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基因组测序与挖掘扩展了溶杆菌属的天然产物库。

Genome sequencing and mining expand the naturalproduct repertoire of Lysobacter.

作者信息

Bierman Jeffrey J, Walker Mark C

机构信息

University of New Mexico.

出版信息

Res Sq. 2024 Sep 17:rs.3.rs-4939843. doi: 10.21203/rs.3.rs-4939843/v1.

Abstract

BACKGROUND

Compounds produced by living organisms serve as an important source of inspiration for the development of pharmaceuticals. A potential source of new natural products are bacteria from a genus with species that are known to produce bioactive natural products, but are relatively understudied. is a genus of bacteria that have attracted attention as possible biocontrol agents and are known to produce antibiotic natural products. To further explore the biosynthetic potential of , we sequenced the genomes of two species and performed genome mining studies on those and publicly available genomes.

RESULTS

In this study we produced draft genome sequences for and . We additionally examined 113 publicly available genomes and found that biosynthetic potential of individual species ranges broadly, with species having between 1 and nearly 20 biosynthetic gene clusters. Filtering for more complete genome assemblies and 9 or more biosynthetic gene clusters, we performed genome mining on 24 genomes. Within these genomes we identified 21 unique nonribosomal peptide, 11 unique hybrid polyketide/nonribosomal peptide, 4 unique polyketide, and 27 unique lanthipeptide biosynthetic gene clusters that produce uncharacterized compounds. Additionally, we tentatively identified the biosynthetic gene cluster in responsible for producing plusbacins, which has not been previously identified.

CONCLUSIONS

This study demonstrated that have a large repertoire of natural products that remain to be characterized. Additionally, we found that some species are substantially more biosynthetically gifted than others and that strains of the same species of have similar biosynthetic capacities.

摘要

背景

生物产生的化合物是药物开发的重要灵感来源。新天然产物的一个潜在来源是来自一个属的细菌,该属中的一些物种已知能产生生物活性天然产物,但相对研究较少。[具体细菌属名]是一类细菌,作为可能的生物防治剂受到关注,并且已知能产生抗生素天然产物。为了进一步探索[具体细菌属名]的生物合成潜力,我们对两个物种的基因组进行了测序,并对这些基因组以及公开可用的基因组进行了基因组挖掘研究。

结果

在本研究中,我们生成了[具体细菌属名]两个物种的基因组草图序列。我们还检查了113个公开可用的[具体细菌属名]基因组,发现单个物种的生物合成潜力差异很大,物种拥有1到近20个生物合成基因簇。筛选更完整的基因组组装体和9个或更多的生物合成基因簇后,我们对24个[具体细菌属名]基因组进行了基因组挖掘。在这些基因组中,我们鉴定出21个独特的非核糖体肽、11个独特的杂合聚酮/非核糖体肽、4个独特的聚酮和27个独特的羊毛硫肽生物合成基因簇,这些基因簇产生未表征的化合物。此外,我们初步鉴定了[具体细菌属名]中负责产生加西菌素的生物合成基因簇,该基因簇此前未被鉴定。

结论

本研究表明,[具体细菌属名]有大量有待表征的天然产物。此外,我们发现一些[具体细菌属名]物种在生物合成方面比其他物种更有天赋,并且同一[具体细菌属名]物种的菌株具有相似的生物合成能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1093/11451712/064696b799e3/nihpp-rs4939843v1-f0001.jpg

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