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关于Pf噬菌体的存在,对一组临床分离株中噬菌体感染抗性概率的研究。

Study of the probability of resistance to phage infection in a collection of clinical isolates of s in relation to the presence of Pf phages.

作者信息

Blasco Lucía, Ibarguren-Quiles Clara, López-Causape Carla, Armán Lucía, Barrio-Pujante Antonio, Bleriot Inés, Pacios Olga, Fernández-García Laura, Ortiz-Cartagena Concha, Cantόn Rafael, Oliver Antonio, Tomás María

机构信息

Grupo de Microbiología Traslacional y Multidisciplinar (MicroTM)-Servicio de Microbiología Instituto de Investigación Biomédica A Coruña (INIBIC); Hospital A Coruña (CHUAC); Universidad de A Coruña (UDC), A Coruña, Spain.

Grupo de Estudio de los Mecanismos de Resistencia Antimicrobiana (GEMARA) formando parte de la Sociedad Española de Enfermedades Infecciosas y Microbiología Clínica (SEIMC), Madrid, Spain.

出版信息

Microbiol Spectr. 2025 Mar 4;13(3):e0301024. doi: 10.1128/spectrum.03010-24. Epub 2025 Feb 5.

Abstract

is a bacterial pathogen that is a major cause of lung infections in cystic fibrosis (CF) and other patients. Isolates of from CF patients commonly carry filamentous phages (Pf phages), which constitute a family of temperate phages known to be related to biofilm production and antibiotic sequestration. In this study, we identified 12 new Pf phage genomes in a collection of clinical isolates of from CF patients. Study of the anti-phage defense systems in the bacterial isolates revealed the presence of 89 such systems, of which eight were encoded in the Pf phage genomes. Finally, although a weak relation between resistance to phage infection and the number of anti-phage defense systems was detected, it was observed that the phage resistance was related to the presence of Pf phages and the anti-phage defense systems encoded in these phages.IMPORTANCEBacteria harbor a wide range of defense mechanisms to avoid phage infections that hamper the application of phage therapy because they can lead to the rapid acquisition of phage resistance. In this study, eight anti-phage defense systems were found in the genome of 12 Pf phages that were presents in 56% of the CF isolates of . The high prevalence of these phages underlines the importance of our findings about newly discovered filamentous phages and the role of these phages in resistance to phage infections. Thus, the knowledge of the anti-defense system in the Pf phage genomes could be useful in assessing the possible application of phage therapy to treat an infectious disease.

摘要

是一种细菌病原体,是囊性纤维化(CF)患者和其他患者肺部感染的主要原因。来自CF患者的该菌分离株通常携带丝状噬菌体(Pf噬菌体),这些噬菌体构成了一个温和噬菌体家族,已知与生物膜形成和抗生素隔离有关。在本研究中,我们在来自CF患者的该菌临床分离株集合中鉴定出12个新的Pf噬菌体基因组。对细菌分离株中抗噬菌体防御系统的研究揭示了89个此类系统的存在,其中8个编码在Pf噬菌体基因组中。最后,虽然检测到噬菌体感染抗性与抗噬菌体防御系统数量之间存在微弱关系,但观察到噬菌体抗性与Pf噬菌体的存在以及这些噬菌体中编码的抗噬菌体防御系统有关。重要性细菌拥有广泛的防御机制来避免噬菌体感染,这阻碍了噬菌体疗法的应用,因为它们会导致快速获得噬菌体抗性。在本研究中,在12个Pf噬菌体的基因组中发现了8个抗噬菌体防御系统,这些噬菌体存在于该菌56%的CF分离株中。这些噬菌体的高流行率凸显了我们关于新发现的丝状噬菌体的发现以及这些噬菌体在噬菌体感染抗性中的作用的重要性。因此,了解Pf噬菌体基因组中的抗防御系统可能有助于评估噬菌体疗法治疗传染病的可能应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8424/11878078/3065b252bf6a/spectrum.03010-24.f001.jpg

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