Enhancing Disease Resistance in Plants and Stored Potato Tubers through Inoculation of Seed Tubers with the Endophyte Bacillus subtilis 10-4 and Genomic Analysis of its Antimicrobial Properties

IF 1 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
L. I. Pusenkova, O. V. Lastochkina
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Abstract

The effect of inoculation of healthy hydroponic seed mini-tubers and super-elite reproduction seed tubers with the endophytic bacterium Bacillus subtilis 10-4 on the resistance of plants and stored tubers to diseases was studied. A search for clusters of genes associated with the synthesis of antimicrobial secondary metabolites in the genome of strain 10-4 was carried out. A prolonged protective effect of 10-4 against diseases of leaves (alternariosis) and stored tubers (scab, fusarium) of potatoes was revealed. Metagenomic analysis of the ITS region showed a decrease in the species composition and the proportion of phytopathogenic fungi in plant leaves and stored tubers under the influence of 10-4 with maximum effect during inoculation of healthy mini-tubers. Using the anti-SMASH program, the gene clusters responsible for the synthesis of a wide range of secondary metabolites with antimicrobial activity (type III polyketides, nonribosomal peptide synthetases, betalactones, sactypeptides, rantipeptides, nonribosomal peptide metallophores, transAT-polyketide synthetases, and terpenes) were identified in the genome of strain 10-4. It was revealed that the main antimicrobial compounds of 10-4, which play an important role in the biocontrol of diseases and plant protection, are surfactin, fengycin, bacillibactin, bacillaene, subtilosin A, and bacilysin. In addition, using the CARD database, a wide range of antimicrobial resistance genes with different mechanisms of action were predicted in strain 10-4. In general, the method of pre-sowing treatment of healthy hydroponically grown seed mini-tubers with 10-4 increases the efficiency of bacterial inoculation and ensures long-term protection of tubers during storage and reduces the risk of disease transmission to new generations of plants.

Abstract Image

通过接种枯草芽孢杆菌10-4增强马铃薯块茎和种子块茎的抗病性及其抑菌特性的基因组分析
研究了用内生细菌枯草芽孢杆菌10-4接种健康水培种子微型块茎和超精繁殖块茎对植株和储藏块茎抗病能力的影响。对菌株10-4基因组中与抗菌次级代谢物合成相关的基因簇进行了搜索。10-4对马铃薯叶片病(交替病)和贮藏块茎病(痂病、镰刀菌病)具有持久的保护作用。ITS区域宏基因组分析显示,10-4处理下植物叶片和贮藏块茎中植物病原真菌的种类组成和比例下降,接种健康小块茎时影响最大。利用anti-SMASH程序,在菌株10-4的基因组中鉴定了负责合成多种具有抗菌活性的次级代谢物的基因簇(III型多酮、非核糖体肽合成酶、β内酯、sactypeptide、rantipeptides、非核糖体肽金属蛋白、trans - at聚酮合成酶和萜烯)。结果表明,10-4的主要抑菌化合物为surfactin、fengycin、bacillibactin、bacillaene、subtilosin A和bacilysin,在病害的生物防治和植物保护中发挥重要作用。此外,利用CARD数据库,预测菌株10-4中具有不同作用机制的广泛耐药基因。总的来说,对健康的水培种子小块茎进行10-4的播前处理,提高了接种细菌的效率,保证了块茎在贮藏过程中的长期保护,降低了疾病传给新一代植株的风险。
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来源期刊
Applied Biochemistry and Microbiology
Applied Biochemistry and Microbiology 生物-生物工程与应用微生物
CiteScore
1.70
自引率
12.50%
发文量
75
审稿时长
6-12 weeks
期刊介绍: Applied Biochemistry and Microbiology is an international peer reviewed journal that publishes original articles on biochemistry and microbiology that have or may have practical applications. The studies include: enzymes and mechanisms of enzymatic reactions, biosynthesis of low and high molecular physiologically active compounds; the studies of their structure and properties; biogenesis and pathways of their regulation; metabolism of producers of biologically active compounds, biocatalysis in organic synthesis, applied genetics of microorganisms, applied enzymology; protein and metabolic engineering, biochemical bases of phytoimmunity, applied aspects of biochemical and immunochemical analysis; biodegradation of xenobiotics; biosensors; biomedical research (without clinical studies). Along with experimental works, the journal publishes descriptions of novel research techniques and reviews on selected topics.
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