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Distribution and Evolution of Nonribosomal Peptide Synthetase Gene Clusters in the Ceratocystidaceae

机译:核囊藻科中非核糖体肽合成酶基因簇的分布与进化

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摘要

In filamentous fungi, genes in secondary metabolite biosynthetic pathways are generally clustered. In the case of those pathways involved in nonribosomal peptide production, a nonribosomal peptide synthetase (NRPS) gene is commonly found as a main element of the cluster. Large multifunctional enzymes are encoded by members of this gene family that produce a broad spectrum of bioactive compounds. In this research, we applied genome-based identification of nonribosomal peptide biosynthetic gene clusters in the family Ceratocystidaceae. For this purpose, we used the whole genome sequences of species from the genera Ceratocystis, Davidsoniella, Thielaviopsis, Endoconidiophora, Bretziella, Huntiella, and Ambrosiella. To identify and characterize the clusters, different bioinformatics and phylogenetic approaches, as well as PCR-based methods were used. In all genomes studied, two highly conserved NRPS genes (one monomodular and one multimodular) were identified and their potential products were predicted to be siderophores. Expression analysis of two Huntiella species (H. moniliformis and H. omanensis) confirmed the accuracy of the annotations and proved that the genes in both clusters are expressed. Furthermore, a phylogenetic analysis showed that both NRPS genes of the Ceratocystidaceae formed distinct and well supported clades in their respective phylograms, where they grouped with other known NRPSs involved in siderophore production. Overall, these findings improve our understanding of the diversity and evolution of NRPS biosynthetic pathways in the family Ceratocystidaceae.
机译:在丝状真菌中,次级代谢产物生物合成途径中的基因通常是聚类的。在涉及非核糖体肽产生的那些途径的情况下,通常发现非核糖体肽合成酶(NRPS)基因是该簇的主要成分。大型多功能酶由该基因家族的成员编码,产生广泛的生物活性化合物。在这项研究中,我们应用了基于基因组的非核糖体肽类生物合成基因簇的鉴定。为了这个目的,我们使用了Ceratocystis,Davidsoniella,Thielaviopsis,Endoconidiophora,Bretziella,Huntiella和Ambrosiella属的物种的全基因组序列。为了鉴定和表征簇,使用了不同的生物信息学和系统发育方法以及基于PCR的方法。在所有研究的基因组中,鉴定出两个高度保守的NRPS基因(一个单模块和一个多模块),其潜在产物被预测为铁载体。对两种Huntiella物种(H. moniliformis和H. omanensis)的表达分析证实了注释的准确性,并证明了两个簇中的基因均表达。此外,系统发育分析表明,角藻科的两个NRPS基因在其各自的系统谱图中均形成了独特且得到良好支持的进化枝,并与参与铁载体生产的其他已知NRPS进行了分组。总体而言,这些发现提高了我们对角藻科植物NRPS生物合成途径的多样性和进化的理解。

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