During range expansions, organisms can use epigenetic mechanisms to adjust to conditions in novel areas by altering gene expression and enabling phenotypic plasticity. Here, we predicted that the number of CpG sites within the genome, one form of epigenetic potential, would be important for successful range expansions because DNA methylation can modulate gene expression, and consequently plasticity. We asked how the number of CpG sites and DNA methylation varied across five locations in the ~70 year-old Kenyan house sparrow ( Passer domesticus ) range expansion. We found that the number of CpG sites was highest towards the vanguard of the invasion and decreased towards the range core. Analysis suggests that this pattern may have been driv...
The early environment impacts many aspects of an individual’s developing phenotype. In particular, e...
DNA methylation could shape phenotypic responses to environmental cues and underlie developmental pl...
Identifying the molecular mechanisms involved in rapid adaptation to novel environments and determin...
The first two authors contributed equally to this work. Synopsis The spread of invasive species pres...
Epigenetic modifications play a critical role in numerous processes throughout the lifetime of an or...
Population epigenetics investigates the mechanisms that allow for plasticity in gene expression with...
Epigenetic mechanisms impact several phenotypic traits and may be important for ecology and evolutio...
Epigenetics focuses on how genetic and phenotypic changes may occur by mechanisms that do not alter ...
Invasive populations are often associated with low levels of genetic diversity due to population bot...
Epigenetic modifications can respond rapidly to environmental changes and can shape phenotypic varia...
Thesis by publication.Includes bibliographical references.Chapter One. General introduction -- Chapt...
DNA methylation could shape phenotypic responses to environmental cues and underlie developmental pl...
Epigenetic modifications can respond rapidly to environmental changes and can shape phenotypic varia...
Epigenetic mechanisms can alter gene expression without a change in the nucleotide sequence and are ...
Epigenetic mechanisms can alter gene expression without a change in the nucleotide sequence and are ...
The early environment impacts many aspects of an individual’s developing phenotype. In particular, e...
DNA methylation could shape phenotypic responses to environmental cues and underlie developmental pl...
Identifying the molecular mechanisms involved in rapid adaptation to novel environments and determin...
The first two authors contributed equally to this work. Synopsis The spread of invasive species pres...
Epigenetic modifications play a critical role in numerous processes throughout the lifetime of an or...
Population epigenetics investigates the mechanisms that allow for plasticity in gene expression with...
Epigenetic mechanisms impact several phenotypic traits and may be important for ecology and evolutio...
Epigenetics focuses on how genetic and phenotypic changes may occur by mechanisms that do not alter ...
Invasive populations are often associated with low levels of genetic diversity due to population bot...
Epigenetic modifications can respond rapidly to environmental changes and can shape phenotypic varia...
Thesis by publication.Includes bibliographical references.Chapter One. General introduction -- Chapt...
DNA methylation could shape phenotypic responses to environmental cues and underlie developmental pl...
Epigenetic modifications can respond rapidly to environmental changes and can shape phenotypic varia...
Epigenetic mechanisms can alter gene expression without a change in the nucleotide sequence and are ...
Epigenetic mechanisms can alter gene expression without a change in the nucleotide sequence and are ...
The early environment impacts many aspects of an individual’s developing phenotype. In particular, e...
DNA methylation could shape phenotypic responses to environmental cues and underlie developmental pl...
Identifying the molecular mechanisms involved in rapid adaptation to novel environments and determin...