Photosynthesis in Global-Scale Models

[1]  C. Moulin,et al.  Seasonal distribution and succession of dominant phytoplankton groups in the global ocean: A satellite view , 2008 .

[2]  David A. Siegel,et al.  Carbon‐based primary productivity modeling with vertically resolved photoacclimation , 2008 .

[3]  K. R. Arrigo,et al.  Impacts of Atmospheric Anthropogenic Nitrogen on the Open Ocean , 2008, Science.

[4]  Andreas Oschlies,et al.  Future changes in climate, ocean circulation, ecosystems, and biogeochemical cycling simulated for a business‐as‐usual CO2 emission scenario until year 4000 AD , 2008 .

[5]  Melanie Abecassis,et al.  Ocean's least productive waters are expanding , 2008 .

[6]  Stephen C. Riser,et al.  Net production of oxygen in the subtropical ocean , 2008, Nature.

[7]  John P. Dunne,et al.  A synthesis of global particle export from the surface ocean and cycling through the ocean interior and on the seafloor , 2007 .

[8]  Elena Litchman,et al.  The role of functional traits and trade-offs in structuring phytoplankton communities: scaling from cellular to ecosystem level. , 2007, Ecology letters.

[9]  Peter E. Thornton,et al.  Influence of carbon‐nitrogen cycle coupling on land model response to CO2 fertilization and climate variability , 2007 .

[10]  Corinne Le Quéré,et al.  Contributions to accelerating atmospheric CO2 growth from economic activity, carbon intensity, and efficiency of natural sinks , 2007, Proceedings of the National Academy of Sciences.

[11]  W. Gregg,et al.  Sampling biases in MODIS and SeaWiFS ocean chlorophyll data , 2007 .

[12]  B. Franz,et al.  Examining the consistency of products derived from various ocean color sensors in open ocean (Case 1) waters in the perspective of a multi-sensor approach , 2007 .

[13]  Marcel Babin,et al.  Relationship between photosynthetic parameters and different proxies of phytoplankton biomass in the subtropical ocean , 2007 .

[14]  J. Ras,et al.  Rapid growth rates of aerobic anoxygenic phototrophs in the ocean. , 2007, Environmental microbiology.

[15]  Mark West,et al.  Carbon dioxide enrichment alters plant community structure and accelerates shrub growth in the shortgrass steppe , 2007, Proceedings of the National Academy of Sciences.

[16]  Scott C. Doney,et al.  Impact of circulation on export production, dissolved organic matter, and dissolved oxygen in the ocean: Results from Phase II of the Ocean Carbon‐cycle Model Intercomparison Project (OCMIP‐2) , 2007 .

[17]  Scott C. Doney,et al.  Assessment of skill and portability in regional marine biogeochemical models : Role of multiple planktonic groups , 2007 .

[18]  P. Ciais,et al.  Assimilation of global MODIS leaf area index retrievals within a terrestrial biosphere model , 2007 .

[19]  Peter E. Thornton,et al.  An Improved Canopy Integration Scheme for a Land Surface Model with Prognostic Canopy Structure , 2007 .

[20]  Huayun Xiao,et al.  δ13C and δ15N of moss Haplocladium microphyllum (Hedw.) Broth. for indicating growing environment variation and canopy retention on atmospheric nitrogen deposition , 2007 .

[21]  Fei-xue Fu,et al.  CO2 control of Trichodesmium N2 fixation, photosynthesis, growth rates, and elemental ratios: Implications for past, present, and future ocean biogeochemistry , 2007 .

[22]  Scott C. Doney,et al.  Iron availability limits the ocean nitrogen inventory stabilizing feedbacks between marine denitrification and nitrogen fixation , 2007 .

[23]  M. Follows,et al.  Modeling and Prediction of Marine Microbial Populations in the Genomic era , 2007 .

[24]  Nicholas R. Bates,et al.  Eddy/Wind Interactions Stimulate Extraordinary Mid-Ocean Plankton Blooms , 2007, Science.

[25]  H. Claustre,et al.  High Abundances of Aerobic Anoxygenic Photosynthetic Bacteria in the South Pacific Ocean , 2007, Applied and Environmental Microbiology.

[26]  Sallie W. Chisholm,et al.  Emergent Biogeography of Microbial Communities in a Model Ocean , 2007, Science.

[27]  Joanna J. Waniek,et al.  Phytoplankton growth conditions during autumn and winter in the Irminger Sea, North Atlantic , 2007 .

