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Sustainability Science · 2022 · Vol. 17 · Issue 4 · Springer
This paper presents MetaMAP: a new graphical tool and framework for designing well-integrated sustainability initiatives, and managing synergies and trade-offs regarding the Sustainable Development Goals (SDGs). The SDGs are highly interconnected, but many institutional structures and thinking paradigms lead us to look at them in isolation. This stifles innovation and social transformation. Most tools and frameworks, while val...
International Journal of Climatology · 2019 · Vol. 39 · Issue 6 · Wiley
Urban residents face increasing risk of heat stress due to the combined impact of climate change and intensification of the urban heat island (UHI) associated with urban growth. Considering the combined effect of urban growth and climate change is vital to understanding how temperatures in urban areas will change in the future. This study investigated the impact of urban growth and climate change on the UHI and heat stress in...
Sustainability Science · 2018 · Vol. 13 · Issue 6 · Springer
Design disciplines have a long history of creating well-integrated solutions to challenges which are complex, uncertain and contested by multiple stakeholders. Society faces similar challenges in implementing the Sustainable Development Goals, so design methods hold much potential. While principles of good design are well established, there has been limited integration of design thinking with sustainability science. To advance...
Conservation Biology · 2016 · Vol. 30 · Issue 4 · Wiley
Community‐based conservation programs in developing countries are often based on the assumption that heteronomous motivation (e.g., extrinsic incentives such as economic rewards and pressure or coercion to act) will incite local communities to adopt conservation behaviors. However, this may not be as effective or sustainable as autonomous motivations (e.g., an intrinsic desire to act due to inherent enjoyment or self‐identific...
Global Change Biology · 2015 · Vol. 21 · Issue 9 · Wiley
Forest vertebrate fauna provide critical services, such as pollination and seed dispersal, which underpin functional and resilient ecosystems. In turn, many of these fauna are dependent on the flowering phenology of the plant species of such ecosystems. The impact of changes in climate, including climate extremes, on the interaction between these fauna and flora has not been identified or elucidated, yet influences on flowerin...
Conservation Biology · 2014 · Vol. 28 · Issue 6 · Wiley
Despite several decades of research on the effects of fragmentation and habitat change on biodiversity, there remain strong biases in the geographical regions and taxonomic species studied. The knowledge gaps resulting from these biases are of particular concern if the forests most threatened with modification are also those for which the effects of such change are most poorly understood. To quantify the nature and magnitude o...
Global Ecology and Biogeography · 2014 · Vol. 23 · Issue 11 · Wiley
Aim Improving our understanding of the drivers of forest fragmentation is fundamental to mitigating the consequences of anthropogenic fragmentation for biodiversity. Moreover, the impacts of fragmentation on biodiversity depend on the spatial scale at which fragmentation occurs. Therefore, understanding how the effect of land use on fragmentation patterns varies across scales is critical to ensure that fragmentation is managed...
International Journal of Climatology · 2014 · Vol. 34 · Issue 4 · Wiley
Land cover changes ( LCCs ) play an important role in the climate system. Research over recent decades highlights the impacts of these changes on atmospheric temperature, humidity, cloud cover, circulation, and precipitation. These impacts range from the local‐ and regional‐scale to sub‐continental and global‐scale. It has been found that the impacts of regional‐scale LCC in one area may also be manifested in other parts of th...
Molecular Ecology · 2013 · Vol. 22 · Issue 14 · Wiley
Landscape genetics offers a powerful approach to understanding species' dispersal patterns. However, a central obstacle is to account for ecological processes operating at multiple spatial scales, while keeping research outcomes applicable to conservation management. We address this challenge by applying a novel multilevel regression approach to model landscape drivers of genetic structure at both the resolution of individuals...
Global Ecology and Biogeography · 2012 · Vol. 21 · Issue 6 · Wiley
Aim Thresholds often exist in the relationship between species richness and the area of remaining habitat in human‐modified landscapes, prompting debate about the mechanisms responsible. We hypothesize that if species–area relationships differ with underlying factors such as landscape productivity, and such factors correlate with patterns of habitat clearance, then spurious thresholds can arise where the separate species–area...
Ecology · 2012 · Vol. 93 · Issue 3 · Wiley
Some species have disproportionate influence on assemblage structure, given their numbers or biomass. Most examples of such “strong interactors” come from small‐scale experiments or from observations of the effects of invasive species. There is evidence that entire avian assemblages in open woodlands can be influenced strongly by individual species over very large areas in eastern Australia, with small‐bodied species ( 2000 km...
Conservation Biology · 2010 · Vol. 24 · Issue 4 · Wiley
Adaptive management is an iterative process of gathering new knowledge regarding a system's behavior and monitoring the ecological consequences of management actions to improve management decisions. Although the concept originated in the 1970s, it is rarely actively incorporated into ecological restoration. Bayesian networks (BNs) are emerging as efficient ecological decision‐support tools well suited to adaptive management, b...