{"help": "https://data.nsw.gov.au/data/api/3/action/help_show?name=package_show", "success": true, "result": {"author_email": null, "creator_user_id": "8d2ac61a-d63a-4456-a00d-b35fee4c4025", "id": "5d47f751-b430-4ca2-83bf-05fa5907ed83", "isopen": true, "license_id": "cc-by", "license_title": "Creative Commons Attribution", "license_url": "http://www.opendefinition.org/licenses/cc-by", "maintainer": null, "maintainer_email": null, "metadata_created": "2026-04-30T23:59:53.981973", "metadata_modified": "2026-05-07T01:16:04.139182", "name": "chlamydia-pecorum-strain-diversity-and-koala-immune-response-data", "notes": "These datasets are associated with the NSW Koala Research Plan project 2019_10: Impacts and drivers of chlamydial disease in the koala \u2013 relationships between the host, pathogen and environment. They comprise urogenital and ocular swab samples collected from koalas in the Liverpool Plains, Southern Highlands and Port Macquarie regions of New South Wales, together with associated clinical and health data.\r\nThe datasets include molecular characterisation of Chlamydia pecorum infections using genotyping of key virulence markers (incA, ORF663 and plasmid presence) and Multi\u2011Locus Sequence Typing (MLST) to assess strain diversity and emergence. In addition, immunological data are provided to investigate variation in koala immune responses in relation to chlamydial infection, co\u2011infection, and environmental stressors.\r\nFurther details on the datasets, analytical methods, and data access arrangements are available in the associated peer\u2011reviewed publications:\r\n\r\n- Fernandez et\u202fal. (2023). Genetic markers of Chlamydia pecorum virulence in ruminants support host\u2013pathogen relationships in koalas. Infection, Genetics and Evolution, 116, 105527.\r\n- Fernandez et\u202fal. (2024). Novel typing scheme reveals emergence and genetic diversity of Chlamydia pecorum. Veterinary Microbiology, 293, 110085.\r\n- Kidd et\u202fal. (2024). Koala MHCII association with chlamydia infertility remains equivocal. Scientific Reports, 14, 31074.\r\n- Fernandez et\u202fal. (2024). A novel multivariate immunological approach reveals immune variation associated with environmental conditions and co\u2011infection in the koala (Phascolarctos cinereus). 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