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Bacilysin from Bacillus amyloliquefaciens FZB42 Has Specific Bactericidal Activity against Harmful Algal Bloom Species

机译:淀粉芽孢杆菌FZB42的杆菌属溶菌素对有害藻华物种具有特定的杀菌活性

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Harmful algal blooms, caused by massive and exceptional overgrowth of microalgae and cyanobacteria, are a serious environmental problem worldwide. In the present study, we looked for Bacillus strains with sufficiently strong anticyanobacterial activity to be used as biocontrol agents. Among 24 strains, Bacillus amyloliquefaciens FZB42 showed the strongest bactericidal activity against Microcystis aeruginosa , with a kill rate of 98.78%. The synthesis of the anticyanobacterial substance did not depend on Sfp, an enzyme that catalyzes a necessary processing step in the nonribosomal synthesis of lipopeptides and polyketides, but was associated with the aro gene cluster that is involved in the synthesis of the sfp -independent antibiotic bacilysin. Disruption of bacB , the gene in the cluster responsible for synthesizing bacilysin, or supplementation with the antagonist N -acetylglucosamine abolished the inhibitory effect, but this was restored when bacilysin synthesis was complemented. Bacilysin caused apparent changes in the algal cell wall and cell organelle membranes, and this resulted in cell lysis. Meanwhile, there was downregulated expression of glmS , psbA1 , mcyB , and ftsZ —genes involved in peptidoglycan synthesis, photosynthesis, microcystin synthesis, and cell division, respectively. In addition, bacilysin suppressed the growth of other harmful algal species. In , bacilysin produced by B. amyloliquefaciens FZB42 has anticyanobacterial activity and thus could be developed as a biocontrol agent to mitigate the effects of harmful algal blooms.
机译:微藻和蓝藻大量大量繁殖和异常生长所引起的有害藻华是全世界范围内的严重环境问题。在本研究中,我们寻找具有足够强的抗蓝细菌活性的芽孢杆菌菌株以用作生物防治剂。在24个菌株中,解淀粉芽孢杆菌FZB42对铜绿微囊藻表现出最强的杀菌活性,杀灭率为98.78%。抗蓝细菌物质的合成不依赖于Sfp,Sfp是一种催化脂肽和聚酮化合物非核糖体合成中必不可少的加工步骤的酶,但与af基因簇有关,而aro基因簇与不依赖sfp的抗生素杆菌蛋白酶合成有关。 bacB的破坏,簇中负责合成杆菌素的基因或补充拮抗剂N-乙酰氨基葡糖均取消了抑制作用,但补充了杆菌素的合成后,这种抑制作用得以恢复。杆菌素引起藻类细胞壁和细胞器膜的明显变化,并导致细胞裂解。同时,分别参与肽聚糖合成,光合作用,微囊藻毒素合成和细胞分裂的glmS,psbA1,mcyB和ftsZ-基因的表达下调。此外,杆菌肽抑制了其他有害藻类的生长。在中,解淀粉芽孢杆菌FZB42产生的杆菌素具有抗蓝细菌活性,因此可以作为生物控制剂开发,以减轻有害藻华的影响。

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