[28]  D. Hollinger,et al.  Refining light-use efficiency calculations for a deciduous forest canopy using simultaneous tower-based carbon flux and radiometric measurements , 2007 .

[29]  S. Gower,et al.  Estimation of stand-level leaf area for boreal bryophytes , 2007, Oecologia.

[30]  S. Thiria,et al.  Retrieval of pigment concentrations and size structure of algal populations from their absorption spectra using multilayered perceptrons. , 2007, Applied optics.

[31]  Trevor Platt,et al.  Spectral effects in bio-optical control on the ocean system , 2007 .

[32]  W. Balch,et al.  Prediction of pelagic calcification rates using satellite measurements , 2007 .

[33]  Watson W. Gregg,et al.  Modeling Coccolithophores in the Global Oceans , 2007 .

[34]  Stephen Sitch,et al.  FLUXNET and modelling the global carbon cycle , 2007 .

[35]  Dennis D. Baldocchi,et al.  Estimating parameters in a land‐surface model by applying nonlinear inversion to eddy covariance flux measurements from eight FLUXNET sites , 2007 .

[36]  Jürgen Symanzik,et al.  On the use of the advanced very high resolution radiometer for development of prognostic land surface phenology models , 2007 .

[37]  Hisashi Sato,et al.  SEIB–DGVM: A new Dynamic Global Vegetation Model using a spatially explicit individual-based approach , 2007 .

[38]  Nicolas Gruber,et al.  Spatial coupling of nitrogen inputs and losses in the ocean , 2007, Nature.

[39]  Chuanmin Hu,et al.  Validation of SeaWiFS chlorophyll a concentrations in the Southern Ocean: A revisit , 2006 .

[40]  M. Fasham,et al.  Mechanisms controlling primary and new production in a global ecosystem model – Part I: Validation of the biological simulation , 2006 .

[41]  T. R. Anderson,et al.  Mechanisms controlling primary and new production in a global ecosystem model Part II: The role of the upper ocean short-term periodic and episodic mixing events , 2006 .

[42]  D. Siegel,et al.  Spatial and temporal distribution of Trichodesmium blooms in the world's oceans , 2006 .

[43]  T. A. Black,et al.  Photosynthetic light use efficiency of three biomes across an east–west continental-scale transect in Canada , 2006 .

[44]  J. Gattuso,et al.  Light availability in the coastal ocean: Impact on the distribution of benthic photosynthetic organisms and their contribution to primary production , 2006 .

[45]  Patrice Klein,et al.  Impact of the small-scale elongated filaments on the oceanic vertical pump. , 2006 .

[46]  Kevin J. Flynn,et al.  Reply to Horizons Article ‘Plankton functional type modelling: running before we can walk’ Anderson (2005): II. Putting trophic functionality into plankton functional types , 2006 .

[47]  H. Claustre,et al.  Vertical distribution of phytoplankton communities in open ocean: An assessment based on surface chlorophyll , 2006 .

[48]  R. Schnur,et al.  Climate-carbon cycle feedback analysis: Results from the C , 2006 .

[49]  Dennis D. Baldocchi,et al.  A multiyear evaluation of a Dynamic Global Vegetation Model at three AmeriFlux forest sites: Vegetation structure, phenology, soil temperature, and CO2 and H2O vapor exchange , 2006 .

[50]  Ranga B. Myneni,et al.  Analysis of leaf area index and fraction of PAR absorbed by vegetation products from the terra MODIS sensor: 2000-2005 , 2006, IEEE Transactions on Geoscience and Remote Sensing.

[51]  Frédéric Baret,et al.  Validation of global moderate-resolution LAI products: a framework proposed within the CEOS land product validation subgroup , 2006, IEEE Transactions on Geoscience and Remote Sensing.

[52]  Michael J. Behrenfeld,et al.  Beam attenuation and chlorophyll concentration as alternative optical indices of phytoplankton biomass , 2006 .

[53]  E. Achterberg,et al.  Iron limits primary productivity during spring bloom development in the central North Atlantic , 2006 .

[54]  Michele Scardi,et al.  A comparison of global estimates of marine primary production from ocean color , 2006 .

[55]  Nicholas R. Bates,et al.  Pelagic functional group modeling: Progress, challenges and prospects , 2006 .

[56]  D. Karl,et al.  On the relationships between primary, net community, and export production in subtropical gyres , 2006 .

