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Effects of elevated atmospheric CO2 on canopy transpiration in senescent spring wheat
Grossman-Clarke S.,
Kimball B.A.,
Hunsaker D.J.,
Long S.P.,
Garcia R.L.,
Kartschall Th.,
Wall G.W.,
Printer P.J.,
Wechsung F., LaMorte R.L.
Agricultural and Forest Meteorology. 1999 93(2). p.95
Steady‐state models of photosynthesis
VON CAEMMERER SUSANNE
Plant, Cell & Environment. 2013 36(9). p.1617
Empirical models of the conductance of leaves in apple orchards
JONES H. G., HIGGS K. H.
Plant, Cell & Environment. 1989 12(3). p.301
Uncoupling of stomatal conductance and photosynthesis at high temperatures: mechanistic insights from online stable isotope techniques
Diao Haoyu,
Cernusak Lucas A.,
Saurer Matthias,
Gessler Arthur,
Siegwolf Rolf T. W., Lehmann Marco M.
New Phytologist. 2024 241(6). p.2366
Improving forest gross primary productivity estimation through climate and trait integration
Ren Hongge,
Zhang Li,
Yan Min,
Zhang Bo, Ruan Linlin
Ecological Modelling. 2025 501 p.111027
Precipitation alters the CO2 effect on water‐use efficiency of temperate forests
Belmecheri Soumaya,
Maxwell R. Stockton,
Taylor Alan H.,
Davis Kenneth J.,
Guerrieri Rossella,
Moore David J. P., Rayback Shelly A.
Global Change Biology. 2021 27(8). p.1560
Temporal Dynamics of Canopy Properties and Carbon and Water Fluxes in a Temperate Evergreen Angiosperm Forest
Renchon Alexandre A.,
Haverd Vanessa,
Trudinger Cathy M.,
Medlyn Belinda E.,
Griebel Anne,
Metzen Daniel,
Knauer Jürgen,
Boer Matthias M., Pendall Elise
Forests. 2024 15(5). p.801
Reliable estimation of biochemical parameters from C3 leaf photosynthesis–intercellular carbon dioxide response curves
GU LIANHONG,
PALLARDY STEPHEN G.,
TU KEVIN,
LAW BEVERLY E., WULLSCHLEGER STAN D.
Plant, Cell & Environment. 2010 33(11). p.1852
Influence of leaf age and light environment on the gas exchange of lupins and wheat
Henson Ian E.,
Jensen Christian R., Turner Neil C.
Physiologia Plantarum. 1990 79(1). p.15
Quantum efficiency of Photosystem II in relation to ‘energy’-dependent quenching of chlorophyll fluorescence
Weis Engelbert, Berry Joseph A.
Biochimica et Biophysica Acta (BBA) - Bioenergetics. 1987 894(2). p.198
The effect of initial stomatal opening on the dynamics of biochemical and overall photosynthetic induction
Wachendorf Magnus, Küppers Manfred
Trees. 2017 31(3). p.981
The peaked response of transpiration rate to vapour pressure deficit in field conditions can be explained by the temperature optimum of photosynthesis
Duursma Remko A.,
Barton Craig V.M.,
Lin Yan-Shih,
Medlyn Belinda E.,
Eamus Derek,
Tissue David T.,
Ellsworth David S., McMurtrie Ross E.
