Solar UVB-induced DNA damage and photoenzymatic DNA repair in antarctic zooplankton
- 18 February 1997
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 94 (4) , 1258-1263
- https://doi.org/10.1073/pnas.94.4.1258
Abstract
The detrimental effects of elevated intensities of mid-UV radiation (UVB), a result of stratospheric ozone depletion during the austral spring, on the primary producers of the Antarctic marine ecosystem have been well documented. Here we report that natural populations of Antarctic zooplankton also sustain significant DNA damage [measured as cyclobutane pyrimidine dimers (CPDs)] during periods of increased UVB flux. This is the first direct evidence that increased solar UVB may result in damage to marine organisms other than primary producers in Antarctica. The extent of DNA damage in pelagic icefish eggs correlated with daily incident UVB irradiance, reflecting the difference between acquisition and repair of CPDs. Patterns of DNA damage in fish larvae did not correlate with daily UVB flux, possibly due to different depth distributions and/or different capacities for DNA repair. Clearance of CPDs by Antarctic fish and krill was mediated primarily by the photoenzymatic repair system. Although repair rates were large for all species evaluated, they were apparently inadequate to prevent the transient accumulation of substantial CPD burdens. The capacity for DNA repair in Antarctic organisms was highest in those species whose early life history stages occupy the water column during periods of ozone depletion (austral spring) and lowest in fish species whose eggs and larvae are abundant during winter. Although the potential reduction in fitness of Antarctic zooplankton resulting from DNA damage is unknown, we suggest that increased solar UV may reduce recruitment and adversely affect trophic transfer of productivity by affecting heterotrophic species as well as primary producers.Keywords
This publication has 45 references indexed in Scilit:
- Continued decline of total ozone over Halley, Antarctica, since 1985Nature, 1995
- STRATOSPHERIC OZONE DEPLETION BETWEEN 1979 and 1992: IMPLICATIONS FOR BIOLOGICALLY ACTIVE ULTRAVIOLET‐B RADIATION and NON‐MELANOMA SKIN CANCER INCIDENCEPhotochemistry and Photobiology, 1994
- ENHANCEMENT OF PHOTOREPAIR OF ULTRAVIOLET‐INDUCED PYRIMIDINE DIMERS BY PREILLUMINATION WITH FLUORESCENT LIGHT IN THE GOLDFISH CELL LINE. THE RELATIONSHIP BETWEEN SURVIVAL AND YIELD OF PYRIMIDINE DIMERSPhotochemistry and Photobiology, 1992
- Inhibition of photosynthesis by ultraviolet radiation as a function of dose and dosage rate: Results for a marine diatomMarine Biology, 1991
- The Dynamics of the Stratospheric Polar Vortex and Its Relation to Springtime Ozone DepletionsScience, 1991
- POTENTIAL EFFECTS OF UV‐B RADIATION ON MARINE ORGANISMS OF THE SOUTHERN OCEAN: DISTRIBUTIONS OF PHYTOPLANKTON AND KRILL DURING AUSTRAL SPRINGPhotochemistry and Photobiology, 1989
- Does the Ozone Hole Threaten Antarctic Life?Science, 1989
- Landmark Ozone Treaty NegotiatedScience, 1987
- REPAIR OF CYCLOBUTANE DIMERS AND (6–4) PHOTOPRODUCTS IN ICR 2A FROG CELLSPhotochemistry and Photobiology, 1986
- Results of a primary productivity study as affected by the type of glass in the culture bottles1Limnology and Oceanography, 1980