Photobiology of corals from Brazil’s near-shore marginal reefs of Abrolhos
暂无分享,去创建一个
David J. Smith | David J. Smith | R. Kikuchi | D. Suggett | David J. Suggett | Ruy K. P. Kikuchi | Marília D. M. Oliveira | Saulo Spanó | Rafael Carvalho | R. Carvalho | Saulo Spanó
[1] P. Falkowski,et al. Photosynthesis and photoprotection in symbiotic corals , 2001 .
[2] John J. Cullen,et al. Sunlight and water transparency: cornerstones in coral research , 2002 .
[3] O. Hoegh‐Guldberg,et al. Kinetics of photoacclimation in corals , 2002, Oecologia.
[4] R. Sassi,et al. Annual cycle of symbiotic dinoflagellates from three species of scleractinian corals from coastal reefs of northeastern Brazil , 2005, Coral Reefs.
[5] M. Lesser,et al. Chlorophyll Fluorescence in Reef Building Corals , 2010 .
[6] J. Cortés. Latin American coral reefs , 2003 .
[7] Zelinda M. A. N. Leão,et al. Branqueamento de corais nos recifes da Bahia e sua relação com eventos de anomalias térmicas nas águas superficiais do oceano , 2008 .
[8] Z. M. Leão,et al. Tropical coast of Brazil , 2000 .
[9] P. Ralph,et al. Dark-induced reduction of the plastoquinone pool in zooxanthellae of scleractinian corals and implications for measurements of chlorophyll a fluorescence , 2008 .
[10] R. Sassi,et al. Zooxanthellae genotypes in the coral Siderastrea stellata from coastal reefs in northeastern Brazil , 2008 .
[11] R. Sassi,et al. Population density and photosynthetic pigment content in symbiotic dinoflagellates in the Brazilian scleractinian coral Montastrea cavernosa (Linnaeus, 1767) , 2004 .
[12] David J. Smith,et al. Acclimation and adaptation of scleractinian coral communities along environmental gradients within an Indonesian reef system , 2010 .
[13] W. Fitt,et al. Diurnal changes in photochemical efficiency and xanthophyll concentrations in shallow water reef corals : evidence for photoinhibition and photoprotection , 1999, Coral Reefs.
[14] C. Castro,et al. Brazilian coral reefs: What we already know and what is still missing , 2001 .
[15] R. Geider,et al. Interpretation of fast repetition rate (FRR) fluorescence: signatures of phytoplankton community structure versus physiological state , 2009 .
[16] J. Lough,et al. The nature of skeletal density banding in scleractinian corals: fine banding and seasonal patterns , 1989 .
[17] Curt D. Storlazzi,et al. Diurnal variability in turbidity and coral fluorescence on a fringing reef flat: Southern Molokai, Hawaii , 2008 .
[18] Z. M. Leão,et al. Corals and coral reefs of Brazil , 2003 .
[19] P. Falkowski,et al. Light-shade adaptation of Stylophora pistillata, a hermatypic coral from the Gulf of Eilat , 1981, Nature.
[20] P. Ralph,et al. In situ underwater measurements of photosynthetic activity of coral zooxanthellae and other reef-dwelling dinoflagellate endosymbionts , 1999 .
[21] M. Marchese,et al. Oligochaeta (Annelida, Clitellata) of lotic environments at Parque Estadual Intervales (São Paulo, Brazil) , 2008 .
[22] R. Buddemeier,et al. Coral Chronometers: Seasonal Growth Bands in Reef Corals , 1972, Science.
[23] K. Anthony,et al. Environmental limits to growth: physiological niche boundaries of corals along turbidity–light gradients , 2004, Oecologia.
[24] L. Krug,et al. Characterization of coral bleaching environments and their variation along the Bahia state coast, Brazil , 2012 .
[25] R. Geider,et al. Estimating Aquatic Productivity from Active Fluorescence Measurements , 2010 .
[26] N. Knowlton,et al. Mitochondrial and Nuclear Genes Suggest that Stony Corals Are Monophyletic but Most Families of Stony Corals Are Not (Order Scleractinia, Class Anthozoa, Phylum Cnidaria) , 2008, PloS one.
[27] M. Kampel,et al. Potential impacts of polar fronts on sedimentation processes at Abrolhos coral reef (South-West Atlantic Ocean/Brazil) , 2008 .
[28] Z. M. Leão,et al. A relic coral fauna threatened by global changes and human activities, Eastern Brazil. , 2005, Marine pollution bulletin.
[29] David J. Smith,et al. Interpreting the sign of coral bleaching as friend vs. foe , 2011 .
[30] David J. Smith,et al. Photoacclimation, growth and distribution of massive coral species in clear and turbid waters , 2008 .
[31] Hugh L. MacIntyre,et al. Evaluation of biophysical and optical determinations of light absorption by photosystem II in phytoplankton , 2004 .
[32] T. Oliver,et al. Do fluctuating temperature environments elevate coral thermal tolerance? , 2011, Coral Reefs.
[33] R. Strzepek,et al. Photoprotection capacity differs among diatoms: Possible consequences on the spatial distribution of diatoms related to fluctuations in the underwater light climate , 2007 .
[34] Z. M. Leão,et al. Conservation status and spatial patterns of AGRRA vitality indices in Southwestern Atlantic reefs. , 2010, Revista de biologia tropical.
[35] J. Mcmanus,et al. Environmental limits to coral reef development: Where do we draw the line? , 1999 .
[36] S. Hennige,et al. Photobiology of Symbiodinium revisited: bio-physical and bio-optical signatures , 2009, Coral Reefs.
[37] P. Ridd,et al. Temporal variation of light availability in coastal benthic habitats: Effects of clouds, turbidity, and tides , 2004 .
[38] M. Borowitzka,et al. Chlorophyll fluorescence terminology: An introduction , 2010 .
[39] Trevor Platt,et al. Mathematical formulation of the relationship between photosynthesis and light for phytoplankton , 1976 .
[40] Hugh L. MacIntyre,et al. Fast repetition rate and pulse amplitude modulation chlorophyll a fluorescence measurements for assessment of photosynthetic electron transport in marine phytoplankton , 2003 .
[41] R. Gates,et al. Photoacclimatization by the coral Montastraea cavernosa in the mesophotic zone: light, food, and genetics. , 2010, Ecology.
[42] Jon Barry,et al. Relationships between suspended particulate material, light attenuation and Secchi depth in UK marine waters , 2008 .