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脂肽介导的内生枯草芽孢杆菌对真菌植物病原菌的生物防治活性。

Lipopeptide mediated biocontrol activity of endophytic Bacillus subtilis against fungal phytopathogens.

机构信息

Department of Agricultural Biotechnology, Assam Agricultural University, 785013, Jorhat, India.

出版信息

BMC Microbiol. 2019 Apr 2;19(1):71. doi: 10.1186/s12866-019-1440-8.

Abstract

BACKGROUND

The use of chemical fungicides against fungal pathogens adversely affects soil and plant health thereby resulting in overall environmental hazards. Therefore, biological source for obtaining antifungal agents is considered as an environment-friendly alternative for controlling fungal pathogens.

RESULTS

In this study, seven endophytic bacteria were isolated from sugarcane leaves and screened for its antifungal activity against 10 fungal isolates belonging to the genera Alternaria, Cochliobolus, Curvularia, Fusarium, Neodeightonia, Phomopsis and Saccharicola isolated from diseased leaves of sugarcane. Among the seven bacterial isolates, SCB-1 showed potent antagonistic activity against the tested fungi. Based on the phenotypic data, Fatty Acid Methyl Esters (FAME) and 16S rRNA gene sequence analysis, the isolate SCB-1 was identified as Bacillus subtilis. The bacterial isolate was screened negative for chitinase production; however, chloroform and methanol extracts of the bacterial culture caused significant inhibition in the growth of the fungal isolates on semisolid media. Volatile component assay showed highest inhibitory activity against Saccharicola bicolor (SC1.4). A PCR based study detected the presence of the genes involved in biosynthesis of surfactin, bacillaene, difficidin, macrolactins and fengycin. Mass spectrometric analysis of the bacterial extract detected the presence of antifungal lipopeptide surfactin, but other metabolites were not detected. The biocontrol activity of the bacterial isolate was established when bacterial pretreated mung bean seeds were able to resist Fusarium infection, however, the untreated seeds failed to germinate.

CONCLUSION

The antifungal potential of isolate Bacillus subtilis SCB-1 was established against taxonomically diverse fungal pathogens including the genera Saccharicola, Cochliobolus, Alternaria and Fusarium. The potent antifungal compound surfactin as well as volatiles produced by the bacterial isolate could be responsible for its bio-control activity against fungal infections.

摘要

背景

使用化学杀菌剂防治真菌病原体对土壤和植物健康产生不利影响,从而导致整体环境危害。因此,从生物源获得抗真菌剂被认为是控制真菌病原体的一种环保替代方法。

结果

在这项研究中,从甘蔗叶片中分离出 7 种内生细菌,并对其针对从甘蔗病叶中分离出的属Alternaria、Cochliobolus、Curvularia、Fusarium、Neodeightonia、Phomopsis 和 Saccharicola 的 10 种真菌分离株的抗真菌活性进行了筛选。在这 7 种细菌分离株中,SCB-1 对测试真菌表现出强烈的拮抗活性。根据表型数据、脂肪酸甲酯(FAME)和 16S rRNA 基因序列分析,分离株 SCB-1 被鉴定为枯草芽孢杆菌。该细菌分离株对几丁质酶的产生呈阴性反应;然而,细菌培养物的氯仿和甲醇提取物在半固体培养基上对真菌分离株的生长造成了显著抑制。挥发性成分分析显示对 Saccharicola bicolor(SC1.4)的抑制活性最高。基于 PCR 的研究检测到参与生物合成表面活性剂、杆菌肽、difficidin、大环内酯和丰原素的基因的存在。细菌提取物的质谱分析检测到存在抗真菌脂肽表面活性剂,但未检测到其他代谢物。当细菌预处理的绿豆种子能够抵抗镰刀菌感染时,细菌分离株的生物防治活性得以建立,然而,未经处理的种子未能发芽。

结论

分离株枯草芽孢杆菌 SCB-1 对包括 Saccharicola、Cochliobolus、Alternaria 和 Fusarium 在内的分类学上不同的真菌病原体表现出抗真菌潜力。产生的强效抗真菌化合物表面活性剂以及细菌分离株产生的挥发性化合物可能是其对真菌感染具有生物防治活性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6d3/6444643/e202454d35c9/12866_2019_1440_Fig1_HTML.jpg

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