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FEMS Microbiology Letters : Impact Factor & More

eISSN: 1574-6968pISSN: 0378-1097

Key Metrics

CiteScore
4.2
Impact Factor
< 5
SJR
Q4Genetics
SNIP
0.73
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Topics Covered on FEMS Microbiology Letters

FEMS Microbiology Letters Journal Specifications

Overview
Publisher OXFORD UNIV PRESS
Language Multi-Language
Frequency Semi-monthly
General Details
LanguageMulti-Language
FrequencySemi-monthly
Publication Start Year1977
Publisher URLVisit website
Website URLVisit website
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Recently Published Papers in FEMS Microbiology Letters

Comparative genomics of Lacticaseibacillus paracasei strain 69Bis reveals encoded probiotic traits and genomic specificities.
  • 19 May 2026
  • FEMS microbiology letters
Identification of interbacterial adhesion between oral Schaalia species and streptococcal serine-rich repeat glycoproteins.
  • 18 May 2026
  • FEMS microbiology letters
A novel metronidazole-degrading bacterium Sphingopyxis sp. K5: isolation, characterization, and application potential in soil and wastewater remediation.
  • 15 May 2026
  • FEMS microbiology letters
Sedimentary hiatus causes abrupt decline and shifts in marine subsurface sediment microbial communities: a study from IODP Exp. 378 Site U1553 offshore southern New Zealand.
  • 14 May 2026
  • FEMS microbiology letters
Phylogenetic support of pebS as a phage-exclusive auxiliary metabolic gene.
  • 29 Apr 2026
  • FEMS microbiology letters
The lizard microbiome: patterns, drivers, and functional implications.
  • 25 Apr 2026
  • FEMS microbiology letters
Comparative genomics of Lacticaseibacillus paracasei strain 69Bis reveals encoded probiotic traits and genomic specificities.
  • 19 May 2026
  • FEMS microbiology letters
Identification of interbacterial adhesion between oral Schaalia species and streptococcal serine-rich repeat glycoproteins.
  • 18 May 2026
  • FEMS microbiology letters
A novel metronidazole-degrading bacterium Sphingopyxis sp. K5: isolation, characterization, and application potential in soil and wastewater remediation.
  • 15 May 2026
  • FEMS microbiology letters
Sedimentary hiatus causes abrupt decline and shifts in marine subsurface sediment microbial communities: a study from IODP Exp. 378 Site U1553 offshore southern New Zealand.
  • 14 May 2026
  • FEMS microbiology letters
Phylogenetic support of pebS as a phage-exclusive auxiliary metabolic gene.
  • 29 Apr 2026
  • FEMS microbiology letters
The lizard microbiome: patterns, drivers, and functional implications.
  • 25 Apr 2026
  • FEMS microbiology letters

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