Rowan D.H. Barrett results 16
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The evolution of genotypic parallelism under shared environmental conditions provides strong evidence for the role of natural selection. However, analyses typically examine genomic signatures of selection long after the putative selection event and only assess the repeatability of responses across spatial population replicates. This impedes our ability to attribute a particular response to a given selection pressure and to dis...
Plastic Responses and Standing Genetic Variation in Salinity‐Responsive Genes Under Projected Salinisation in Freshwater FishNARA Subscribed
Anthropogenic salinisation of freshwater ecosystems represents a major threat to biodiversity. While the ecological consequences of freshwater salinisation have received extensive investigation, our knowledge of the evolutionary responses to projected salinisation is more limited. Phenotypic plasticity can be an important first step to facilitate population persistence in stressful environments. Here, we combined high‐resoluti...
Traditional morphology‐ and molecular‐based biodiversity surveys provide essential information on species composition and diversity, but they rarely provide information about the physiological states of organisms, which are key indicators of ecosystem health. Environmental RNA (eRNA) has the potential to significantly enhance biomonitoring by providing insights beyond species detection. Recent studies suggest that extra‐organi...
Developmental Behavioural Plasticity and DNA Methylation Patterns in Response to Predation Stress in Trinidadian GuppiesNARA Subscribed
Early‐life experiences can predict the environments experienced later in life, giving individuals an opportunity to develop adaptive behaviour appropriate to a likely future environment. Epigenetic mechanisms such as DNA methylation (DNAm) have been implicated in developmental behavioural plasticity; however, studies investigating this possibility are limited in taxonomic breadth and ecological relevance. We investigated the i...
DNA methylation (DNAm) is a well‐studied epigenetic mechanism implicated in environmentally induced phenotypes and phenotypic plasticity. However, few studies investigate the timescale of DNAm shifts. Thus, it is uncertain whether DNAm can change on timescales relevant for rapid phenotypic shifts, such as during the expression of short‐term behavioural plasticity. DNAm could be especially reactive in the brain, potentially inc...
Counter‐gradient variation in gene expression between fish populations facilitates colonization of low‐dissolved oxygen environmentsNARA Subscribed
The role of phenotypic plasticity during colonization remains unclear due to the shifting importance of plasticity across timescales. In the early stages of colonization, plasticity can facilitate persistence in a novel environment; but over evolutionary time, processes such as genetic assimilation may reduce variation in plastic traits such that species with a longer evolutionary history in an environment can show lower level...
The role of plastic and evolved DNA methylation in parallel adaptation of threespine stickleback ( Gasterosteus aculeatus )NARA Subscribed
Repeated phenotypic patterns among populations undergoing parallel evolution in similar environments provide support for the deterministic role of natural selection. Epigenetic modifications can mediate plastic and evolved phenotypic responses to environmental change and might make important contributions to parallel adaptation. While many studies have explored the genetic basis of repeated phenotypic divergence, the role of e...
Environmental and geographical factors structure cauliflower coral's algal symbioses across the Indo‐PacificNARA Subscribed
Aim The symbioses between corals and endosymbiotic dinoflagellates have been described as a flexible relationship whose dynamics could serve as a source of resilience for coral reef ecosystems. However, the factors that drive the establishment and maintenance of this co‐evolutionary relationship remain unclear. We examined the environmental and geographical factors structuring dinoflagellate communities in a wide‐ranging Indo‐...
Evolution of thermal physiology alters the projected range of threespine stickleback under climate changeNARA Subscribed
Species distribution models (SDMs) are widely used to predict range shifts but could be unreliable under climate change scenarios because they do not account for evolution. The thermal physiology of a species is a key determinant of its range and thus incorporating thermal trait evolution into SDMs might be expected to alter projected ranges. We identified a genetic basis for physiological and behavioural traits that evolve in...
Parallel evolution is considered strong evidence for natural selection. However, few studies have investigated the process of parallel selection as it plays out in real time. The common approach is to study historical signatures of selection in populations already well adapted to different environments. Here, to document selection under natural conditions, we study six populations of threespine stickleback ( Gasterosteus acule...
Genome‐wide DNA methylation signatures of infection status in Trinidadian guppies ( Poecilia reticulata )NARA Subscribed
Epigenetic modification, especially DNA methylation, can play an important role in mediating gene regulatory response to environmental stressors and may be a key process affecting phenotypic plasticity and adaptation. Parasites are potent stressors with profound physiological and ecological effects on their hosts, yet it remains unclear how parasites influence host methylation patterns. Here, we used a well‐studied host–parasi...
The study of ecological speciation is inherently linked to the study of selection. Methods for estimating phenotypic selection within a generation based on associations between trait values and fitness (e.g. survival) of individuals are established. These methods attempt to disentangle selection acting directly on a trait from indirect selection caused by correlations with other traits via multivariate statistical approaches (...
The genetic consequences of selection in natural populationsNARA Subscribed
The selection coefficient, s , quantifies the strength of selection acting on a genetic variant. Despite this parameter's central importance to population genetic models, until recently we have known relatively little about the value of s in natural populations. With the development of molecular genetic techniques in the late 20th century and the sequencing technologies that followed, biologists are now able to identify geneti...
Gene expression plasticity evolves in response to colonization of freshwater lakes in threespine sticklebackNARA Subscribed
Phenotypic plasticity is predicted to facilitate individual survival and/or evolve in response to novel environments. Plasticity that facilitates survival should both permit colonization and act as a buffer against further evolution, with contemporary and derived forms predicted to be similarly plastic for a suite of traits. On the other hand, given the importance of plasticity in maintaining internal homeostasis, derived popu...
Bad coat, ripped genes: cryptic selection on coat colour varies with ontogeny in Soay sheepNARA Subscribed
A fundamental goal for evolutionary biologists is to connect the processes of natural selection and genetic drift with the maintenance of genetic variation in the wild. There are now scores of examples in which mapping phenotypes to genotypes has identified the molecular basis of traits in natural populations, but documenting the fitness consequences of these genes has proven more elusive. A long‐term study of several thousand...
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