Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, potentially requiring local adaptation and/or phenotypic plasticity to match their phenotypes to differing environments. These eco‐evolutionary processes are of particular interest in organisms with traits that are directly affected by temperature, such as embryonic development in oviparous ectotherms. Here we examine the spatial distribution of fitness‐related early life phenotypes across the range of a widespread vertebrate, the painted turtle (Chrysemys picta). We quantified embryonic and hatchling traits from seven locations (in Idaho, Minnesota, Oregon, Illinois, Nebraska, Kansas, and New Mexico) after incubating eggs under constant condition...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Early environments can profoundly influence an organism in ways that persist over its life. In repti...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic ranges experience considerable variation in climate. To the extent these ...
Population‐scale responses of key ecological traits to local environmental conditions provide insigh...
PublishedJournal ArticleTemperature can have a profound effect on the phenotype of reptilian offspri...
Journal ArticleResearch Support, Non-U.S. Gov'tCopyright © 2011 The Royal SocietyElectronic suppleme...
Increases in phenotypic variation under extreme (e.g. novel or stressful) environmental conditions a...
Increases in phenotypic variation under extreme (e.g. novel or stressful) environmental conditions a...
Environmental temperature is a key driver of variation in developmental physiological rates in repti...
Environmental temperature is a key driver of variation in developmental physiological rates in repti...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Early environments can profoundly influence an organism in ways that persist over its life. In repti...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic distributions generally encompass diverse macroclimatic conditions, poten...
Taxa with large geographic ranges experience considerable variation in climate. To the extent these ...
Population‐scale responses of key ecological traits to local environmental conditions provide insigh...
PublishedJournal ArticleTemperature can have a profound effect on the phenotype of reptilian offspri...
Journal ArticleResearch Support, Non-U.S. Gov'tCopyright © 2011 The Royal SocietyElectronic suppleme...
Increases in phenotypic variation under extreme (e.g. novel or stressful) environmental conditions a...
Increases in phenotypic variation under extreme (e.g. novel or stressful) environmental conditions a...
Environmental temperature is a key driver of variation in developmental physiological rates in repti...
Environmental temperature is a key driver of variation in developmental physiological rates in repti...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Recent climate change has re-invigorated scientific interest in the dynamics of geographic distribut...
Early environments can profoundly influence an organism in ways that persist over its life. In repti...