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解析新描述的纳卡穆拉芽孢杆菌的次生代谢组及生物防治潜力

Unravelling the secondary metabolome and biocontrol potential of the recently described species Bacillus nakamurai.

作者信息

Nimbeshaho François, Nihorimbere Gaspard, Arias Anthony Argüelles, Liénard Charlotte, Steels Sébastien, Nibasumba Anaclet, Nihorimbere Venant, Legrève Anne, Ongena Marc

机构信息

Microbial Processes and Interactions (MiPI), Teaching and Research Centre (TERRA), Gembloux Agro-BioTech, University of Liège, Avenue de la Faculté 2B, Gembloux 5030, Belgium; Laboratoire de Nutrition-Phytochimie, d'Ecologie et d'Environnement Appliquée, Centre Universitaire de Recherche et de Pédagogie Appliquées aux Sciences, Institut de Pédagogie Appliquée, Université du Burundi, Avenue de l'Unesco 2, P.O Box 1550, Bujumbura, Burundi.

Earth and Life Institute-Applied Microbiology, Université Catholique de Louvain, Croix du Sud 2, Louvain-la-Neuve 1348, Belgium; Research department, Institut des Sciences Agronomiques du Burundi (ISABU), Boulevard du Japon, Rohero 1, P.O Box 795, Bujumbura, Burundi.

出版信息

Microbiol Res. 2024 Nov;288:127841. doi: 10.1016/j.micres.2024.127841. Epub 2024 Aug 2.

DOI:10.1016/j.micres.2024.127841
PMID:39153465
Abstract

In the prospect of novel potential biocontrol agents, a new strain BDI-IS1 belonging to the recently described Bacillus nakamurai was selected for its strong in vitro antimicrobial activities against a range of bacterial and fungal phytopathogens. Genome mining coupled with metabolomics revealed that BDI-IS1 produces multiple non-ribosomal secondary metabolites including surfactin, iturin A, bacillaene, bacillibactin and bacilysin, together with some some ribosomally-synthesized and post-translationally modified peptides (RiPPs) such as plantazolicin, and potentially amylocyclicin, bacinapeptin and LCI. Reverse genetics further showed the specific involvement of some of these compounds in the antagonistic activity of the strain. Comparative genomics between the five already sequenced B. nakamurai strains showed that non-ribosomal products constitute the core metabolome of the species while RiPPs are more strain-specific. Although the secondary metabolome lacks some key bioactive metabolites found in B. velezensis, greenhouse experiments show that B. nakamurai BDI-IS1 is able to protect tomato and maize plants against early blight and northern leaf blight caused by Alternaria solani and Exserohilum turcicum, respectively, at levels similar to or better than B. velezensis QST713. The reduction of these foliar diseases, following root or leaf application of the bacterial suspension demonstrates that BDI-IS1 can act by direct antibiosis and by inducing plant defence mechanisms. These findings indicate that B. nakamurai BDI-IS1 can be considered as a good candidate for biocontrol of plant diseases prevailing in tropical regions, and encourage further research into its spectrum of activity, its requirements and the conditions needed to ensure its efficacy.

摘要

在寻找新型潜在生物防治剂的过程中,一种新菌株BDI-IS1被选中,它属于最近描述的中村芽孢杆菌,对多种细菌和真菌植物病原体具有很强的体外抗菌活性。基因组挖掘与代谢组学相结合表明,BDI-IS1产生多种非核糖体次生代谢产物,包括表面活性素、伊枯草菌素A、芽孢杆菌烯、杆菌铁载体和芽孢溶素,以及一些核糖体合成和翻译后修饰的肽(RiPPs),如植物抗毒素,还有可能的淀粉环肽、芽孢菌素和LCI。反向遗传学进一步表明,其中一些化合物在该菌株的拮抗活性中具有特定作用。对已测序的5株中村芽孢杆菌菌株进行比较基因组学分析表明,非核糖体产物构成了该物种的核心代谢组,而RiPPs则更具菌株特异性。尽管次生代谢组缺乏在贝莱斯芽孢杆菌中发现的一些关键生物活性代谢产物,但温室试验表明,中村芽孢杆菌BDI-IS1能够保护番茄和玉米植株免受分别由链格孢菌和大斑凸脐蠕孢引起的早疫病和大斑病,其保护水平与贝莱斯芽孢杆菌QST713相似或更好。在根部或叶片施用细菌悬浮液后,这些叶部病害的减轻表明BDI-IS1可以通过直接抗菌和诱导植物防御机制发挥作用。这些发现表明,中村芽孢杆菌BDI-IS1可被视为热带地区流行的植物病害生物防治的良好候选菌株,并鼓励对其活性谱、需求以及确保其有效性所需条件进行进一步研究。

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