Identification of a New P335 Subgroup through Molecular Analysis of Lactococcal Phages Q33 and BM13

Author:

Mahony Jennifer12,Martel Bruno3,Tremblay Denise M.3,Neve Horst4,Heller Knut J.4,Moineau Sylvain3,van Sinderen Douwe12

Affiliation:

1. Department of Microbiology, University College Cork, Cork, Ireland

2. Alimentary Pharmabiotic Centre, University College Cork, Cork, Ireland

3. D�partement de Biochimie, de Microbiologie et de Bio-Informatique, Facult� des Sciences et de G�nie, Groupe de Recherche en �cologie Buccale (GREB), Facult� de M�decine Dentaire, Universit� Laval, Qu�bec, Canada

4. Department of Microbiology and Biotechnology, Max Rubner-Institut, Kiel, Germany

Abstract

Lactococcal dairy starter strains are under constant threat from phages in dairy fermentation facilities, especially by members of the so-called 936, P335, and c2 species. Among these three phage groups, members of the P335 species are the most genetically diverse. Here, we present the complete genome sequences of two P335-type phages, Q33 and BM13, isolated in North America and representing a novel lineage within this phage group. The Q33 and BM13 genomes exhibit homology, not only to P335-type, but also to elements of the 936-type phage sequences. The two phage genomes also have close relatedness to phages infecting Enterococcus and Clostridium , a heretofore unknown feature among lactococcal P335 phages. The Q33 and BM13 genomes are organized in functionally related clusters with genes encoding functions such as DNA replication and packaging, morphogenesis, and host cell lysis. Electron micrographic analysis of the two phages highlights the presence of a baseplate more reminiscent of the baseplate of 936 phages than that of the majority of members of the P335 group, with the exception of r1t and LC3.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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