This data was collected in our laboratory using one control and one selected population of D. melanogaster that was experimentaly evolved for increased adaptation to chronic larval malnutrition. We use Line-cross analysis to determine the genetic architecture of three traits; Egg to adult viability, developmental rate and adult dry weight. The data were collected as described in the materials and methods section of the paper
Summary 1. The present study attemps to examine some aspects of the fitness of populations, here de...
Studying the processes affecting variation for preadult viability is essential to understand the evo...
The purpose of the study was to determine the genetic parameters because they vary from one line to ...
What are the genetics of phenotypes other than fitness, in outbred populations? To answer this quest...
Egg-to-adult viability data from D. melanogaster (the Dahomey laboratory-adapted population), measur...
We have sampled wild chromosomes from two natural populations of Drosophila melanogaster and obtaine...
According to the genic capture hypothesis, the maintenance of additive genetic variation in fitness-...
International audienceAccording to the genic capture hypothesis, the maintenance of additive genetic...
Egg-to-adult viability data from D. melanogaster (the Dahomey laboratory-adapted population), measur...
This data is from laboratory populations of D. melanogaster that have evolved tolerance to chronic l...
Life-history traits or “fitness components”—such as age and size at maturity, fecundity and fertili...
We estimated genetic variance components for body weight in D. melanogaster. The second chromosomes ...
Life history traits--hatchability, longevity, and egg production--of five wild-caught populations of...
Data on the four juvenile traits scored and reported in the publication. Trait scores are given as m...
Data on the fitness of different lines, following mutation accumulation, for either juveniles, males...
Summary 1. The present study attemps to examine some aspects of the fitness of populations, here de...
Studying the processes affecting variation for preadult viability is essential to understand the evo...
The purpose of the study was to determine the genetic parameters because they vary from one line to ...
What are the genetics of phenotypes other than fitness, in outbred populations? To answer this quest...
Egg-to-adult viability data from D. melanogaster (the Dahomey laboratory-adapted population), measur...
We have sampled wild chromosomes from two natural populations of Drosophila melanogaster and obtaine...
According to the genic capture hypothesis, the maintenance of additive genetic variation in fitness-...
International audienceAccording to the genic capture hypothesis, the maintenance of additive genetic...
Egg-to-adult viability data from D. melanogaster (the Dahomey laboratory-adapted population), measur...
This data is from laboratory populations of D. melanogaster that have evolved tolerance to chronic l...
Life-history traits or “fitness components”—such as age and size at maturity, fecundity and fertili...
We estimated genetic variance components for body weight in D. melanogaster. The second chromosomes ...
Life history traits--hatchability, longevity, and egg production--of five wild-caught populations of...
Data on the four juvenile traits scored and reported in the publication. Trait scores are given as m...
Data on the fitness of different lines, following mutation accumulation, for either juveniles, males...
Summary 1. The present study attemps to examine some aspects of the fitness of populations, here de...
Studying the processes affecting variation for preadult viability is essential to understand the evo...
The purpose of the study was to determine the genetic parameters because they vary from one line to ...