{"help": "https://data.gov.au/data/api/3/action/help_show?name=package_show", "success": true, "result": {"archived": false, "author_email": null, "contact_point": "esupport@tern.org.au", "creator_user_id": "c2fbbe4a-4ba0-4945-808b-67454605a4cf", "duplicate_score": 2, "geospatial_topic": [], "id": "917de2d3-254e-4c64-872a-127dfeff1609", "isopen": false, "language": "eng", "license_id": "notspecified", "license_title": "notspecified", "maintainer": null, "maintainer_email": null, "metadata_created": "2025-06-25T06:28:57.815119", "metadata_modified": "2025-06-25T06:28:57.815126", "name": "victorian-alpine-plot-network-alpine-long-term-monitoring-community-changes-multi-taxa-phylogen", "notes": "Global change poses significant and urgent challenges for biodiversity conservation. Species\npersistence under a rapidly changing environment ultimately depends on abilities to disperse\nto favourable habitats or adapt in situ by plastic or evolutionary mechanisms. Conservation\nstrategies preserving endemism and adaptive potential are critical.\nThis study aims to investigate the phylogeographic history of Victorian Alpine plants\nusing high-density genetic markers. Multi-taxa genomic data was compared to determine\ncommon phylogeographic patterns and identify evolutionary processes shaping biodiversity.\nSpatial patterns of genetic structure were used to delineate evolutionary bioregions and\nrefugia of high conservation value.\nLife-history traits have seldom been explicitly within a landscape genetic framework.\nSpatial isolation is a key component of genetic structure for sessile organisms. This study\ndemonstrates that life-history traits are primary drivers of inter-population connectivity and\ngenetic structure. Differences across taxa impacted on patterns of genetic structure on fine\nspatial scales, while common patterns were observed at broad scales regardless of life-history\ntraits.\nThese findings complement other Australian Alpine genetic studies indicate that flora\nand fauna in Victorian Alps share a common genetic structure and phylogeographic history\ndriven by unique processes. The geomorphology of the Victorian Alps has clearly driven the\nevolutionary trajectories of the native flora and fauna. This approach could inform evidence\nbased conservation policy.\nPreviously undelineated cryptic species were revealed by this study\u2014highlighting\nlimitations of traditional taxonomy and the utility of new approaches. This project\ndemonstrates how genomic technologies can characterise evolutionary processes at landscape\nscales, and detect important patterns in at-risk ecosystems.\nThis data is related to the following publication: Bell, N., Griffin, P. C., Hoffmann, A. A., &amp; Miller, A.D. (2018). Spatial patterns of genetic diversity among Australian alpine flora communities revealed by comparative phylogenomics. Journal of Biogeography, 45, 177\u2013189. Published online at https://onlinelibrary.wiley.com/doi/epdf/10.1111/jbi.13120 (free access). 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