通过丢失一些 lps 基因以及通过重排和突变使 lpsB cloA 失活而从更完整的簇中进化而来。

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