[57]  S. Trumbore Carbon respired by terrestrial ecosystems – recent progress and challenges , 2006 .

[58]  K. Lindsay,et al.  Nitrogen fixation amplifies the ocean biogeochemical response to decadal timescale variations in mineral dust deposition , 2006 .

[59]  Kevin J. Flynn,et al.  Castles built on sand : dysfunctionality in plankton models and the inadequacy of dialogue between biologists and modellers , 2005 .

[60]  Thomas R. Anderson,et al.  Plankton functional type modelling : running before we can walk? , 2005 .

[61]  Andrew J. Watson,et al.  Ecosystem dynamics based on plankton functional types for global ocean biogeochemistry models , 2005 .

[62]  François-Marie Bréon,et al.  Remote sensing of phytoplankton groups in case 1 waters from global SeaWiFS imagery , 2005 .

[63]  T. Smyth,et al.  Integration of radiative transfer into satellite models of ocean primary production , 2005 .

[64]  E. Maier‐Reimer,et al.  Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms , 2005, Nature.

[65]  K. Arrigo Marine microorganisms and global nutrient cycles , 2005, Nature.

[66]  Ulf Riebesell,et al.  Synthesis of iron fertilization experiments: From the iron age in the age of enlightenment , 2005 .

[67]  S. Verma,et al.  Testing a model of CO2, water and energy exchange in Great Plains tallgrass prairie and wheat ecosystems , 2005 .

[68]  K. Lindsay,et al.  Evolution of carbon sinks in a changing climate. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[69]  N. Kiang,et al.  Land Surface Model Development for the GISS GCM: Effects of Improved Canopy Physiology on Simulated Climate , 2005 .

[70]  W. Knorr,et al.  Inversion of terrestrial ecosystem model parameter values against eddy covariance measurements by Monte Carlo sampling , 2005 .

[71]  B. Delille,et al.  Budgeting sinks and sources of CO2 in the coastal ocean: Diversity of ecosystems counts , 2005 .

[72]  Howard R. Gordon,et al.  Calcium carbonate measurements in the surface global ocean based on Moderate‐Resolution Imaging Spectroradiometer data , 2005 .

[73]  R. Evans,et al.  Bridging ocean color observations of the 1980s and 2000s in search of long-term trends , 2005 .

[74]  E. Carpenter,et al.  Nitrogen fixation by Trichodesmium spp.: An important source of new nitrogen to the tropical and subtropical North Atlantic Ocean , 2005 .

[75]  J. Randerson,et al.  Fire emissions from C3 and C4 vegetation and their influence on interannual variability of atmospheric CO2 and δ13CO2 , 2005 .

[76]  J. Raven,et al.  CO2 concentrating mechanisms in algae: mechanisms, environmental modulation, and evolution. , 2005, Annual review of plant biology.

[77]  N. Mahowald,et al.  Global Iron Connections Between Desert Dust, Ocean Biogeochemistry, and Climate , 2005, Science.

[78]  Maosheng Zhao,et al.  Improvements of the MODIS terrestrial gross and net primary production global data set , 2005 .

[79]  I. C. Prentice,et al.  A dynamic global vegetation model for studies of the coupled atmosphere‐biosphere system , 2005 .

[80]  David A. Siegel,et al.  Carbon‐based ocean productivity and phytoplankton physiology from space , 2005 .

[81]  W. Gregg,et al.  Global and regional evaluation of the SeaWiFS chlorophyll data set , 2004 .

[82]  Keith Lindsay,et al.  Upper ocean ecosystem dynamics and iron cycling in a global three‐dimensional model , 2004 .

[83]  Annick Bricaud,et al.  Natural variability of phytoplanktonic absorption in oceanic waters: Influence of the size structure of algal populations , 2004 .

[84]  Paul Morris,et al.  Net community production and metabolic balance at the oligotrophic ocean site, station ALOHA , 2004 .

[85]  F. Woodward,et al.  Vegetation dynamics – simulating responses to climatic change , 2004, Biological reviews of the Cambridge Philosophical Society.

[86]  Maosheng Zhao,et al.  A Continuous Satellite-Derived Measure of Global Terrestrial Primary Production , 2004 .

[87]  E. Boss,et al.  The beam attenuation to chlorophyll ratio: an optical index of phytoplankton physiology in the surface ocean? , 2003 .

