DNA repair and resistance to UV-B radiation in western spotted frogs

We assessed DNA repair and resistance to solar radiation in eggs of members of the western spotted frog complex (Rana pretiosa and R. luteiventris), species whose populations are suffering severe range reductions and declines. Specifically, we measured the activity of photoreactivating enzyme (photo...

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Veröffentlicht in:Ecological applications 1999-08, Vol.9 (3), p.1100-1105
Hauptverfasser: Blaustein, Andrew R., Hays, John B., Hoffman, Peter D., Chivers, Douglas P., Kiesecker, Joseph M., Leonard, William P., Marco, Adolfo, Olson, Deanna H., Reaser, Jamie K., Anthony, Robert G.
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Sprache:eng
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Zusammenfassung:We assessed DNA repair and resistance to solar radiation in eggs of members of the western spotted frog complex (Rana pretiosa and R. luteiventris), species whose populations are suffering severe range reductions and declines. Specifically, we measured the activity of photoreactivating enzyme (photolyase) in oocytes of spotted frogs. In some species, photoreactivation is the most important mechanism for repair of UV-damaged DNA. Using field experiments, we also compared the hatching success of spotted frog embryosat natural oviposition sites at three elevations, where some embryos were subjected to ambient levels of UV-B radiation and others were shielded from UV-B radiation. Compared with other amphibians, photolyase activities in spotted frogs were relatively high. At all sites, hatching success was unaffected by UV-B. Our data support the interpretation that amphibian embryos with relatively high levels of photolyase are more resistant to UV-Bradiation than those with lower levels of photolyase. At the embryonic stage, UV-B radiation does not presently seem to be contributing to the population declines of spotted frogs.
ISSN:1051-0761
1939-5582
DOI:10.1890/1051-0761(1999)009[1100:DRARTU]2.0.CO;2