开花樱桃芽孢杆菌防治气孔病的鉴定、鉴定及效果评价

Viet‐Cuong Han, N. Yu, Hyeok-jun Yoon, Neung-ho Ahn, Young Kyoung Son, Byoung-Hee Lee, Jin-Cheol Kim
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引用次数: 7

摘要

虽然对开花樱桃(FC)的空穴病(SH)的发病机制有一定的了解,但对空穴病的防治还缺乏研究。因此,我们在此研究了拮抗细菌对SH病原菌的体内外抑制活性,以及它们的生化特性和生物活性成分。两种产生生物表面活性剂的细菌拮抗剂,鉴定为velezensis芽孢杆菌JCK-1618和JCK-1696,通过其无细胞培养滤液(cfcf)在体外对细菌和真菌SH病原体的生长均有最好的抑制作用。这两种菌株还通过其抗菌扩散化合物和抗菌挥发性有机化合物(VOCs)的作用强烈地抑制了病原体的生长。两菌株的粗酶、溶剂提取物和生物表面活性剂均表现出抗菌活性。液相色谱/电喷雾电离飞行时间质谱分析显示,这两种拮抗剂产生三个环脂肽,包括iturin A、fengycin A和surfactin,以及一个聚酮,oxydifficidin。在离体叶片试验中,氟氯烃叶片与氟氯烃的预处理和共处理分别大大降低了烟草表occum tobaicum和Bukholderia污染物引起的叶斑的严重程度。此外,两种拮抗剂产生吲哚-3-乙酸、铁载体和一系列水解酶,并形成大量的生物膜。据我们所知,这是第一次报道白螺旋体扩散化合物和挥发性有机化合物对SH病原菌的抑菌活性及其生物防治效果。
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Identification, Characterization, and Efficacy Evaluation of Bacillus velezensis for Shot-Hole Disease Biocontrol in Flowering Cherry
Though information exists regarding the pathogenesis of the shot-hole disease (SH) in flowering cherry (FC), there has been a lack of research focusing on SH management. Therefore, here, we investigated the inhibitory activities of antagonistic bacteria against SH pathogens both in vitro and in vivo as well as their biochemical characteristics and bioactive compounds. Two biosurfactant-producing bacterial antagonists, identified as Bacillus velezensis strains JCK-1618 and JCK-1696, exhibited the best effects against the growth of both bacterial and fungal SH pathogens in vitro through their cell-free culture filtrates (CFCFs). These two strains also strongly inhibited the growth of the pathogens via the action of their antimicrobial diffusible compounds and antimicrobial volatile organic compounds (VOCs). Crude enzymes, solvent extracts, and biosurfactants of the two strains exhibited antimicrobial activities. Liquid chromatography/electrospray ionization time-of-flight mass spectrometric analysis of the partially purified active fractions revealed that the two antagonists produced three cyclic lipopeptides, including iturin A, fengycin A, and surfactin, and a polyketide, oxydifficidin. In a detached leaf assay, pre-treatment and co-treatment of FC leaves with the CFCFs led to a large reduction in the severity of the leaf spots caused by Epicoccum tobaicum and Bukholderia contaminans, respectively. In addition, the two antagonists produced indole-3-acetic acid, siderophore, and a series of hydrolytic enzymes, along with the formation of a substantial biofilm. To our knowledge, this is the first report of the antimicrobial activities of the diffusible compounds and VOCs of B. velezensis against the SH pathogens and their efficiency in the biocontrol of SH.
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