Complete Genome Sequence of Serratia marcescens Podophage Parlo

is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction...

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Published inMicrobiology resource announcements Vol. 8; no. 27
Main Authors Bockoven, Ryan, Gutierrez, Jamie, Newkirk, Heather, Liu, Mei, Cahill, Jesse, Ramsey, Jolene
Format Journal Article
LanguageEnglish
Published United States American Society for Microbiology 03.07.2019
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Abstract is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein.
AbstractList is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein.
Serratia marcescens is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of S. marcescens podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein. ABSTRACT Serratia marcescens is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of S. marcescens podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein.
Serratia marcescens is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of S. marcescens podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein. Serratia marcescens is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome sequence of S. marcescens podophage Parlo. Parlo is most similar to Erwinia phage PEp14 and encodes a 3,764-residue protein assumed to be a homolog of DarB, an antirestriction protein.
Author Ramsey, Jolene
Cahill, Jesse
Bockoven, Ryan
Gutierrez, Jamie
Newkirk, Heather
Liu, Mei
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Present address: Ryan Bockoven, Department of Molecular Biosciences, The University of Texas at Austin, Austin, Texas, USA; Jesse Cahill, Sandia National Laboratories, Albuquerque, New Mexico, USA.
Citation Bockoven R, Gutierrez J, Newkirk H, Liu M, Cahill J, Ramsey J. 2019. Complete genome sequence of Serratia marcescens podophage Parlo. Microbiol Resour Announc 8:e00569-19. https://doi.org/10.1128/MRA.00569-19.
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Serratia marcescens is an opportunistic human pathogen with multiple resistance mechanisms that infects hospitalized patients. Here, we report the full genome...
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Title Complete Genome Sequence of Serratia marcescens Podophage Parlo
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