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从番茄根际土壤中筛选具有抗菌活性的细菌及其抗菌生物合成潜力的基因组分析。

Antimicrobial activity screening of rhizosphere soil bacteria from tomato and genome-based analysis of their antimicrobial biosynthetic potential.

机构信息

Department of Molecular Genetics, University of Groningen, Groningen, The Netherlands.

National Academy of Agriculture Green Development, Key Laboratory of Plant-Soil Interactions, Ministry of Education, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, China.

出版信息

BMC Genomics. 2021 Jan 7;22(1):29. doi: 10.1186/s12864-020-07346-8.

Abstract

BACKGROUND

Tomato plant growth is frequently hampered by a high susceptibility to pests and diseases. Traditional chemical control causes a serious impact on both the environment and human health. Therefore, seeking environment-friendly and cost-effective green methods in agricultural production becomes crucial nowadays. Plant Growth Promoting Rhizobacteria (PGPR) can promote plant growth through biological activity. Their use is considered to be a promising sustainable approach for crop growth. Moreover, a vast number of biosynthetic gene clusters (BGCs) for secondary metabolite production are being revealed in PGPR, which helps to find potential anti-microbial activities for tomato disease control.

RESULTS

We isolated 181 Bacillus-like strains from healthy tomato, rhizosphere soil, and tomato tissues. In vitro antagonistic assays revealed that 34 Bacillus strains have antimicrobial activity against Erwinia carotovora, Pseudomonas syringae; Rhizoctonia solani; Botrytis cinerea; Verticillium dahliae and Phytophthora infestans. The genomes of 10 Bacillus and Paenibacillus strains with good antagonistic activity were sequenced. Via genome mining approaches, we identified 120 BGCs encoding NRPs, PKs-NRPs, PKs, terpenes and bacteriocins, including known compounds such as fengycin, surfactin, bacillibactin, subtilin, etc. In addition, several novel BGCs were identified. We discovered that the NRPs and PKs-NRPs BGCs in Bacillus species are encoding highly conserved known compounds as well as various novel variants.

CONCLUSIONS

This study highlights the great number of varieties of BGCs in Bacillus strains. These findings pave the road for future usage of Bacillus strains as biocontrol agents for tomato disease control and are a resource arsenal for novel antimicrobial discovery.

摘要

背景

番茄植株的生长经常受到病虫害高易感性的阻碍。传统的化学防治方法对环境和人类健康造成严重影响。因此,在农业生产中寻求环保和经济有效的绿色方法变得至关重要。植物促生根际细菌(PGPR)可以通过生物活性促进植物生长。它们的使用被认为是促进作物生长的一种有前途的可持续方法。此外,PGPR 中大量的次生代谢产物合成基因簇(BGCs)被揭示出来,这有助于发现潜在的抗微生物活性,以控制番茄病害。

结果

我们从健康的番茄、根际土壤和番茄组织中分离出 181 株类似芽孢杆菌的菌株。体外拮抗试验表明,34 株芽孢杆菌对欧文氏菌、丁香假单胞菌、腐霉、灰葡萄孢、黄萎病菌和致病疫霉具有抗菌活性。10 株芽孢杆菌和 1 株巨大芽孢杆菌具有良好拮抗活性的菌株的基因组进行了测序。通过基因组挖掘方法,我们鉴定出 120 个编码 NRPs、PKs-NRPs、PKs、萜类化合物和细菌素的 BGCs,包括丰素、表面活性剂、芽孢杆菌素、枯草菌素等已知化合物。此外,还鉴定了几个新的 BGCs。我们发现,芽孢杆菌属中 NRPs 和 PKs-NRPs BGCs 编码的是高度保守的已知化合物以及各种新型变体。

结论

本研究强调了芽孢杆菌菌株中 BGCs 的多样性。这些发现为未来利用芽孢杆菌菌株作为番茄病害生物防治剂铺平了道路,也为新的抗菌药物发现提供了一个资源库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2a0/7789753/ec3fe0e2563e/12864_2020_7346_Fig1_HTML.jpg

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