Publication: The Genomic Architecture of Adaptation to Larval Malnutrition Points to a Trade-off with Adult Starvation Resistance in Drosophila
The Genomic Architecture of Adaptation to Larval Malnutrition Points to a Trade-off with Adult Starvation Resistance in Drosophila
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Kawecki, T. J., Erkosar, B., Dupuis, C., Hollis, B., Stillwell, R. C., & Kapun, M. (2021). The Genomic Architecture of Adaptation to Larval Malnutrition Points to a Trade-off with Adult Starvation Resistance in Drosophila. Molecular Biology and Evolution, 38(7), 2732–2749. https://doi.org/10.1093/molbev/msab061
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Periods of nutrient shortage impose strong selection on animal populations. Experimental studies of genetic adaptation to nutrient shortage largely focus on resistance to acute starvation at adult stage; it is not clear how conclusions drawn from these studies extrapolate to other forms of nutritional stress. We studied the genomic signature of adaptation to chronic juvenile malnutrition in six populations of Drosophila melanogaster evolved for 150 generations on an extremely nutrient-poor larval diet. Comparison with control populati
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Kawecki, T. J., Erkosar, B., Dupuis, C., Hollis, B., Stillwell, R. C., & Kapun, M. (2021). The Genomic Architecture of Adaptation to Larval Malnutrition Points to a Trade-off with Adult Starvation Resistance in Drosophila. Molecular Biology and Evolution, 38(7), 2732–2749. https://doi.org/10.1093/molbev/msab061