FB2026_03 , released September 17, 2026
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Sigrist-Flores, S.C., Castañeda-Partida, L., Campos-Aguilar, M., Santos-Cruz, L.F., Miranda-Gutierrez, A., Gallardo-Ortíz, I.A., Villalobos-Molina, R., Dueñas-García, I.E., Heres-Pulido, M.E., Piedra-Ibarra, E., Rosales-García, V.H., Jimenez-Flores, R., Ponciano-Gómez, A. (2021). Variation in resistance to oxidative stress in Oregon-(R)R-flare and Canton-S strains of Drosophila melanogaster.  Toxicol. Res. (Camb.) 10(4): 817--823.
FlyBase ID
FBrf0250912
Publication Type
Research paper
Abstract
All aerobic organisms are susceptible to damage by reactive oxygen species (ROS). ROS-induced damage has been associated with aging and diseases such as metabolic syndrome and cancer. However, not all organisms develop these diseases, nor do they age at the same rate; this is partially due to resistance to oxidative stress, a quantitative trait attributable to the interaction of factors including genetics and environmental. Drosophila melanogaster represents an ideal system to study how genetic variation can affect resistance to oxidative stress. In this work, oxidative stress (total and mitochondrial ROS), antioxidant response, and Cap 'n' collar isoform C and Spineless gene expression, one pesticide resistant (Oregon R(R)-flare) and wild-type (Canton-S) strains of D. melanogaster, were analyzed to test resistance to basal oxidative stress. ROS, catalase, and superoxide dismutase were determined by flow cytometry, and Cap 'n' collar isoform C and Spineless expression by qRT-PCR. The intensity of oxidative stress due to the pro-oxidant zearalenone in both was evaluated by flow cytometry. Data confirm expected differences in oxidative stress between strains that differ in Cyp450s levels. The Oregon (R)R-flare showed greater ROS, total and mitochondrial, compared to Canton-S. Regarding oxidative stress genes expression Cap 'n' collar isoform C and Spineless (Ss), Oregon R(R)-flare strain showed higher expression. In terms of response to zearalenone mycotoxin, Canton-S showed higher ROS concentration. Our data show variation in the resistance to oxidative stress among these strains of D. melanogaster.
PubMed ID
PubMed Central ID
PMC8403599 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Toxicol. Res. (Camb.)
    Title
    Toxicology research
    ISBN/ISSN
    2045-452X 2045-4538
    Data From Reference
    Chemicals (1)
    Genes (2)