[88]  K. Oleson,et al.  A dynamic global vegetation model for use with climate models: concepts and description of simulated vegetation dynamics , 2003 .

[89]  K. Banse,et al.  On using pigment‐normalized, light‐saturated carbon uptake with satellite‐derived pigment for estimating column photosynthesis , 2003 .

[90]  Daniel Kamykowski,et al.  Mapping nitrate in the global ocean using remotely sensed sea surface temperature , 2003 .

[91]  J. Martínez-Sánchez Nitrogen and phosphorus resorption in trees of a neotropical rain forest , 2003, Journal of Tropical Ecology.

[92]  C. Tucker,et al.  Climate-Driven Increases in Global Terrestrial Net Primary Production from 1982 to 1999 , 2003, Science.

[93]  A. M. Edwards,et al.  Phytoplankton biomass and residual nitrate in the pelagic ecosystem , 2003, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.

[94]  A. Pitman The evolution of, and revolution in, land surface schemes designed for climate models , 2003 .

[95]  Scott C. Doney,et al.  Eddy‐driven sources and sinks of nutrients in the upper ocean: Results from a 0.1° resolution model of the North Atlantic , 2003 .

[96]  S. T. Gower,et al.  A cross‐biome comparison of daily light use efficiency for gross primary production , 2003 .

[97]  I. C. Prentice,et al.  Evaluation of ecosystem dynamics, plant geography and terrestrial carbon cycling in the LPJ dynamic global vegetation model , 2003 .

[98]  D. Kamykowski,et al.  Dynamic global patterns of nitrate, phosphate, silicate, and iron availability and phytoplankton community composition from remote sensing data , 2002 .

[99]  C. Tucker,et al.  Satellite estimates of productivity and light use efficiency in United States agriculture, 1982–98 , 2002 .

[100]  A. J. Friedland,et al.  Winter water relations of New England conifers and factors influencing their upper elevational limits. II. Modeling. , 2002, Tree physiology.

[101]  F. Morel,et al.  CO2 effects on taxonomic composition and nutrient utilization in an Equatorial Pacific phytoplankton assemblage , 2002 .

[102]  M. Hulme,et al.  A high-resolution data set of surface climate over global land areas , 2002 .

[103]  Stéphane Maritorena,et al.  Optimization of a semianalytical ocean color model for global-scale applications. , 2002, Applied optics.

[104]  T. Vesala,et al.  Advantages of diffuse radiation for terrestrial ecosystem productivity , 2002 .

[105]  Hugh L. MacIntyre,et al.  PHOTOACCLIMATION OF PHOTOSYNTHESIS IRRADIANCE RESPONSE CURVES AND PHOTOSYNTHETIC PIGMENTS IN MICROALGAE AND CYANOBACTERIA 1 , 2002 .

[106]  B. Quéguiner,et al.  Control of phytoplankton growth by iron supply and irradiance in the subantarctic Southern Ocean: Experimental results from the SAZ Project , 2001 .

[107]  A. Friend,et al.  Modelling canopy CO2 fluxes: are ‘big‐leaf’ simplifications justified? , 2001 .

[108]  M. Chin,et al.  Sources and distributions of dust aerosols simulated with the GOCART model , 2001 .

[109]  Dennis D. Baldocchi,et al.  Modeling CO2 and water vapor exchange of a temperate broadleaved forest across hourly to decadal time scales , 2001 .

[110]  Sandy P. Harrison,et al.  Global Biogeochemical Cycles in the Climate System , 2001 .

[111]  Zbigniew S. Kolber,et al.  Contribution of Aerobic Photoheterotrophic Bacteria to the Carbon Cycle in the Ocean , 2001, Science.

[112]  S. Maritorena,et al.  Bio-optical properties of oceanic waters: A reappraisal , 2001 .

[113]  I. C. Prentice,et al.  Carbon balance of the terrestrial biosphere in the Twentieth Century: Analyses of CO2, climate and land use effects with four process‐based ecosystem models , 2001 .

[114]  Carl J. Bernacchi,et al.  Improved temperature response functions for models of Rubisco‐limited photosynthesis , 2001 .

[115]  Global Soil Data Task,et al.  Global Gridded Surfaces of Selected Soil Characteristics (IGBP-DIS) , 2000 .

[116]  Walker O. Smith,et al.  Temperature effects on export production in the open ocean , 2000 .

