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首页> 外文期刊>MicrobiologyOpen >Selecting lipopeptide‐producing, Fusarium‐ suppressing Bacillus spp.: Metabolomic and genomic probing of Bacillus velezensis NWUMFkBS10.5
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Selecting lipopeptide‐producing, Fusarium‐ suppressing Bacillus spp.: Metabolomic and genomic probing of Bacillus velezensis NWUMFkBS10.5

机译:选择脂肽,抑制胆碱SPP:芽孢杆菌的代谢组和基因组探测Nwumfkbs10.5

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The results of this study indicate that the maize rhizosphere remains a reservoir for microbial strains with unique beneficial properties. The study sought to provide an indigenous Bacillus strain with a bioprotective potential to alleviate maize fusariosis in South Africa. We selected seven Bacillus isolates (MORWBS1.1, MARBS2.7, VERBS5.5, MOREBS6.3, MOLBS8.5, MOLBS8.6, and NWUMFkBS10.5) with biosuppressive effects against two maize fungal pathogens ( Fusarium graminearum and Fusarium culmorum ) based on 16S rDNA gene characterization and lipopeptide gene analysis. The PCR analysis revealed that lipopeptide genes encoding the synthesis of iturin, surfactin, and fengycin might be responsible for their antifungal activities. Few of the isolates also showed possible biosurfactant capability, and their susceptibility to known antibiotics is indicative of their eco‐friendly attributes. In addition, in silico genomic analysis of our best isolate ( Bacillus velezensis NWUMFkBS10.5) and characterization of its active metabolite with FTIR, NMR, and ESI‐Micro‐Tof MS confirmed the presence of valuable genes clusters and metabolic pathways. The versatile genomic potential of our Bacillus isolate emphasizes the continued relevance of Bacillus spp. in biological management of plant diseases.
机译:该研究的结果表明,玉米根际仍然是具有独特有益特性的微生物菌株的储层。该研究寻求提供一种土着芽孢杆菌菌株,具有缓解南非的生物选择性潜力,可缓解南非的玉米枯萎病。我们选择了七个芽孢杆菌(Morwbs1.1,Marbs2.7,Verbs5.5,MoreBS6.3,MolBS8.5,MolBS8.6和NwumfkBS10.5),其对两种玉米真菌病原体(镰刀菌麦子和镰刀菌Culmorum)进行生物抑制作用基于16S RDNA基因表征和脂肽基因分析。 PCR分析显示,编码Iturin,Surfactin和Fengycin合成的脂肽基因可能对其抗真菌活性负责。少量分离物也显示出可能的生物活性剂能力,并且它们对已知抗生素的易感性表明它们的生态友好属性。此外,在我们最佳分离物(Bacillus Velezensis Nwumfkbs10.5)的硅基因组分析中,并用FTIR,NMR和ESI-Micro-ToF MS表征其活性代谢物MS证实了有价值的基因簇和代谢途径的存在。我们的芽孢杆菌的多功能基因组潜力强调了Bacillus SPP的持续相关性。在植物疾病的生物管理中。

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