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EA-CB0015的基因组揭示了其附生生活方式以及作为生物防治剂的潜力。

The genome of EA-CB0015 sheds light into its epiphytic lifestyle and potential as a biocontrol agent.

作者信息

Cuellar-Gaviria Tatiana Z, García-Botero Camilo, Ju Kou-San, Villegas-Escobar Valeska

机构信息

CIBIOP Group, Department of Biological Sciences, Universidad EAFIT, Medellin, Colombia.

Department of Microbiology, The Ohio State University, Columbus, OH, United States.

出版信息

Front Microbiol. 2023 Mar 27;14:1135487. doi: 10.3389/fmicb.2023.1135487. eCollection 2023.

Abstract

Different species have successfully been used as biopesticides against a broad range of plant pathogens. Among these, EA-CB0015 has shown to efficiently control Black sigatoka disease in banana plants, presumably by mechanisms of adaptation that involve modifying the phyllosphere environment. Here, we report the complete genome of strain EA-CB0015, its precise taxonomic identity, and determined key genetic features that may contribute to its effective biocontrol of plant pathogens. We found that EA-CB0015 harbors a singular 4 Mb circular chromosome, with 3,951 protein-coding sequences. Multi-locus sequence analysis (MLSA) and average nucleotide identity (ANI) analysis classified strain EA-CB0015 as . Encoded within its genome are biosynthetic gene clusters (BGCs) for surfactin, iturin, plipastatin, bacillibactin, bacilysin, subtilosin A, sporulation killing factor, and other natural products that may facilitate inter-microbial warfare. Genes for indole-acetic acid (IAA) synthesis, the use of diverse carbon sources, and a multicellular lifestyle involving motility, biofilm formation, quorum sensing, competence, and sporulation suggest EA-CB0015 is adept at colonizing plant surfaces. Defensive mechanisms to survive invading viral infections and preserve genome integrity include putative type I and type II restriction modification (RM) and toxin/antitoxin (TA) systems. The presence of bacteriophage sequences, genomic islands, transposable elements, virulence factors, and antibiotic resistance genes indicate prior occurrences of genetic exchange. Altogether, the genome of EA-CB0015 supports its function as a biocontrol agent against phytopathogens and suggest it has adapted to thrive within phyllosphere environments.

摘要

不同的物种已成功用作对抗多种植物病原体的生物农药。其中,EA-CB0015已显示出能有效控制香蕉植株的黑条叶斑病,推测其作用机制涉及通过改变叶际环境的适应过程。在此,我们报告了菌株EA-CB0015的完整基因组、其精确的分类学身份,并确定了可能有助于其有效生物防治植物病原体的关键遗传特征。我们发现EA-CB0015含有一条独特的4兆碱基环状染色体,带有3951个蛋白质编码序列。多位点序列分析(MLSA)和平均核苷酸同一性(ANI)分析将菌株EA-CB0015分类为……其基因组中编码了用于表面活性素、伊枯草菌素、短杆菌肽、杆菌铁载体、杆菌溶素、枯草芽孢杆菌素A、孢子形成杀伤因子及其他天然产物的生物合成基因簇(BGCs),这些可能有助于微生物间的竞争。吲哚-3-乙酸(IAA)合成基因、多种碳源的利用以及涉及运动性、生物膜形成、群体感应、感受态和孢子形成的多细胞生活方式表明EA-CB0015擅长在植物表面定殖。抵御入侵病毒感染并保持基因组完整性的防御机制包括假定的I型和II型限制修饰(RM)及毒素/抗毒素(TA)系统。噬菌体序列、基因组岛、转座元件、毒力因子和抗生素抗性基因的存在表明先前发生过基因交换。总之,EA-CB0015的基因组支持其作为植物病原体生物防治剂的功能,并表明它已适应在叶际环境中茁壮成长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ef/10083409/cbfdf844d74e/fmicb-14-1135487-g001.jpg

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