Ultraviolet radiation screening compounds

被引:579
作者
Cockell, CS
Knowland, J
机构
[1] Carnegie Inst Sci, Dept Plant Biol, Stanford, CA 94305 USA
[2] Univ Oxford, Dept Biochem, Oxford OX1 3QU, England
关键词
UV radiation; evolution; screening; compounds;
D O I
10.1017/S0006323199005356
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Amongst the diversity of methods used by organisms to reduce damage caused by ultraviolet (UV) radiation, the synthesis of UV-screening compounds is almost ubiquitous. UV-screening compounds provide a passive method for the reduction of UV-induced damage and they are widely distributed across the microbial, plant and animal kingdoms. They share some common chemical features. It is likely that on early earth strong selection pressures existed for the evolution of UV-screening compounds. Many of these compounds probably had other physiological roles, later being selected for the efficacy of UV screening. The diversity in physiological functions is one of the complications in studying UV-screening compounds and determining the true ecological importance of their UV-screening role. As well as providing protection against ambient UV radiation, species with effective screening may also be at an advantage during natural ozone depletion events. In this review the characteristics of a wide diversity of UV-screening compounds are discussed and evolutionary questions are explored. As research into the range of UV-screening compounds represented in the biosphere continues, so it is likely that the properties of many more compounds will be elucidated. These compounds, as well as providing us with insights into natural responses to UV radiation, may also have implications for the development of artificial UV-screening methods to reduce human exposure to UV radiation.
引用
收藏
页码:311 / 345
页数:35
相关论文
共 242 条
[1]   Mycosporine-like amino acids provide protection against ultraviolet radiation in eggs of the green sea urchin Strongylocentrotus droebachiensis [J].
Adams, NL ;
Shick, JM .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1996, 64 (01) :149-158
[2]   CAROTENOID COMPOSITION AND METABOLISM IN GREEN AND BLUE-GREEN-ALGAL LICHENS IN THE FIELD [J].
ADAMS, WW ;
DEMMIGADAMS, B ;
LANGE, OL .
OECOLOGIA, 1993, 94 (04) :576-584
[3]   SUPER-NOVAE EFFECTS ON THE TERRESTRIAL ATMOSPHERE [J].
AIKIN, AC ;
CHANDRA, S ;
STECHER, TP .
PLANETARY AND SPACE SCIENCE, 1980, 28 (06) :639-644
[4]   TOPICAL PHOTOPROTECTIVE AGENTS [J].
ALGRA, RJ ;
KNOX, JM .
INTERNATIONAL JOURNAL OF DERMATOLOGY, 1978, 17 (08) :628-634
[5]   Photochemical formation of singlet molecular oxygen (O-1(2)) in illuminated aqueous solutions of p-aminobenzoic acid (PAPA) [J].
Allen, JM ;
Gossett, CJ ;
Allen, SK .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 1996, 32 (1-2) :33-37
[6]   Sunlight and skin cancer: Inhibition of p53 mutations in UV-irradiated mouse skin by sunscreens [J].
Ananthaswamy, HN ;
Loughlin, SM ;
Cox, P ;
Evans, RL ;
Ullrich, SE ;
Kripke, ML .
NATURE MEDICINE, 1997, 3 (05) :510-514
[7]  
ARANCIBIA A, 1981, IL FARMACO ED PRAT, V36, P357
[8]   SPOROPOLLENIN IN CELL-WALL OF CHLORELLA AND OTHER ALGAE - ULTRASTRUCTURE, CHEMISTRY, AND INCORPORATION OF C-14-ACETATE, STUDIED IN SYNCHRONOUS CULTURES [J].
ATKINSON, AW ;
JOHN, PCL ;
GUNNING, BES .
PLANTA, 1972, 107 (01) :1-&
[9]   ARE VASCULAR PLANTS INSIDE-OUT LICHENS [J].
ATSATT, PR .
ECOLOGY, 1988, 69 (01) :17-23
[10]  
AVERY JA, 1983, J PHYSIOL-LONDON, V334, pP23