PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 17, 2026Microorganisms0 citationsOpen Access

First Report of fusF Gene in Staphylococcus kloosii from Virgin Tropical Soil: Expanding the Ecological Reservoirs of Fusidic Acid Resistance

View Full Paper
MAMaha AbdullahMZMohd Huzairi Mohd ZainudinMAMusheer A. Aljaberi

Key Points

  • The research aims to identify the prevalence of fusidic acid resistance genes in Staphylococcus kloosii found in virgin soil.
  • Isolated Staphylococcus species from virgin soil in Malaysia using VITEK®2 system.
  • Identified ten Staphylococcus isolates, including seven S. kloosii and three S. ureilyticus.
  • Performed PCR and sequencing to confirm the presence of the fusF gene.
  • Conducted phylogenetic analysis to assess genetic relationships among isolates.
  • Detected fusF gene in S. kloosii and S. ureilyticus isolates.
  • All isolates were phenotypically resistant to fusidic acid; S. ureilyticus displayed multi-drug resistance.
  • High sequence conservation observed between fusF-positive S. kloosii and S. ureilyticus, indicating potential gene transfer.

Abstract

Fusidic acid resistance in Staphylococcus spp. has historically been confined to Staphylococcus ureilyticus, with limited data on its environmental distribution. This study presents the first detection of the fusidic acid resistance gene fusF in Staphylococcus kloosii recovered from virgin soil at Kampung Batu 16, Dusun Tua, Hulu Langat, Malaysia. A total of ten Staphylococcus isolates were identified using the VITEK®2 system with high confidence (97–99%), comprising seven S. kloosii and three S. ureilyticus. Sequencing of representative isolates further corroborated the species identification. All isolates displayed phenotypic resistance to fusidic acid, while all S. ureilyticus (3/3) exhibited multi-drug resistant (MDR) traits and S. kloosii (7/7) exhibited non-MDR traits. PCR and sequencing confirmed the presence of fusF gene in S. ureilyticus (3/3) and S. kloosii (3/7). In addition, fusB and fusC genes were not detected in both species. The phylogenetic analysis (Maximum Likelihood, Tamura–Nei model) revealed high sequence conservation and clustering between fusF-positive S. kloosii and S. ureilyticus soil isolates, suggesting recent horizontal gene transfer between these two related species. The first detection of fusF gene in S. kloosii from virgin soil signifies the expansion of the ecological and host range beyond S. ureilyticus, establishes virgin soil as a potential antimicrobial resistance (AMR) reservoir, and underscores the One Health risks of resistance dissemination from environmental staphylococci. This baseline study highlights the importance of early AMR surveillance in tropical environments prior to agricultural development.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Abdullah et al. (2026) studied this question.

synapsesocial.com/papers/696b2616d2a12237a93496afhttps://doi.org/10.3390/microorganisms14010197
Ask AI
Helpful
Bookmark
Share
View Full Paper