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Genetical Research|November 5, 1998
The relationship between the rate of transposition and transposable element copy number for copia and Doc retrotransposons of Drosophila melanogasterE G Pasyukova, S V Nuzhdin, D A FilatovHeredity|June 25, 2002
Quantitative trait loci affecting a courtship signal in Drosophila melanogasterJ M Gleason, S V Nuzhdin, M G RitchieGenetical Research|October 1, 1993
The use of retrotransposons as markers for mapping genes responsible for fitness differences between related Drosophila melanogaster strainsS V Nuzhdin, P D Keightley, E G PasyukovaGenetics|February 1, 1995
Polygenic mutation in Drosophila melanogaster: the causal relationship of bristle number to fitnessS V Nuzhdin, J D Fry, T F MackayGenetics|November 5, 1999
The genetic architecture of selection response. Inferences from fine-scale mapping of bristle number quantitative trait loci in Drosophila melanogasterS V Nuzhdin, C L Dilda, T F MackayProceedings. Biological Sciences|July 22, 1996
Positive association between copia transposition rate and copy number in Drosophila melanogasterS V Nuzhdin, E G Pasyukova, T F MackayHeredity|June 28, 2007
Genome-enabled hitchhiking mapping identifies QTLs for stress resistance in natural DrosophilaS V Nuzhdin, L G Harshman, M Zhou, et al.Chromosoma|July 1, 1994
Structure, molecular evolution and maintenance of copy number of extended repeated structures in the X-heterochromatin of Drosophila melanogasterD I Nurminsky, Shevelyov YYa, S V Nuzhdin, et al.Genetics|May 1, 1996
Effects of single P-element insertions on bristle number and viability in Drosophila melanogasterR F Lyman, F Lawrence, S V Nuzhdin, et al.Genetics|August 3, 1999
High-resolution mapping of quantitative trait loci for sternopleural bristle number in Drosophila melanogasterM C Gurganus, S V Nuzhdin, J W Leips, et al.Pageof 4