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首页> 外文期刊>Frontiers in Microbiology >Biocontrol of Bacterial Fruit Blotch by Bacillus subtilis 9407 via Surfactin-Mediated Antibacterial Activity and Colonization
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Biocontrol of Bacterial Fruit Blotch by Bacillus subtilis 9407 via Surfactin-Mediated Antibacterial Activity and Colonization

机译:枯草芽孢杆菌 9407通过Surfactin介导的抗菌活性和定殖对细菌水果斑点的生物防治

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In this study, Bacillus subtilis 9407 showed a strong antibacterial activity against Acidovorax citrulli in vitro and 61.7% biocontrol efficacy on melon seedlings 4 days post inoculation under greenhouse conditions. To understand the biocontrol mechanism of B. subtilis 9407, identify the primary antibacterial compound and determine its role in controlling bacterial fruit blotch (BFB), a srfAB deletion mutant (Δ srfAB ) was constructed. The Δ srfAB which was deficient in production of surfactin, not only showed almost no ability to inhibit growth of A. citrulli but also decreased biofilm formation and reduced swarming motility. Colonization assay demonstrated that B. subtilis 9407 could conlonize on melon roots and leaves in a large population, while Δ srfAB showed a four- to ten-fold reduction in colonization of melon roots and leaves. Furthermore, a biocontrol assay showed that Δ srfAB lost the biocontrol efficacy. In summary, our results indicated that surfactin, which consists of C13- to C16-surfactin A was the primary antibacterial compound of B. subtilis 9407, and it played a major role in biofilm formation, swarming motility, colonization and suppressing BFB. We propose that the biocontrol activity of B. subtilis 9407 is the results of the coordinated action of surfactin-mediated antibacterial activity and colonization. This study reveals for the first time that the use of a B. subtilis strain as a potential biological control agent could efficiently control BFB by producing surfactin.
机译:在这项研究中,枯草芽孢杆菌9407在温室条件下接种4天后,在体外对瓜酸嗜酸性菌具有很强的抗菌活性,对瓜苗的生防效力为61.7%。为了了解枯草芽孢杆菌9407的生物防治机制,确定主要的抗菌化合物并确定其在控制细菌果实斑点(BFB)中的作用,构建了srfAB缺失突变体(ΔsrfAB)。缺乏surfactin产生的ΔsrfAB不仅几乎没有抑制柑桔曲霉生长的能力,而且还减少了生物膜的形成并减少了群体运动。殖民化试验表明,枯草芽孢杆菌9407可以在大量种群的瓜根和叶子上形成菌落,而ΔsrfAB显示瓜根和叶子的定居减少4到10倍。此外,生物防治测定表明ΔsrfAB丧失了生物防治功效。总之,我们的结果表明,由C13至C16表面活性素A组成的表面活性素是枯草芽孢杆菌9407的主要抗菌化合物,它在生物膜形成,成群运动,定居和抑制BFB中起着重要作用。我们建议枯草芽孢杆菌9407的生物防治活性是表面活性素介导的抗菌活性和定植的协同作用的结果。这项研究首次揭示了使用枯草芽孢杆菌菌株作为潜在的生物防治剂可以通过生产表面活性素来有效地控制BFB。

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