[117]  Andrew White,et al.  Evaluation and analysis of a dynamic terrestrial ecosystem model under preindustrial conditions at the global scale , 2000 .

[118]  R. Betts,et al.  Acceleration of global warming due to carbon-cycle feedbacks in a coupled climate model , 2000, Nature.

[119]  Pierre Friedlingstein,et al.  A global prognostic scheme of leaf onset using satellite data , 2000 .

[120]  Michael T. Coe,et al.  Testing the performance of a dynamic global ecosystem model: Water balance, carbon balance, and vegetation structure , 2000 .

[121]  K. Reinhart,et al.  Specific Leaf Area Along a Nitrogen Fertilization Gradient , 2000 .

[122]  J. Amthor The McCree-de Wit-Penning de Vries-Thornley Respiration Paradigms: 30 Years Later , 2000 .

[123]  P. G. Jarvis,et al.  Photosynthetic capacity in a central Amazonian rain forest. , 2000, Tree physiology.

[124]  Limin Yang,et al.  Development of a global land cover characteristics database and IGBP DISCover from 1 km AVHRR data , 2000 .

[125]  P. Friedlingstein,et al.  Toward an allocation scheme for global terrestrial carbon models , 1999 .

[126]  S. T. Gower,et al.  Direct and Indirect Estimation of Leaf Area Index, fAPAR, and Net Primary Production of Terrestrial Ecosystems , 1999 .

[127]  S. Wand,et al.  Responses of wild C4 and C3 grass (Poaceae) species to elevated atmospheric CO2 concentration: a meta‐analytic test of current theories and perceptions , 1999 .

[128]  A. Bondeau,et al.  Comparing global models of terrestrial net primary productivity (NPP): analysis of differences in light absorption and light‐use efficiency , 1999 .

[129]  D. Wolf-Gladrow,et al.  Direct effects of CO2 concentration on growth and isotopic composition of marine plankton , 1999 .

[130]  J. Gattuso,et al.  CARBON AND CARBONATE METABOLISM IN COASTAL AQUATIC ECOSYSTEMS , 1998 .

[131]  Lisa J. Graumlich,et al.  Interactive Canopies for a Climate Model , 1998 .

[132]  M. Kahru,et al.  Ocean Color Chlorophyll Algorithms for SEAWIFS , 1998 .

[133]  B. Kruijt,et al.  Leaf photosynthetic light response : a mechanistic model for scaling photosynthesis to leaves and canopies , 1998 .

[134]  Catherine Gautier,et al.  SBDART: A Research and Teaching Software Tool for Plane-Parallel Radiative Transfer in the Earth's Atmosphere. , 1998 .

[135]  T. D. Dickey,et al.  Influence of mesoscale eddies on new production in the Sargasso Sea , 1998, Nature.

[136]  J. Randerson,et al.  Primary production of the biosphere: integrating terrestrial and oceanic components , 1998, Science.

[137]  A. Friend Parameterisation of a global daily weather generator for terrestrial ecosystem modelling , 1998 .

[138]  Andrei P. Sokolov,et al.  Transient climate change and net ecosystem production of the terrestrial biosphere , 1998, Global Biogeochemical Cycles.

[139]  Richard J. Geider,et al.  A dynamic regulatory model of phytoplanktonic acclimation to light, nutrients, and temperature , 1998 .

[140]  David Pollard,et al.  Coupling dynamic models of climate and vegetation , 1998 .

[141]  James S. Clark,et al.  Effects of climate and atmospheric CO2 partial pressure on the global distribution of C4 grasses: present, past, and future , 1998, Oecologia.

[142]  J. Blair,et al.  Modulation of diversity by grazing and mowing in native tallgrass prairie , 1998, Science.

[143]  S. Goetz,et al.  Variability in carbon exchange and light utilization among boreal forest stands: implications for remote sensing of net primary production , 1998, Canadian Journal of Forest Research.

[144]  Christopher B. Field,et al.  The contribution of terrestrial sources and sinks to trends in the seasonal cycle of atmospheric carbon dioxide , 1997 .

[145]  P. Falkowski,et al.  A consumer's guide to phytoplankton primary productivity models , 1997 .

[146]  V. Brovkin,et al.  A continuous climate-vegetation classification for use in climate-biosphere studies , 1997 .

[147]  Susan E. Lee,et al.  Contrasting physiological and structural vegetation feedbacks in climate change simulations , 1997, Nature.

