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Ecology · 2026 · Vol. 107 · Issue 2 · Wiley
Global change is causing a widespread redistribution of species, and novel species are expected to impact populations in their recipient communities. Theory from invasion biology provides a framework to predict the impacts of range‐shifting species. Specifically, the impacts of invasive predators are expected to be nonlinear (greatest per capita effects at low densities) and to be greater in their invaded ranges when compared...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 4 · Wiley
Aim Non‐native plants have the potential to harm ecosystems. Harm is classically related to their distribution and abundance, but this geographical information is often unknown. Here, we assess geographical commonness as a potential indicator of invasive status for non‐native flora in the United States. Geographical commonness could inform invasion risk assessments across species and ecoregions. Location Conterminous United St...
Global Ecology and Biogeography · 2025 · Vol. 34 · Issue 3 · Wiley
Aim Beta diversity quantifies the similarity of ecological assemblages. Its increase, known as biotic homogenisation, can be a consequence of biological invasions. However, species occurrence (presence/absence) and abundance‐based analyses can produce contradictory assessments of the magnitude and direction of changes in beta diversity. Previous work indicates these contradictions should be less frequent in nature than in theo...
Ecology · 2023 · Vol. 104 · Issue 8 · Wiley
Biological processes play important roles in determining how global changes manifest at local scales. Primary producers can absorb increased CO 2 via daytime photosynthesis, modifying pH in aquatic ecosystems. Yet producers and consumers also increase CO 2 via respiration. It is unclear whether biological modification of pH differs across the year, and, if so, what biotic and abiotic drivers underlie temporal differences. We a...
Biological Invasions · 2023 · Vol. 25 · Issue 2 · Springer
High community diversity may either prevent or promote the establishment of exotic species. The biotic resistance hypothesis holds that species-rich communities are more resistant to invasion than species-poor communities due to mechanisms including greater interspecific competition. Conversely, the invasional meltdown hypothesis proposes that greater exotic diversity increases invasibility via facilitative interactions betwee...
Oecologia · 2022 · Vol. 198 · Issue 3 · Springer
Globally, species are undergoing range shifts in response to climate change. However, the potential impacts of climate-driven range shifts are not well understood. In southern California, the predatory whelk Mexacanthina lugubris has undergone a northward range shift of more than 100 km in the past four decades. We traced the history of the whelk’s range shift and assessed potential effects using an integrated approach, consis...
Ecology · 2022 · Vol. 103 · Issue 1 · Wiley
Under climate change, marine organisms will need to tolerate or adapt to increasing temperatures to persist. The ability of populations to cope with thermal stress may be influenced by conditions experienced by parents, by both genetic changes and transgenerational phenotypic plasticity through epigenetics or maternal provisioning. In organisms with complex life cycles, larval stages are particularly vulnerable to stress. Posi...
Estuaries and Coasts · 2021 · Vol. 44 · Issue 2 · Springer
Susan Lynn Williams (1951–2018) was an exceptional marine ecologist whose research focused broadly on the ecology of benthic nearshore environments dominated by seagrasses, seaweeds, and coral reefs. She took an empirical approach founded in techniques of physiological ecology. Susan was committed to applying her research results to ocean management through outreach to decision-makers and resource managers. Susan’s career incl...
Global Change Biology · 2017 · Vol. 23 · Issue 7 · Wiley
Ocean warming, acidification, deoxygenation and reduced productivity are widely considered to be the major stressors to ocean ecosystems induced by emissions of CO 2 . However, an overlooked stressor is the change in ocean circulation in response to climate change. Strong changes in the intensity and position of the western boundary currents have already been observed, and the consequences of such changes for ecosystems are be...
Global Change Biology · 2017 · Vol. 23 · Issue 1 · Wiley
The earth is in the midst of a biodiversity crisis, and projections indicate continuing and accelerating rates of global changes. Future alterations in communities and ecosystems may be precipitated by changes in the abundance of strongly interacting species, whose disappearance can lead to profound changes in abundance of other species, including an increase in extinction rate for some. Nearshore coastal communities are often...
Global Ecology and Biogeography · 2015 · Vol. 24 · Issue 3 · Wiley
Aim Our understanding of potential ranges for native and non‐native species is often based on their current geographic distributions. Non‐native species have had less time than co‐occurring native species to expand their ranges following introduction, so non‐native ranges may under‐represent suitable conditions. Therefore it is often assumed that species distribution models will predict disproportionately smaller potential ran...
Ecology Letters · 2013 · Vol. 16 · Issue 2 · Wiley
Climate change and biological invasions are primary threats to global biodiversity that may interact in the future. To date, the hypothesis that climate change will favour non‐native species has been examined exclusively through local comparisons of single or few species. Here, we take a meta‐analytical approach to broadly evaluate whether non‐native species are poised to respond more positively than native species to future c...
Ecology · 2010 · Vol. 91 · Issue 8 · Wiley
We addressed the potential for climate change to facilitate invasions and precipitate shifts in community composition by testing effects of ocean warming on species in a marine fouling community in Bodega Harbor, Bodega Bay, California, USA. First, we determined that introduced species tolerated significantly higher temperatures than natives, suggesting that climate change will have a disproportionately negative impact on nati...
Global Ecology and Biogeography · 2010 · Vol. 19 · Issue 3 · Wiley
Aim Shifts in species ranges are a predicted and realized effect of global climate change; however, few studies have addressed the rates and consequence of such shifts, particularly in marine systems. Given ecological similarities between shifting and introduced species, we examined how our understanding of range shifts may be informed by the more established study of non‐native species introductions. Location Marine systems w...
Ecology Letters · 2006 · Vol. 9 · Issue 2 · Wiley
Anthropogenically induced global climate change has profound implications for marine ecosystems and the economic and social systems that depend upon them. The relationship between temperature and individual performance is reasonably well understood, and much climate‐related research has focused on potential shifts in distribution and abundance driven directly by temperature. However, recent work has revealed that both abiotic...