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菌株PH1009的基因组分析,该菌株因获得毒素基因而成为潜在的多重耐药病原体。

Genomic analysis of strain PH1009, a potential multi-drug resistant pathogen due to acquisition of toxin genes.

作者信息

De Mesa Czarina Anne, Mendoza Remilyn M, Penir Sarah Mae U, de la Peña Leobert D, Amar Edgar C, Saloma Cynthia P

机构信息

Philippine Genome Center, University of the Philippines, Diliman, Quezon City, Philippines.

Science Education Institute, Department of Science and Technology, Bicutan, Taguig City, Philippines.

出版信息

Heliyon. 2023 Mar 25;9(4):e14926. doi: 10.1016/j.heliyon.2023.e14926. eCollection 2023 Apr.

Abstract

In has increasingly been observed that viral and bacterial coinfection frequently occurs among cultured shrimp and this coinfection could exacerbate the disease phenotype. Here, we describe a newly discovered bacterial strain, PH1009 collected from Masbate Island, Philippines that was found to be co-infecting with the White Spot Syndrome virus in a sample of black tiger prawn, . The genome of PH1009 was sequenced, assembled, and annotated. Average Nucleotide identity calculation with strains confirmed its taxonomic identity. It is a potential multi-drug and multi-heavy metal resistant strain based on the multiple antibiotic and heavy metal resistance determinants annotated on its genome. Two prophage regions were identified in its genome. One contained genes for Zona occludens toxin (Zot) and Accessory cholera toxin (Ace), essential toxins of toxigenic strains apart from CTX toxins. Pan-genome analysis of strains, including PH1009, revealed an "open" pan-genome for and a core genome mainly composed of genes necessary for growth and metabolism. Phylogenetic tree based on the core genome alignment revealed that PH1009 was closest to strains QT520, CAIM 1754, and 823tez1. Published virulence factors present on the strain QT520 suggest similar pathogenicity with PH1009. However, PH1009 Zot was not found on related strains but was present in strains HENC-01 and CAIM 148. Most unique genes found in the PH1009 strain were identified as hypothetical proteins. Further annotation showed that several of these hypothetical proteins were phage transposases, integrases, and transcription regulators, implying the role of bacteriophages in the distinct genomic features of the PH1009 genome. The PH1009 genome will serve as a valuable genomic resource for comparative genomic studies and in understanding the disease mechanism of the species.

摘要

越来越多地观察到,在养殖虾中病毒和细菌的混合感染经常发生,这种混合感染会加剧疾病表型。在此,我们描述了一种新发现的细菌菌株PH1009,它是从菲律宾马斯巴特岛采集的,在一个黑虎虾样本中发现它与白斑综合征病毒共同感染。对PH1009的基因组进行了测序、组装和注释。通过与其他菌株计算平均核苷酸同一性,确认了它的分类身份。基于其基因组中注释的多种抗生素和重金属抗性决定因素,它是一种潜在的多重耐药和多重重金属抗性菌株。在其基因组中鉴定出两个前噬菌体区域。其中一个包含紧密连接毒素(Zot)和辅助霍乱毒素(Ace)的基因,除了CTX毒素外,这些是产毒霍乱弧菌菌株的必需毒素。对包括PH1009在内的霍乱弧菌菌株进行泛基因组分析,揭示了霍乱弧菌的一个“开放”泛基因组和一个主要由生长和代谢所需基因组成的核心基因组。基于核心基因组比对构建的系统发育树表明,PH1009与菌株QT520、CAIM 1754和823tez1最为接近。菌株QT520上已公布的毒力因子表明其与PH1009具有相似的致病性。然而,在相关菌株上未发现PH1009的Zot,但在菌株HENC - 01和CAIM 148中存在。在PH1009菌株中发现的大多数独特基因被鉴定为假定蛋白。进一步注释表明,这些假定蛋白中有几个是噬菌体转座酶、整合酶和转录调节因子,这意味着噬菌体在PH1009基因组独特的基因组特征中发挥了作用。PH1009基因组将作为比较基因组研究和理解霍乱弧菌物种疾病机制的宝贵基因组资源。

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