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Developmental Genetics|January 1, 1990
Genetic alteration of normal aging processes is responsible for extended longevity in DrosophilaR Arking, R A WellsExperimental Gerontology|November 1, 1994
The expression of the EF1 alpha genes of Drosophila is not associated with the extended longevity phenotype in a selected long-lived strainS P Dudas, R ArkingJournal of the American Geriatrics Society|August 1, 1989
Review of genetic investigations into the aging processes of DrosophilaR Arking, S P DudasJournal of the American Aging Association|April 23, 2013
Metabolic alterations in genetically selected Drosophila strains with different longevitiesS A Buck, R ArkingExperimental Gerontology|June 6, 1998
Immunological confirmation of elevated levels of CuZn superoxide dismutase protein in an artificially selected long-lived strain of Drosophila melanogasterR Hari, V Burde, R ArkingThe Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|October 5, 2001
Direct selection for paraquat resistance in Drosophila results in a different extended longevity phenotypeJ Vettraino, S Buck, R ArkingThe Journal of Experimental Zoology|May 1, 1980
Effect of DNA inhibitors upon DNA synthesis and development of Drosophila embryosA Parente, R Arking, K KalataThe Journal of Experimental Zoology|September 1, 1975
Phenogenetics of the eyeless-dominant mutant of Drosophila melanogasterR Arking, R L Putnam, M SchubigerAdvances in Gerontology = Uspekhi Gerontologii|May 13, 2009
[Testing of optimality hypothesis for longevous flies D. melanogaster under artificial selection]Zh A Novosel'tseva, V N Novosel'tsev, R ArkingGenetica|January 1, 1993
Genetic and environmental factors regulating the expression of an extended longevity phenotype in a long lived strain of DrosophilaR Arking, S P Dudas, G T BakerPageof 4