[148]  Paul G. Falkowski,et al.  Evolution of the nitrogen cycle and its influence on the biological sequestration of CO2 in the ocean , 1997, Nature.

[149]  S. Wright,et al.  Phytoplankton Pigments in Oceanography: Guidelines to Modern Methods , 1997 .

[150]  Dariusz Stramski,et al.  Effects of microbial particles on oceanic optics: A database of single‐particle optical properties , 1997 .

[151]  C. Tucker,et al.  Increased plant growth in the northern high latitudes from 1981 to 1991 , 1997, Nature.

[152]  W. Post,et al.  Historical variations in terrestrial biospheric carbon storage , 1997 .

[153]  T. Kana,et al.  Dynamic model of phytoplankton growth and acclimation: responses of the balanced growth rate and the chlorophyll a:carbon ratio to light, nutrient-limitation and temperature , 1997 .

[154]  Andrew D. Friend,et al.  A process-based, terrestrial biosphere model of ecosystem dynamics (Hybrid v3.0) , 1997 .

[155]  P. Falkowski,et al.  Photosynthetic rates derived from satellite‐based chlorophyll concentration , 1997 .

[156]  D. Tilman,et al.  Influence of Nitrogen Loading and Species Composition on the Carbon Balance of Grasslands , 1996, Science.

[157]  Carlos M. Duarte,et al.  The fate of marine autotrophic production , 1996 .

[158]  I. C. Prentice,et al.  An integrated biosphere model of land surface processes , 1996 .

[159]  T. Pons,et al.  Nitrogen allocation in response to partial shading of a plant : Possible mechanisms , 1996 .

[160]  P. Falkowski,et al.  Confirmation of iron limitation of phytoplankton photosynthesis in the equatorial Pacific Ocean , 1996, Nature.

[161]  C. D. Keeling,et al.  Global net carbon exchange and intra‐annual atmospheric CO2 concentrations predicted by an ecosystem process model and three‐dimensional atmospheric transport model , 1996 .

[162]  Marcel Babin,et al.  Measured and modeled primary production in the northeast Atlantic (EUMELI JGOFS program): the impact of natural variations in photosynthetic parameters on model predictive skill , 1996 .

[163]  R. Dewar The Correlation between Plant Growth and Intercepted Radiation: An Interpretation in Terms of Optimal Plant Nitrogen Content , 1996 .

[164]  D. Randall,et al.  A Revised Land Surface Parameterization (SiB2) for Atmospheric GCMS. Part I: Model Formulation , 1996 .

[165]  C. Justice,et al.  A revised land surface parameterization (SiB2) for GCMs. Part III: The greening of the Colorado State University general circulation model , 1996 .

[166]  C. Justice,et al.  A Revised Land Surface Parameterization (SiB2) for Atmospheric GCMS. Part II: The Generation of Global Fields of Terrestrial Biophysical Parameters from Satellite Data , 1996 .

[167]  Jörg Kaduk,et al.  A prognostic phenology scheme for global terrestrial carbon cycle models , 1996 .

[168]  Thomas M. Smith,et al.  A global land primary productivity and phytogeography model , 1995 .

[169]  Vemap Participants,et al.  Numerical Terradynamic Simulation Group 12-1995 Vegetation / ecosystem modeling and analysis project : Comparing biogeography and biogeochemistry models in a continental-scale study of terrestrial ecosystem responses to climate change and CO 2 doubling , 2018 .

[170]  Trevor Platt,et al.  Regionally and seasonally differentiated primary production in the North Atlantic , 1995 .

[171]  S. Wofsy,et al.  Scaling gross ecosystem production at Harvard Forest with remote sensing: a comparison of estimates from a constrained quantum‐use efficiency model and eddy correlation , 1995 .

[172]  C. Field,et al.  Scaling Physiological Processes: Leaf to Globe , 1995 .

[173]  S. Goward,et al.  Global Primary Production: A Remote Sensing Approach , 1995 .

[174]  T. Platt,et al.  An estimate of global primary production in the ocean from satellite radiometer data , 1995 .

[175]  R. Neilson A Model for Predicting Continental‐Scale Vegetation Distribution and Water Balance , 1995 .

[176]  R. Leuning A critical appraisal of a combined stomatal‐photosynthesis model for C3 plants , 1995 .

[177]  A. Friend PGEN: an integrated model of leaf photosynthesis, transpiration, and conductance , 1995 .

