Xuan Luo, Xianhui Huang, Hongyun Cao, Xianping Bai, Xingyan Wang, Dan Xing, Xinbei Zhang, Wenkang Li, Haiping Ni, Jingwen Sun, Lin Zhong, Baohang Huang, Qing Sun, Qiang Tu, Huawei Xin, Hanna Chen
Plant-associated biocontrol bacteria play a pivotal role in advancing sustainable agriculture by minimizing the reliance on toxic chemical pesticides. The order Burkholderiales is an underexplored yet highly promising group of microorganisms, characterized by a broad ecological distribution and considerable potential for application in sustainable agricultural systems. In this study, we aimed to isolate and characterize a potential biocontrol strain belonging to Burkholderiales, with the goal of contributing to eco-friendly agricultural practices and mining previously unexploited secondary metabolites. A novel bacterial strain, Pseudoduganella sp. D-3-1, was isolated from Cangma Mountain and characterized to possess potent antifungal activity and a high iron-chelating capacity. Whole-genome sequencing revealed that its complete genome spans 6,875,892 bp and encodes 6035 predicted coding sequences (CDSs), including a complete violacein biosynthesis pathway. Genome mining uncovered a diverse array of secondary metabolite biosynthetic gene clusters (BGCs), notably a non-ribosomal peptide synthetase (NRPS) gene cluster, designated the pseudodubactin cluster, which encodes a catecholate-type siderophore structurally related to turnerbactin. Through high-resolution electrospray ionization mass spectrometry (HR-ESI-MS), gene knockout, heterologous expression, and bioinformatics analysis, four turnerbactin analogs (1-4) were identified for the first time from Pseudoduganella sp., including two novel compounds: pseudodubactin A (2), and pseudodubactin B (4). Additionally, HR-ESI-MS analysis detected two uncharacterized siderophores, designated as compound 5 and compound 6, that are structurally distinct from the turnerbactin analogs. These findings indicate that Pseudoduganella sp. D-3-1 is a promising source of bioactive natural products, particularly violacein and diverse siderophores, highlighting its potential as a biological control agent for sustainable and eco-friendly agriculture.