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Global Ecology and Biogeography · 2026 · Vol. 35 · Issue 8 · Wiley
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...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 2 · Wiley
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...
Global Ecology and Biogeography · 2024 · Vol. 33 · Issue 2 · Wiley
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...
Regional Environmental Change · 2023 · Vol. 23 · Issue 2 · Springer
Nearly a billion people depend on tropical seascapes. The need to ensure sustainable use of these vital areas is recognised, as one of 17 policy commitments made by world leaders, in Sustainable Development Goal (SDG) 14 (‘Life below Water’) of the United Nations. SDG 14 seeks to secure marine sustainability by 2030. In a time of increasing social-ecological unpredictability and risk, scientists and policymakers working toward...
Ecology Letters · 2022 · Vol. 25 · Issue 6 · Wiley
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...
Global Change Biology · 2022 · Vol. 28 · Issue 5 · Wiley
Over this century, coral reefs will run the gauntlet of climate change, as marine heatwaves (MHWs) become more intense and frequent, and ocean acidification (OA) progresses. However, we still lack a quantitative assessment of how, and to what degree, OA will moderate the responses of corals to MHWs as they intensify throughout this century. Here, we first projected future MHW intensities for tropical regions under three future...
Global Change Biology · 2021 · Vol. 27 · Issue 21 · Wiley
Our understanding of the response of reef‐building corals to changes in their physical environment is largely based on laboratory experiments, analysis of long‐term field data, and model projections. Experimental data provide unique insights into how organisms respond to variation of environmental drivers. However, an assessment of how well experimental conditions cover the breadth of environmental conditions and variability w...
Fish and Fisheries · 2020 · Vol. 21 · Issue 4 · Wiley
The concept of “blue growth,” which aims to promote the growth of ocean economies while holistically managing marine socioecological systems, is emerging within national and international marine policy. The concept is often promoted as being novel; however, we show that historical analogies exist that can provide insights for contemporary planning and implementation of blue growth. Using a case‐study approach based on expert k...
Global Change Biology · 2015 · Vol. 21 · Issue 10 · Wiley
Perhaps the most pressing issue in predicting biotic responses to present and future global change is understanding how environmental factors shape the relationship between ecological traits and extinction risk. The fossil record provides millions of years of insight into how extinction selectivity (i.e., differential extinction risk) is shaped by interactions between ecological traits and environmental conditions. Numerous pa...
Journal of Fish Biology · 2014 · Vol. 85 · Issue 3 · Wiley
This research describes the pineal complex histology in juvenile and adult Cichlasoma dimerus , and the effect of different photoperiods on its cell morphology. In both juveniles and adults, the pineal complex of C . dimerus has three components: the pineal organ, consisting of a pineal vesicle ( PV ) and a pineal stalk, the parapineal organ and the dorsal sac. Although a strong morphological resemblance exists between the two...
Ecology · 2014 · Vol. 95 · Issue 4 · Wiley
Abiotic filtering is a major driver of gradients in the structure and functioning of ecosystems from the tropics to the poles. It is thus likely that environmental filtering is an important assembly process at the transition of biogeographical zones where many species occur at their range limits. Shifts in species abundances and association patterns along environmental gradients can be indicative of environmental filtering, wh...
Ecology Letters · 2013 · Vol. 16 · Issue 12 · Wiley
An increasing number of short‐term experimental studies show significant effects of projected ocean warming and ocean acidification on the performance on marine organisms. Yet, it remains unclear if we can reliably predict the impact of climate change on marine populations and ecosystems, because we lack sufficient understanding of the capacity for marine organisms to adapt to rapid climate change. In this review, we emphasise...