[178]  P. Warnant,et al.  CARAIB - A global model of terrestrial biological productivity , 1994 .

[179]  J. Randerson,et al.  Terrestrial ecosystem production: A process model based on global satellite and surface data , 1993 .

[180]  J. Toggweiler,et al.  A seasonal three‐dimensional ecosystem model of nitrogen cycling in the North Atlantic Euphotic Zone , 1993 .

[181]  Osvaldo M. R. Cabral,et al.  Leaf area index and above-ground biomass of terra firme rain forest and adjacent clearings in Amazonia , 1993 .

[182]  A. McGuire,et al.  Global climate change and terrestrial net primary production , 1993, Nature.

[183]  Stan D. Wullschleger,et al.  Biochemical Limitations to Carbon Assimilation in C3 Plants—A Retrospective Analysis of the A/Ci Curves from 109 Species , 1993 .

[184]  V. Smetacek,et al.  Carbon dioxide limitation of marine phytoplankton growth rates , 1993, Nature.

[185]  Piers J. Sellers,et al.  The first International Satellite Land Surface Climatology Project (ISLSCP) Field Experiment - FIFE , 1992 .

[186]  James F. Reynolds,et al.  Modelling photosynthesis of cotton grown in elevated CO2 , 1992 .

[187]  S. Prince A model of regional primary production for use with coarse resolution satellite data , 1991 .

[188]  G. Collatz,et al.  Physiological and environmental regulation of stomatal conductance, photosynthesis and transpiration: a model that includes a laminar boundary layer , 1991 .

[189]  Piers J. Sellers,et al.  A Simplified Biosphere Model for Global Climate Studies , 1991 .

[190]  H. Ducklow,et al.  A nitrogen-based model of plankton dynamics in the oceanic mixed layer , 1990 .

[191]  R. Geider The relationship between steady state phytoplankton growth and photosynthesis , 1990 .

[192]  T Platt,et al.  Remote sensing of ocean chlorophyll: consequence of nonuniform pigment profile. , 1989, Applied optics.

[193]  Thomas J. Givnish,et al.  On the economy of plant form and function. , 1988 .

[194]  J. Goudriaan,et al.  SEPARATING THE DIFFUSE AND DIRECT COMPONENT OF GLOBAL RADIATION AND ITS IMPLICATIONS FOR MODELING CANOPY PHOTOSYNTHESIS PART I. COMPONENTS OF INCOMING RADIATION , 1986 .

[195]  Trevor Platt,et al.  Primary production of the ocean water column as a function of surface light intensity: algorithms for remote sensing , 1986 .

[196]  C. Justice,et al.  Analysis of the phenology of global vegetation using meteorological satellite data , 1985 .

[197]  A. Wood Adaptation of photosynthetic apparatus of marine ultraphytoplankton to natural light fields , 1985, Nature.

[198]  J. Townshend,et al.  African Land-Cover Classification Using Satellite Data , 1985, Science.

[199]  R. W. Austin,et al.  Spectral Dependence Of The Diffuse Attenuation Coefficient Of Light In Ocean Waters , 1984, Other Conferences.

[200]  Peter M. Vitousek,et al.  Litterfall, Nutrient Cycling, and Nutrient Limitation in Tropical Forests , 1984 .

[201]  Peter H. Stone,et al.  Efficient Three-Dimensional Global Models for Climate Studies: Models I and II , 1983 .

[202]  J. Berry,et al.  A biochemical model of photosynthetic CO2 assimilation in leaves of C3 species , 1980, Planta.

[203]  I. R. Cowan,et al.  Stomatal conductance correlates with photosynthetic capacity , 1979, Nature.

[204]  J. Monteith Climate and the efficiency of crop production in Britain , 1977 .

[205]  J. Monteith SOLAR RADIATION AND PRODUCTIVITY IN TROPICAL ECOSYSTEMS , 1972 .

[206]  Thomas D. Sharkey,et al.  Photosynthesis in intact leaves of C3 plants: Physics, physiology and rate limitations , 2008, The Botanical Review.

[207]  Lucas J Stal,et al.  Colourful coexistence of red and green picocyanobacteria in lakes and seas. , 2007, Ecology letters.

[208]  C. Moulin,et al.  Seasonal distribution and succession of dominant phytoplankton groups in the global ocean : a satellite view - art. no. GB3001 , 2008 .

[209]  Jean-Michel Brankart,et al.  Improving the physics of a coupled physical-biogeochemical model of the North Atlantic through data assimilation: impact on the ecosystem. , 2007 .

