Context . The Murray – Darling Basin serves as a crucial habitat for aggregating waterbirds; however, decades of large-scale regulation of rivers and water resources have adversely affected waterbird breeding… Click to show full abstract
Context . The Murray – Darling Basin serves as a crucial habitat for aggregating waterbirds; however, decades of large-scale regulation of rivers and water resources have adversely affected waterbird breeding in the Basin. Aims . To understand the characteristics of wetlands that attract and support aggregating waterbirds, focusing on identifying environmental conditions conducive to waterbird breeding. Methods . In total, 52 wetland sites across the Murray – Darling Basin, with high waterbird abundances, were identi fi ed, of which 26 supported waterbird breeding. Classi fi cation models were developed using temporally static and dynamic environmental datasets to discern wetland characteristics associated with waterbird breeding. Key results . Analyses showed that wetlands supporting waterbird breeding contained a maximum inundated area of ‘ other shrublands ’ exceeding 3.635 km 2 and variation in normalised difference vegetation index, possibly re fl ective of a ‘ boom and bust ’ ecological response. Conclusions . Understanding the habitat requirements of wetlands to prompt waterbird breeding is critical for effective environmental water management and conservation strategies. Implications . Targeted wetland management and environmental water allocation to support waterbird breeding populations in the Murray – Darling Basin is essential for continued waterbird breeding. There is a need for continued research to re fi ne management strategies and ensure the long-term sustainability of waterbird populations in the face of ongoing environmental challenges.
               
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