Green-fluorescent proteins in Caribbean corals

被引:75
作者
Mazel, CH
Lesser, MP
Gorbunov, MY
Barry, TM
Farrell, JH
Wyman, KD
Falkowski, PG
机构
[1] Phys Sci Inc, Andover, MA 01810 USA
[2] Rutgers State Univ, Inst Marine & Coastal Sci, Environm Biophys & Mol Ecol Program, New Brunswick, NJ 08901 USA
[3] Univ New Hampshire, Dept Zool, Durham, NH 03824 USA
[4] Univ New Hampshire, Ctr Marine Biol, Durham, NH 03824 USA
[5] Rutgers State Univ, Inst Marine & Coastal Sci, Environm Biophys & Mol Ecol Program, New Brunswick, NJ 08901 USA
关键词
D O I
10.4319/lo.2003.48.1_part_2.0402
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Fluorescent pigments in several Indo-Pacific and Caribbean anthozoans have recently been identified as proteins related to the green-fluorescent protein (GFP) of the hydromedusa Aequorea victoria. Here we show that GFP is widely distributed in many Caribbean species. The fluorescence excitation and emission spectra for the pigment are similar to those reported elsewhere for coral and noncoral GFP and the fluorescence quantum yield is estimated to be 35%. Spectral and molecular characterization of the isolated protein clearly show it to be GFP, and laboratory and in situ fluorescence measurements and Western blot analysis show that it is widespread. Bathymetric studies of GFP content using Western blots for the ecologically important congeneric corals Montastraea faveolata and Montastraea cavernosa show that there is no significant correlation between depth and GFP concentration. Nucleotide sequence data of GFP from M. faveolata and M. cavernosa show 88.2% sequence homology with each other and 46.4% homology with A. victoria GFP whereas the percent homology with A. victoria at the amino acid level was 31.1 and 28.4% for M. cavernosa and M. faveolata, respectively, and 82.7% with each other. Measurements of reflectance and of the excitation spectrum for chlorophyll fluorescence in GFP-containing corals indicate that GFP absorption, emission, and reflection have negligible impact on the level of solar radiation reaching the zooxanthellae and therefore play no role in coral photosynthesis by either addition or removal of photons.
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页码:402 / 411
页数:10
相关论文
共 40 条
[21]  
LINBAUGH C, 1956, NATURE, V178, P497
[22]  
LOGAN A, 1990, B MAR SCI, V46, P807
[23]  
Marden L., 1956, National Geographic Magazine, V109, P162
[24]   Fluorescent proteins from nonbioluminescent Anthozoa species [J].
Matz, MV ;
Fradkov, AF ;
Labas, YA ;
Savitsky, AP ;
Zaraisky, AG ;
Markelov, ML ;
Lukyanov, SA .
NATURE BIOTECHNOLOGY, 1999, 17 (10) :969-973
[25]   Contribution of fluorescence to the spectral signature and perceived color of corals [J].
Mazel, CH ;
Fuchs, E .
LIMNOLOGY AND OCEANOGRAPHY, 2003, 48 (01) :390-401
[26]   SPECTRAL MEASUREMENTS OF FLUORESCENCE EMISSION IN CARIBBEAN CNIDARIANS [J].
MAZEL, CH .
MARINE ECOLOGY PROGRESS SERIES, 1995, 120 (1-3) :185-191
[27]   Diver-operated instrument for in situ measurement of spectral fluorescence and reflectance of benthic marine organisms and substrates [J].
Mazel, CH .
OPTICAL ENGINEERING, 1997, 36 (09) :2612-2617
[28]   Coral fluorescence characteristics: Excitation - Emission spectra, fluorescence efficiencies, and contribution to apparent reflectance [J].
Mazel, CH .
OCEAN OPTICS XIII, 1997, 2963 :240-245
[29]  
Morin J.G., 1974, pUnpaginated
[30]  
OConnor D., 2012, Time-Correlated Single Photon Counting