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一种新型噬菌体感染海洋光能异养细菌。

A Novel Phage Infecting the Marine Photoheterotrophic Bacterium .

机构信息

State Key Laboratory of Marine Environmental Science, Fujian Key Laboratory of Marine Carbon Sequestration, College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China.

College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China.

出版信息

Viruses. 2022 Mar 2;14(3):512. doi: 10.3390/v14030512.

Abstract

This study isolated and characterized a new phage infecting the marine photoheterotrophic bacterium , which fills the gap in research on phages targeting this ecologically important species. The phage vB_CbaS-RXM (RXM) has a dsDNA genome with a length of 104,206 bp and G+C content of 61.64%. The taxonomic analysis found a close evolutionary relationship between RXM, phage vB_EliS-L02, and phage Lacusarx, and we propose that RXM represents a new species of the genus. A one-step growth curve revealed a burst size of 75 plaque-forming units (PFUs) per cell in a 3-hour infection cycle. The lysis profile of RXM showed an intraspecific lethal rate of 26.3% against 38 citromicrobial strains. RXM contains 15 auxiliary metabolic genes (AMGs) related to diverse cellular processes, such as putative metabolic innovation and hijacking of host nucleotide metabolism to enhance its biosynthetic capacity. An in-depth analysis showed that phage functional genes strongly rely on the host for translation, while the translation of unique phage genes with less host dependency may be complemented by phage tRNA. Overall, our study investigated the infection kinetics, genetic traits, taxonomy, and predicted roles of AMGs and tRNA genes of this new phage, which contributes to a better understanding of phage diversity and phage-bacterium interactions.

摘要

本研究分离并鉴定了一种感染海洋光养异养细菌的新型噬菌体,填补了针对这一具有重要生态学意义的物种的噬菌体研究空白。噬菌体 vB_CbaS-RXM(RXM)具有一个长度为 104,206bp 的双链 DNA 基因组,GC 含量为 61.64%。分类分析发现 RXM 与噬菌体 vB_EliS-L02 和噬菌体 Lacusarx 具有密切的进化关系,我们提出 RXM 代表了一个新的属种。一步生长曲线显示,在 3 小时的感染周期内,每个细胞的爆发大小为 75 个噬菌斑形成单位(PFU)。RXM 的裂解曲线显示,针对 38 种柠檬酸微生物菌株的种内致死率为 26.3%。RXM 包含 15 个与多种细胞过程相关的辅助代谢基因(AMGs),例如假定的代谢创新和劫持宿主核苷酸代谢以增强其生物合成能力。深入分析表明,噬菌体功能基因强烈依赖宿主进行翻译,而对宿主依赖性较低的独特噬菌体基因的翻译可能由噬菌体 tRNA 来补充。总体而言,本研究调查了这种新型噬菌体的感染动力学、遗传特征、分类学以及预测的 AMG 和 tRNA 基因的作用,有助于更好地理解噬菌体多样性和噬菌体-细菌相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62dc/8953757/c5163ebff1f2/viruses-14-00512-g001.jpg

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