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Conservation Biology · 2026 · Vol. 40 · Issue 4 · Wiley
Indigenous Peoples actively manage or have tenure rights over lands where many rare and valued species occur. To meet national and global conservation targets, it is important to meaningfully consider Indigenous knowledges and rights in endangered species laws. We examined whether the Canadian Species at Risk Act (SARA) has upheld its commitment to consider Indigenous knowledges in decisions pertaining to endangered species as...
Molecular Ecology · 2026 · Vol. 35 · Issue 7 · Wiley
Anthropogenic activities have led to an unprecedented crisis in freshwater biodiversity loss. The capacity to monitor the abundance of wild populations is critical to conserving biodiversity, but conventional physical specimen collection methods are invasive, costly and labour‐intensive. Environmental DNA (eDNA) offers a promising alternative, being easy to sample, with studies under controlled laboratory conditions showing co...
Molecular Ecology · 2025 · Vol. 34 · Issue 23 · Wiley
The contributions of distinct populations to annual harvests provide key insights to conservation, especially in migratory species that return to specific reproductive areas. In this context, genetic stock identification (GSI) requires reference samples from source populations to assign harvested individuals, yet sampling might be challenging as reproductive areas could be remote and/or unknown. To investigate intraspecific va...
Molecular Ecology · 2025 · Vol. 34 · Issue 9 · Wiley
Dispersal is a highly variable trait influenced by life history and ecological factors, affecting gene flow when dispersers successfully reproduce. Anadromous salmonids, with their diverse migratory strategies and ecological traits, serve as an ideal model for studying dispersal evolution, showcasing significant inter‐ and intraspecific variation. Although environmental factors like temperature likely influence dispersal prope...
Journal of Fish Biology · 2024 · Vol. 105 · Issue 1 · Wiley
Understanding recruitment, the process by which individuals are added to a population or to a fishery, is critical for understanding population dynamics and facilitating sustainable fisheries management. Important variation in recruitment dynamics is observed among populations, wherein some populations exhibit asymptotic productivity and others exhibit overcompensation (i.e., compensatory density‐dependence in recruitment). Ou...
Molecular Ecology · 2024 · Vol. 33 · Issue 11 · Wiley
Effective population size ( N e ) is a particularly useful metric for conservation as it affects genetic drift, inbreeding and adaptive potential within populations. Current guidelines recommend a minimum N e of 50 and 500 to avoid short‐term inbreeding and to preserve long‐term adaptive potential respectively. However, the extent to which wild populations reach these thresholds globally has not been investigated, nor has the...
Molecular Ecology · 2023 · Vol. 32 · Issue 16 · Wiley
The broad scale distribution of population‐specific genetic diversity (GD P ) across taxa remains understudied relative to species diversity gradients, despite its relevance for systematic conservation planning. We used nuclear DNA data collected from 3678 vertebrate populations across the Americas to assess the role of environmental and spatial variables in structuring the distribution of GD P , a key component of adaptive po...
Global Change Biology · 2022 · Vol. 28 · Issue 24 · Wiley
Salmonids are of immense socio‐economic importance in much of the world, but are threatened by climate change. This has generated a substantial literature documenting the effects of climate variation on salmonid productivity in freshwater ecosystems, but there has been no global quantitative synthesis across studies. We conducted a systematic review and meta‐analysis to gain quantitative insight into key factors shaping the ef...
Ecology Letters · 2021 · Vol. 24 · Issue 11 · Wiley
Genetic differentiation and phenotypic plasticity jointly shape intraspecific trait variation, but their roles differ among traits. In short‐lived plants, reproductive traits may be more genetically determined due to their impact on fitness, whereas vegetative traits may show higher plasticity to buffer short‐term perturbations. Combining a multi‐treatment greenhouse experiment with observational field data throughout the rang...
Global Ecology and Biogeography · 2020 · Vol. 29 · Issue 5 · Wiley
Motivation Theory describing biodiversity gradients has focused on species richness with less conceptual synthesis outlining expectations for intraspecific diversity gradients, that is, broad‐scale population richness and genetic diversity. Consequently, there is a need for a diversity–gradient synthesis that complements species richness with population richness and genetic diversity. Review methods Species and population rich...
Fish and Fisheries · 2020 · Vol. 21 · Issue 3 · Wiley
Understanding the complex variation in patterns of density‐dependent individual growth and survival across populations is critical to adaptive fisheries management, but the extent to which this variation is caused by biological or methodological differences is unclear. Consequently, we conducted a correlational meta‐analysis of published literature to investigate the relative importance of methodological and biological predict...
Molecular Ecology · 2017 · Vol. 26 · Issue 23 · Wiley
Is a key theory of evolutionary and conservation biology—that loss of genetic diversity can be predicted from population size—on shaky ground? In the face of increasing human‐induced species depletion and habitat fragmentation, this question and the study of genetic diversity in small populations are paramount to understanding the limits of species’ responses to environmental change and to providing remedies to endangered spec...
Molecular Ecology · 2016 · Vol. 25 · Issue 18 · Wiley
Adult census population size ( N ) and effective number of breeders ( N b ) are highly relevant for designing effective conservation strategies. Both parameters are often challenging to quantify, however, making it of interest to determine whether one parameter can be generalized from the other. Yet, the spatiotemporal relationship between N and N b has not been well characterized empirically in many taxa. We analysed this rel...
Global Change Biology · 2015 · Vol. 21 · Issue 10 · Wiley
Global biodiversity is affected by numerous environmental drivers. Yet, the extent to which global environmental changes contribute to changes in local diversity is poorly understood. We investigated biodiversity changes in a meta‐analysis of 39 resurvey studies in European temperate forests (3988 vegetation records in total, 17–75 years between the two surveys) by assessing the importance of (i) coarse‐resolution (i.e., among...
Ecology · 2015 · Vol. 96 · Issue 4 · Wiley
The potential influence of population size on the magnitude of phenotypic plasticity, a key factor in adaptation to environmental change, has rarely been studied. Conventionally, small populations might exhibit consistently lower plasticity than large populations if small population habitats are generally poor in quality and if genetic diversity underpinning plasticity is lost as population size is reduced. Alternatively, smal...
Molecular Ecology · 2012 · Vol. 21 · Issue 11 · Wiley
Escaped domesticated individuals can introduce disadvantageous traits into wild populations due to both adaptive differences between population ancestors and human‐induced changes during domestication. In contrast to their domesticated counterparts, some endangered wild Atlantic salmon populations encounter during their marine stage large amounts of suspended sediments, which may act as a selective agent. We used microarrays t...