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Aim Direct human impacts and climate change jeopardise the stability of ecological systems. Recent trends are built atop a long history of vegetation change from the Pleistocene deglaciation and Holocene human population expansion. We aimed to model a long‐term measure of ecological stability over the last 20,000 years, a period that includes both the most recent global warming and the spread of human civilisation. Location Eu...
A Conceptual Framework for Measuring Ecological NoveltyNARA Subscribed
Background Human pressures are driving the emergence of unprecedented, ‘novel’, ecological and environmental systems. The concept of novel (eco)systems is well accepted by the scientific community, but the use and measurement of novelty has outgrown initial definitions and critiques. There are still unresolved methodological and conceptual differences in quantifying novelty that prevent a unified research approach. Framework H...
Local compositional change and regional stability across 3000 years of coral reef developmentNARA Subscribed
Aim Measuring changes in ecological diversity over time is core to understanding and managing human impacts on natural systems. Observational data do not capture pre‐modern community states or multiple generations of long‐lived taxa, so interpretation of current diversity trends requires comparison with the past. We aimed to estimate diversity trends over long time periods in a series of fossil coral terraces. Location Huon pe...
Emergence patterns of locally novel plant communities driven by past climate change and modern anthropogenic impactsNARA Subscribed
Anthropogenic disturbance and climate change can result in dramatic increases in the emergence of new, ecologically novel, communities of organisms. We used a standardised framework to detect local novel communities in 2135 pollen time series over the last 25,000 years. Eight thousand years of post‐glacial warming coincided with a threefold increase in local novel community emergence relative to glacial estimates. Novel commun...
Aim Understanding biodiversity–ecosystem function (BEF) relationships in forest systems is crucial for effective forest management and restoration, yet testing these relationships is often limited by biased diversity patterns in forestry plantings (biased towards commercially valuable species) and uncontrollable diversity in mature natural forests. Multispecies reforestation plantings present a valuable opportunity to investig...
Broadening the taxonomic scope of coral reef palaeoecological studies using ancient DNANARA Subscribed
Marine environments face acute pressures from human impacts, often resulting in substantial changes in community structure. On the inshore Great Barrier Reef (GBR), palaeoecological studies show the collapse of the previously dominant coral Acropora from the impacts of degraded water quality associated with European colonization. Even more dramatic impacts can result in the replacement of corals by fleshy macroalgae on modern...
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