首页> 外文期刊>Journal of Biotechnology >Difficidin and bacilysin produced by plant-associated Bacillus amyloliquefaciens are efficient in controlling fire blight disease
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Difficidin and bacilysin produced by plant-associated Bacillus amyloliquefaciens are efficient in controlling fire blight disease

机译:由植物相关的解淀粉芽孢杆菌产生的艰难梭菌素和杆菌溶素可有效控制火疫病

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Representatives of Bacillus amyloliquefaciens were shown to possess biocontrol activity against fire blight, a serious disease of orchard trees caused by Erwinia amylovora. Genome analysis of B. amyloliquefaciens FZB42 identified gene clusters responsible for synthesis of several polyketide compounds with antibacterial action. We show here that the antibacterial polyketides difficidin and to a minor extent bacillaene act efficiently against E. amylovora. Surprisingly, a mutant strain blocked in the production of difficidin (CH8 Deltadfn) inhibited growth of E. amylovora and suppressed fire blight disease nearly in the same range as the wild type. In addition, a sfp mutant (CH3 Deltasfp) unable to synthesize non-ribosomally lipopeptides and polyketides did still suppress growth of E. amylovora, suggesting that besides action of polyketides another antagonistic principle exist. A double mutant (RS06 Deltasfp Deltabac) devoid in polyketide and bacilysin synthesis was unable to suppress growth of E. amylovora indicating that the additional inhibitory effect is due to production of bacilysin, a dipeptide whose synthesis does not depend on Sfp. We propose to use B. amyloliquefaciens strains with enhanced synthesis of difficidin and/or bacilysin for development of biocontrol agents efficient against fire blight disease.
机译:研究表明,解淀粉芽孢杆菌的代表具有抗火疫病的生物防治活性,火疫是由淀粉欧文氏菌引起的一种严重的果树病。对解淀粉芽孢杆菌FZB42的基因组分析确定了负责合成几种具有抗菌作用的聚酮化合物的基因簇。我们在这里显示,抗菌聚酮difficidin和少量的细菌素有效地对抗淀粉样杆菌。令人惊讶地,在艰难梭菌素(CH8 Deltadfn)的生产中受阻的突变菌株抑制了淀粉样芽胞杆菌的生长,并在与野生型相同的范围内抑制了枯萎病。另外,不能合成非核糖体脂肽和聚酮化合物的sfp突变体(CH3 Deltasfp)仍能抑制淀粉样芽胞杆菌的生长,这表明除聚酮化合物的作用外,还存在另一种拮抗原理。缺乏聚酮化合物和杆菌肽合成的双突变体(RS06 Deltasfp Deltabac)不能抑制淀粉样芽胞杆菌的生长,表明额外的抑制作用是由于杆菌肽的产生,后者是一种二肽,其合成不依赖于Sfp。我们建议使用具有增强的艰难梭菌素和/或杆菌蛋白酶的合成的解淀粉芽孢杆菌菌株来开发有效对抗火疫病的生物防治剂。

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