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Title: | Potential effects of prolonged ultraviolet radiation exposure in plants: chloroplast DNA analysis |
Authors: | Mpoloka, S.W. Abratt, V.A. Mundree, S.G. Thomson, J.A. Musil, C.F. |
Keywords: | Chloroplast DNA UV-B DNA damage stress |
Issue Date: | 2007 |
Publisher: | IDOSI Publications, http://idosi.org/ |
Citation: | Mpoloka, S.W. et al. (2007) Potential effects of prolonged ultraviolet radiation exposure in plants: chloroplast DNA analysis. American-Eurasian Journal of Agricultural & Environmental Science, Vol. 2, No. 4, pp. 437-441 |
Abstract: | The present study on the Namaqualand daisy, Dimorphotheca sinuata sought to address two main questions: - first whether the natural populations show any evidence of variation in the chloroplast genome, and secondly if the changes could be attributed to prior damage by UV-B i.e. via the formation of pyrimidine dimers at some some stage in their history. Characterization of chlroplast DNA from natural plant populations of D. sinuata across a latitudinal gradient was carried out using restriction endonuclease digestion. The enzymes used included DraI (TTTAAA), EcorI (GAATTC) and HindIII (AAGCTT) whose recognition sequences are possible targets for UV-B radiation, and BamHI (GGATCC) and EcoRV (GATATC) whose recognition sequences are not obvious UV-B targets. Plants growing at northern latitudes (potentially higher UV-B environments) revealed striking polymorphisms that may be attributed to genome re-arrangements resulting from UV-B stress when compared with plants from southern latitudes (lower UV-B environments). This is the first known attempt at developing a southern African biological method for predicting long-term effects of ozone depletion, and the resultant rise in Uv-B radiation, on our indigenous flora. |
URI: | http://hdl.handle.net/10311/1807 |
ISSN: | 1818-6769 |
Appears in Collections: | Research articles (Dept of Biological Sciences) |
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Chloroplast DNA analysis 2007.pdf | 686.09 kB | Adobe PDF | View/Open |
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