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TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|November 14, 2013
P element transposon-induced quantitative genetic variation for inebriation time in Drosophila melanogasterR Frankham, A Torkamanzehi, C MoranTAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|November 7, 2013
Effects on heterozygosity and reproductive fitness of inbreeding with and without selection on fitness in Drosophila melanogasterR Frankham, G J Smith, D A BriscoeGenetics|July 1, 1980
Unequal crossing over at the rRNA tandon as a source of quantitative genetic variation in DrosophilaR Frankham, D A Briscoe, R K NurthenGenetical Research|June 1, 1996
Microsatellite polymorphisms in a wild population of Drosophila melanogasterP R England, D A Briscoe, R FrankhamTAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|November 16, 2013
Reproductive fitness and artificial selection in animal breeding: culling on fitness prevents a decline in reproductive fitness in lines of Drosophila melanogaster selected for increased inebriation timeR Frankham, B H Yoo, B L SheldonGenetics|June 1, 1987
X-Y Exchange and the Coevolution of the X and Y Rdna Arrays in Drosophila melanogasterM R Gillings, R Frankham, J Speirs, et al.Genetics|March 1, 1994
Decline in heterozygosity under full-sib and double first-cousin inbreeding in Drosophila melanogasterW Rumball, I R Franklin, R Frankham, et al.Poultry Science|September 1, 1991
Heterozygosity at protein loci in inbred and outbred lines of chickensN S Mina, B L Sheldon, B H Yoo, et al.Animal Genetics|April 1, 1994
Heat shock protein gene HSP108 and a replication histone gene cluster are linked in the chickenB J Van Hest, P L Molloy, R Frankham, et al.Molecular Ecology|August 1, 1994
Modelling problems in conservation genetics using Drosophila: consequences of fluctuating population sizesL M Woodworth, M E Montgomery, R K Nurthen, et al.Pageof 3