Understanding how natural environments shape phenotypic variation is a major aim in evolutionary biology. Here, we have examined clinal, likely genetically-based variation in morphology among 19 populations of the fruit fly (Drosophila melanogaster) from Africa and Europe, spanning a range from sea level to 3000 m altitude and including locations approximating the southern and northern range limit. We were interested in testing whether latitude and altitude have similar phenotypic effects, as has often been postulated. Both latitude and altitude were positively correlated with wing area, ovariole number and cell number. In contrast, latitude and altitude had opposite effects on the ratio between ovariole number and body size, which was nega...
Geographic variation in phenotypic traits is commonly correlated with spatial variation in the envir...
© 2014 The Authors. While geographic trait variation along environmental clines is widespread, assoc...
Although genetic and plastic responses are sometimes considered as unrelated processes, their phenot...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Geographical patterns of morphological variation have been useful in addressing hypotheses about env...
Understanding the physiological and genetic basis of growth and body size variation has wide-ranging...
Clines in life history traits, presumably driven by spatially varying selection, are widespread. Maj...
Clinal variation is one of the most emblematic examples of the action of natural selection at a wide...
We investigated the cellular basis of two extensive, continuous, latitudinal, genetic, body size cli...
Geographic variation in phenotypic traits is commonly correlated with spatial variation in the envir...
© 2014 The Authors. While geographic trait variation along environmental clines is widespread, assoc...
Although genetic and plastic responses are sometimes considered as unrelated processes, their phenot...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Understanding how natural environments shape phenotypic variation is a major aim in evolutionary bio...
Geographical patterns of morphological variation have been useful in addressing hypotheses about env...
Understanding the physiological and genetic basis of growth and body size variation has wide-ranging...
Clines in life history traits, presumably driven by spatially varying selection, are widespread. Maj...
Clinal variation is one of the most emblematic examples of the action of natural selection at a wide...
We investigated the cellular basis of two extensive, continuous, latitudinal, genetic, body size cli...
Geographic variation in phenotypic traits is commonly correlated with spatial variation in the envir...
© 2014 The Authors. While geographic trait variation along environmental clines is widespread, assoc...
Although genetic and plastic responses are sometimes considered as unrelated processes, their phenot...