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生物合成基因簇的染色体组织,包括九个新物种的基因簇,表明粘细菌特殊代谢具有可塑性。

Chromosomal organization of biosynthetic gene clusters, including those of nine novel species, suggests plasticity of myxobacterial specialized metabolism.

作者信息

Ahearne Andrew, Phillips Kayleigh E, Knehans Thomas, Hoing Miranda, Dowd Scot E, Stevens David Cole

机构信息

Department of BioMolecular Sciences, School of Pharmacy, University of Mississippi, Oxford, MS, United States.

Molecular Research LP (MR DNA), Shallowater, TX, United States.

出版信息

Front Microbiol. 2023 Aug 3;14:1227206. doi: 10.3389/fmicb.2023.1227206. eCollection 2023.

Abstract

INTRODUCTION

Natural products discovered from bacteria provide critically needed therapeutic leads for drug discovery, and myxobacteria are an established source for metabolites with unique chemical scaffolds and biological activities. Myxobacterial genomes accommodate an exceptional number and variety of biosynthetic gene clusters (BGCs) which encode for features involved in specialized metabolism.

METHODS

In this study, we describe the collection, sequencing, and genome mining of 20 myxobacteria isolated from rhizospheric soil samples collected in North America.

RESULTS

Nine isolates were determined to be novel species of myxobacteria including representatives from the genera , and . Growth profiles, biochemical assays, and descriptions were provided for all proposed novel species. We assess the BGC content of all isolates and observe differences between Myxococcia and Polyangiia clusters.

DISCUSSION

Continued discovery and sequencing of novel myxobacteria from the environment provide BGCs for the genome mining pipeline. Utilizing complete or near-complete genome sequences, we compare the chromosomal organization of BGCs of related myxobacteria from various genera and suggest that the spatial proximity of hybrid, modular clusters contributes to the metabolic adaptability of myxobacteria.

摘要

引言

从细菌中发现的天然产物为药物研发提供了急需的治疗先导化合物,而粘细菌是具有独特化学骨架和生物活性的代谢产物的既定来源。粘细菌基因组包含数量异常众多且种类多样的生物合成基因簇(BGCs),这些基因簇编码参与特殊代谢的特征。

方法

在本研究中,我们描述了从北美采集的根际土壤样本中分离出的20株粘细菌的收集、测序和基因组挖掘。

结果

九株分离物被确定为粘细菌的新物种,包括 属、 属和 属的代表。为所有提议的新物种提供了生长曲线、生化分析和描述。我们评估了所有分离物的BGC含量,并观察到粘球菌目和多囊粘菌目簇之间的差异。

讨论

持续从环境中发现和测序新的粘细菌为基因组挖掘管道提供了BGCs。利用完整或近乎完整的基因组序列,我们比较了来自不同属的相关粘细菌的BGCs的染色体组织,并表明杂交、模块化簇的空间接近性有助于粘细菌的代谢适应性。

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