Department of Biology, University of Regina, 3737 Wascana Parkway, Regina, Saskatchewan S4S0A2, Canada.
Department of Biology, University of Regina, 3737 Wascana Parkway, Regina, Saskatchewan S4S0A2, Canada.
Microbiol Res. 2024 Dec;289:127923. doi: 10.1016/j.micres.2024.127923. Epub 2024 Sep 26.
With the rise of antimicrobial resistance, there is high demand for novel antimicrobials to combat multi-drug resistant pathogens. The bacterial genus Pantoea produces a diversity of antimicrobial natural products effective against a wide range of bacterial and fungal targets. These antimicrobials are synthesized by specialized biosynthetic gene clusters that have unique distributions across Pantoea as well as several other genera outside of the Erwiniaceae. Phylogenetic and genomic evidence shows that these clusters can mobilize within and between species and potentially between genera. Pantoea antimicrobials belong to unique structural classes with diverse mechanisms of action, but despite their potential in antagonizing a wide variety of plant, human, and animal pathogens, little is known about many of these metabolites and how they function. This review will explore the known antimicrobials produced by Pantoea: agglomerins, andrimid, D-alanylgriseoluteic acid, dapdiamide, herbicolins, pantocins, and the various Pantoea Natural Products (PNPs). It will include information on the structure of each compound, their genetic basis, biosynthesis, mechanism of action, spectrum of activity, and distribution, highlighting the significance of Pantoea antimicrobials as potential therapeutics and for applications in biocontrol.
随着抗菌药物耐药性的出现,人们迫切需要新型抗菌药物来对抗多药耐药病原体。泛菌属产生了多种抗菌天然产物,对广泛的细菌和真菌靶标有效。这些抗生素是由专门的生物合成基因簇合成的,这些基因簇在泛菌属以及肠杆菌科以外的几个属中具有独特的分布。系统发育和基因组证据表明,这些簇可以在种内和种间以及潜在的属间转移。泛菌属抗生素属于具有不同作用机制的独特结构类别,但尽管它们在拮抗各种植物、人类和动物病原体方面具有潜力,但对许多这些代谢物及其功能知之甚少。本综述将探讨泛菌属产生的已知抗生素:聚集素、andrimid、D-丙氨酰基高丝氨酸内酯、dapdiamide、herbicolins、pantocins 和各种泛菌属天然产物 (PNPs)。将包括每个化合物的结构、遗传基础、生物合成、作用机制、活性谱和分布信息,强调泛菌属抗生素作为潜在治疗药物和在生物防治中的应用的重要性。