[210]  Benjamin L Turner,et al.  Modelling phosphorus, carbon and nitrogen dynamics in terrestrial ecosystems. , 2005 .

[211]  Benjamin L. Turner,et al.  Organic phosphorus in the environment , 2005 .

[212]  Hendrik Poorter Interspecific variation in the growth response of plants to an elevated ambient CO2 concentration , 2004, Vegetatio.

[213]  C. Tucker,et al.  Northern hemisphere photosynthetic trends 1982–99 , 2003 .

[214]  M. Fasham,et al.  Ocean biogeochemistry: the role of the ocean carbon cycle in global change , 2003 .

[215]  K. Lindsay,et al.  Global Ocean Carbon Cycle Modeling , 2003 .

[216]  D. Taub Analysis of interspecific variation in plant growth responses to nitrogen , 2002 .

[217]  B. Choudhury Estimating Gross Photosynthesis Using Satellite and Ancillary Data: Approach and Preliminary Results , 2001 .

[218]  B. Kruijt,et al.  Should phosphorus availability be constraining moist tropical forest responses to increasing CO2 concentrations , 2001 .

[219]  Stephanie Dutkiewicz,et al.  Meteorological modulation of the North Atlantic spring bloom , 2001 .

[220]  E. Laws,et al.  Carbon cycling in primary production bottle incubations: inferences from grazing experiments and photosynthetic studies using and in the Arabian Sea , 2000 .

[221]  Peter E. Thornton,et al.  Parameterization and Sensitivity Analysis of the BIOME–BGC Terrestrial Ecosystem Model: Net Primary Production Controls , 2000 .

[222]  R. Brown,et al.  Agronomic Implications of C4 Photosynthesis , 1999 .

[223]  S. Long 7 – Environmental Responses , 1999 .

[224]  R. Monson,et al.  C[4] plant biology , 1999 .

[225]  David A. Wedin,et al.  10 – The Biogeography of C4 Photosynthesis: Patterns and Controlling Factors , 1999 .

[226]  C. Messier,et al.  Development of an improved model estimating the nutrient content of the bole for four boreal tree species , 1998 .

[227]  Hugh L. MacIntyre,et al.  A dynamic model of photoadaptation in phytoplankton , 1996 .

[228]  D. Baldocchi,et al.  CO2 fluxes over plant canopies and solar radiation: a review , 1995 .

[229]  F. Badeck Intra-leaf gradient of assimilation rate and optimal allocation of canopy nitrogen : a model on the implications of the use of homogeneous assimilation functions , 1995 .

[230]  J. Randerson,et al.  Global net primary production: Combining ecology and remote sensing , 1995 .

[231]  S. Running,et al.  8 – Generalization of a Forest Ecosystem Process Model for Other Biomes, BIOME-BGC, and an Application for Global-Scale Models , 1993 .

[232]  R. Geider Respiration: Taxation Without Representation? , 1992 .

[233]  Paul G. Falkowski,et al.  Primary Productivity and Biogeochemical Cycles in the Sea , 1992 .

[234]  G. Collatz,et al.  Coupled Photosynthesis-Stomatal Conductance Model for Leaves of C4 Plants , 1992 .

[235]  Hugh L. MacIntyre,et al.  Nutrient Limitation of Marine Photosynthesis , 1992 .

[236]  André Morel,et al.  Light and marine photosynthesis: a spectral model with geochemical and climatological implications , 1991 .

[237]  J. Ehleringer,et al.  Carbon Isotope Discrimination and Photosynthesis , 1989 .

[238]  Arana,et al.  Progress in Photosynthesis Research , 1987, Springer Netherlands.

[239]  I. E. Woodrow,et al.  A Model Predicting Stomatal Conductance and its Contribution to the Control of Photosynthesis under Different Environmental Conditions , 1987 .

[240]  Christopher B. Field,et al.  photosynthesis--nitrogen relationship in wild plants , 1986 .

[241]  Dale A. Kiefer,et al.  Chlorophyll a fluorescence in phytoplankton: relationship to photosynthesis and biomass , 1985 .

[242]  J. Ehleringer,et al.  Comparative ecophysiology of C3 and C4 plants , 1984 .

[243]  R. Onken,et al.  Diurnal variation and primary production in the ocean preliminary results of a Lagrangian ensemble model , 1982 .