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March 5, 2026Pathogens1 citationsOpen Access

Rainfall-Driven Mobilisation of Clinically Relevant Burkholderia pseudomallei in a Groundwater-Connected Urban Creek, Northern Australia

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KJKaitlin Janssen-GroesbeekJEJennifer EllimanCRC. M. Rush

Key Points

  • The research aims to define environmental factors influencing Burkholderia pseudomallei mobility in surface waters.
  • Collected water samples from a groundwater-connected seasonal creek over 12 months
  • Cultured samples on Ashdown agar and confirmed identity using qPCR
  • Performed multi-locus sequence typing using Oxford Nanopore MinION platform
  • Eighteen out of 59 samples tested positive for Burkholderia pseudomallei
  • Detection was exclusive to turbid, flowing water after rainfall of ≥30 mm
  • Identified 18 sequence types with 12 novel types, including matches to clinical strains

Abstract

Burkholderia pseudomallei is a saprophytic environmental bacterium and the causative agent of melioidosis, a serious opportunistic infection in tropical regions, including northern Australia. Infection occurs following environmental exposure via percutaneous inoculation, ingestion, or inhalation; however, the environmental reservoirs and transmission pathways responsible for human disease remain poorly defined. Groundwater has been implicated as a potential source of infection, but the factors influencing the persistence and mobility of B. pseudomallei in surface waters in North Queensland are not well understood. Water samples were collected from a groundwater-connected seasonal creek in Townsville, North Queensland, over a 12-month period encompassing wet and dry seasons. Samples were cultured on Ashdown agar and confirmed as B. pseudomallei by qPCR. Multi-locus sequence typing (MLST) was performed using targeted allele sequencing on the Oxford Nanopore MinION platform. Eighteen of 59 water samples were culture-positive for B. pseudomallei. Detection occurred exclusively in turbid, flowing water following ≥30 mm of rainfall and was observed in both wet and dry seasons. MLST of 48 isolates identified 18 sequence types, including 12 novel types. Six sequence types matched previously reported Townsville clinical isolates. These findings indicate that groundwater from a connected urban creek may function as a mobile reservoir for clinically relevant B. pseudomallei strains under specific hydrological and climatic conditions, highlighting rainfall-driven processes as key drivers of environmental exposure risk.

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Cite This Study

Janssen-Groesbeek et al. (2026) studied this question.

synapsesocial.com/papers/69a91d6dd6127c7a504c0239https://doi.org/10.3390/pathogens15030276
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