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一种新型海洋杆状病毒重编程代谢和运动性。

A Novel Inovirus Reprograms Metabolism and Motility of Marine .

机构信息

School of Marine Sciences, Sun Yat-sen Universitygrid.12981.33, Guangzhou, Guangdong, China.

Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering, Guangzhou, Guangdong, China.

出版信息

Microbiol Spectr. 2022 Dec 21;10(6):e0338822. doi: 10.1128/spectrum.03388-22. Epub 2022 Oct 27.

Abstract

Members from the family with striking features are widespread, highly diverse, and ecologically pervasive across multiple hosts and environments. However, a small number of inoviruses have been isolated and studied. Here, a filamentous phage infecting Alteromonas abrolhosensis, designated ϕAFP1, was isolated from the South China Sea and represented a novel genus of . ϕAFP1 consisted of a single-stranded DNA genome (5986 bp), encoding eight putative ORFs. Comparative analyses revealed ϕAFP1 could be regarded as genetic mosaics having homologous sequences with and phages. The temporal transcriptome analysis of A. abrolhosensis to ϕAFP1 infection revealed that 7.78% of the host genes were differentially expressed. The genes involved in translation processes, ribosome pathways, and degradation of multiple amino acid pathways at the plateau period were upregulated, while host material catabolic and bacterial motility-related genes were downregulated, indicating that ϕAFP1 might hijack the energy of the host for the synthesis of phage proteins. ϕAFP1 exerted step-by-step control on host genes through the appropriate level of utilizing host resources. Our study provided novel information for a better understanding of filamentous phage characteristics and phage-host interactions. is widely distributed and plays a vital role in biogeochemical in marine environments. However, little information about phages is available. Here, we isolated and characterized the biological characteristics and genome sequence of a novel inovirus infecting Alteromonas abrolhosensis, designated ϕAFP1, representing a novel viral genus of . We then presented a comprehensive view of the ϕAFP1 phage-Alteromonas abrolhosensis interactions, elucidating reprogramed host metabolism and motility. Our study provided novel information for better comprehension of filamentous phage characteristics and phage-host interactions.

摘要

具有显著特征的 科成员广泛分布,高度多样化,在多种宿主和环境中具有生态普遍性。然而,只有少数的内病毒被分离和研究过。在这里,我们从南海分离到一株感染 Alteromonas abrolhosensis 的丝状噬菌体,命名为 ϕAFP1,它代表了一个新的 科病毒属。ϕAFP1 由一条单链 DNA 基因组(5986bp)组成,编码 8 个推定的 ORF。比较分析表明,ϕAFP1 可以被视为遗传嵌合体,与 和 噬菌体具有同源序列。对 A. abrolhosensis 感染 ϕAFP1 的时间转录组分析表明,宿主基因中有 7.78%的基因表达差异。在平台期,参与翻译过程、核糖体途径和多种氨基酸途径降解的基因上调,而宿主物质代谢和细菌运动相关基因下调,表明 ϕAFP1 可能利用宿主的能量合成噬菌体蛋白。ϕAFP1 通过适当水平地利用宿主资源,对宿主基因进行逐步控制。我们的研究为更好地理解丝状噬菌体的特征和噬菌体-宿主相互作用提供了新的信息。 在海洋环境中分布广泛,在生物地球化学中起着至关重要的作用。然而,关于 噬菌体的信息很少。在这里,我们分离并鉴定了一株感染 Alteromonas abrolhosensis 的新型内病毒的生物学特性和基因组序列,命名为 ϕAFP1,它代表了一个新的病毒属。然后,我们提出了一个全面的观点,即 ϕAFP1 噬菌体- Alteromonas abrolhosensis 相互作用,阐明了被重新编程的宿主代谢和运动。我们的研究为更好地理解丝状噬菌体的特征和噬菌体-宿主相互作用提供了新的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e10e/9769780/da882c7719c2/spectrum.03388-22-f001.jpg

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