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基因组的比较分析表明,菌株212中不存在用于生物防治的特定遗传基础。

Comparative analysis of genomes reveals the absence of a specific genetic basis for biocontrol in strain 212.

作者信息

Requena Elena, Alonso-Guirado Lola, Veloso Javier, Villarino María, Melgarejo Paloma, Espeso Eduardo Antonio, Larena Inmaculada

机构信息

Grupo Hongos Fitopatógenos, Departamento de Protección Vegetal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Consejo Superior de Investigaciones Científicas (INIA-CSIC), Madrid, Spain.

Grupo de Epidemiología Genética y Molecular, Centro Nacional de Investigaciones Oncológicas (CNIO), Madrid, Spain.

出版信息

Front Microbiol. 2023 Jan 13;13:1075327. doi: 10.3389/fmicb.2022.1075327. eCollection 2022.

Abstract

strain 212 (PO212) is a filamentous fungus belonging to the division Ascomycete. PO212 acts as an effective biocontrol agent against several pathogens in a variety of horticultural crops including f.sp. , causing vascular wilt disease in tomato plants. We assembled draft genomes of two P. rubens strains, the biocontrol agent PO212 and the soil isolate S27, which lacks biocontrol activity. We also performed comparative analyses of the genomic sequence of PO212 with that of the other and strains. This is the first strain with biocontrol activity whose genome has been sequenced and compared. PO212 genome size is 2,982 Mb, which is currently organized into 65 scaffolds and a total of 10,164 predicted Open Reading Frames (ORFs). Sequencing confirmed that PO212 belongs to clade. The comparative analysis of the PO212 genome with the genomes of other and strains available in databases showed strong conservation among genomes, but a correlation was not found between these genomic data and the biocontrol phenotype displayed by PO212. Finally, the comparative analysis between PO212 and S27 genomes showed high sequence conservation and a low number of variations mainly located in ORF regions. These differences found in coding regions between PO212 and S27 genomes can explain neither the biocontrol activity of PO212 nor the absence of such activity in S27, opening a possible avenue toward transcriptomic and epigenetic studies that may shed light on this mechanism for fighting plant diseases caused by fungal pathogens. The genome sequences described in this study provide a useful novel resource for future research into the biology, ecology, and evolution of biological control agents.

摘要

菌株212(PO212)是一种属于子囊菌门的丝状真菌。PO212作为一种有效的生物防治剂,可抵御多种园艺作物中的几种病原体,包括番茄植株中引起维管束枯萎病的[具体病原体名称缺失]。我们组装了两种鲁宾氏拟青霉菌株的基因组草图,即生物防治剂PO212和缺乏生物防治活性的土壤分离株S27。我们还对PO212与其他[具体菌株名称缺失]和[具体菌株名称缺失]菌株的基因组序列进行了比较分析。这是首个其基因组已被测序并进行比较的具有生物防治活性的[具体菌株名称缺失]菌株。PO212基因组大小为2982 Mb,目前被组装成65个支架,共有10164个预测的开放阅读框(ORF)。测序证实PO212属于[具体分支名称缺失]分支。将PO212基因组与数据库中其他[具体菌株名称缺失]和[具体菌株名称缺失]菌株的基因组进行比较分析表明,基因组之间具有很强的保守性,但未发现这些基因组数据与PO212所表现出的生物防治表型之间存在相关性。最后,PO212和S27基因组之间的比较分析显示出高度的序列保守性,且变异数量较少,主要位于ORF区域。在PO212和S27基因组的编码区域中发现的这些差异,既无法解释PO212的生物防治活性,也无法解释S27中缺乏这种活性的原因,这为转录组学和表观遗传学研究开辟了一条可能的途径,这些研究可能会揭示这种对抗真菌病原体引起的植物病害机制。本研究中描述的基因组序列为未来生物防治剂的生物学、生态学和进化研究提供了有用的新资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30d7/9880469/020e11dd4874/fmicb-13-1075327-g001.jpg

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