Agricultural and Forest Meteorology. 2014 189-190 p.2
Mesophyll photosynthesis and guard cell metabolism impacts on stomatal behaviour
Lawson Tracy,
Simkin Andrew J.,
Kelly Gilor, Granot David
New Phytologist. 2014 203(4). p.1064
Effects of nitrogen supply on phenology and carbon assimilation in youngNothofagus fusca
Stephens David W.,
Whitehead David,
Turnbull Matthew H., Millard Peter
New Zealand Journal of Botany. 2001 39(4). p.617
Handbook of Plant and Crop Physiology (2001)
A guide to photosynthetic gas exchange measurements: Fundamental principles, best practice and potential pitfalls
Busch Florian A.,
Ainsworth Elizabeth A.,
Amtmann Anna,
Cavanagh Amanda P.,
Driever Steven M.,
Ferguson John N.,
Kromdijk Johannes,
Lawson Tracy,
Leakey Andrew D. B.,
Matthews Jack S. A.,
Meacham‐Hensold Katherine,
Vath Richard L.,
Vialet‐Chabrand Silvere,
Walker Berkley J., Papanatsiou Maria
Plant, Cell & Environment. 2024 47(9). p.3344
Physiological Ecology of Forest Production (2011)
Modelling C3 photosynthesis from the chloroplast to the ecosystem
BERNACCHI CARL J.,
BAGLEY JUSTIN E.,
SERBIN SHAWN P.,
RUIZ‐VERA URSULA M.,
ROSENTHAL DAVID M., VANLOOCKE ANDY
Plant, Cell & Environment. 2013 36(9). p.1641
A dynamic model of photosynthesis in varying light taking account of stomatal conductance, C3‐cycle intermediates, photorespiration and Rubisco activation
GROSS L. J.,
KIRSCHBAUM M. U. F., PEARCY R. W.
Plant, Cell & Environment. 1991 14(9). p.881
Soil phosphorous and endogenous rhythms exert a larger impact than CO2 or temperature on nocturnal stomatal conductance in Eucalyptus tereticornis
de Dios V. R.,
Turnbull M. H.,
Barbour M. M.,
Ontedhu J.,
Ghannoum O., Tissue D. T.
Tree Physiology. 2013 33(11). p.1206
Plant competition for light analyzed with a multispecies canopy model
Ryel R. J.,
Barnes P. W.,
Beyschlag W.,
Caldwell M. M., Flint S. D.
Oecologia. 1990 82(3). p.304
Growth patterns of Pinus sylvestris across Europe: a functional analysis using the HYDRALL model
Magnani F,
Nolè A,
Ripullone F, Grace J
iForest - Biogeosciences and Forestry. 2009 2(5). p.162
Interactive effects of nitrogen deposition, tropospheric ozone, elevated CO2 and land use history on the carbon dynamics of northern hardwood forests
Ollinger Scott V.,
Aber John D.,
Reich Peter B., Freuder Rita J.
Global Change Biology. 2002 8(6). p.545
Progress in Botany 72 (2010)
Applying an empirical model of stomatal conductance to three C-4 grasses
Dougherty Robert L.,
Bradford James A.,
Coyne Patrick I., Sims Phillip L.
Agricultural and Forest Meteorology. 1994 67(3-4). p.269
The multi-assumption architecture and testbed (MAAT v1.0): R code for generating ensembles with dynamic model structure and analysis of epistemic uncertainty from multiple sources
Walker Anthony P.,
Ye Ming,
Lu Dan,
De Kauwe Martin G.,
Gu Lianhong,
Medlyn Belinda E.,
Rogers Alistair, Serbin Shawn P.
Geoscientific Model Development. 2018 11(8). p.3159
Measurements and modeling of photosynthesis in field crops
Bunce James A., Heichel Gary H.
Critical Reviews in Plant Sciences. 1986 4(1). p.47
Plant invasion impacts on the gross and net primary production of the salt marsh on eastern coast of China: Insights from leaf to ecosystem
Ge Zhen‐Ming,
Guo Hai‐Qiang,
Zhao Bin, Zhang Li‐Quan
Journal of Geophysical Research: Biogeosciences. 2015 120(1). p.169
Coupling Modelling and Experiments to Analyse Leaf Photosynthesis Under Far‐Red Light
Jans Tinko B.,
Mossink Leon,
Wassenaar Maarten,
Wientjes Emilie,
Driever Steven,
Huber Martina,
Pierik Ronald, de Boer Hugo J.
Plant, Cell & Environment. 2025 48(5). p.3171
An analytical model of non‐photorespiratory CO2 release in the light and dark in leaves of C3 species based on stoichiometric flux balance
BUCKLEY THOMAS N., ADAMS MARK A.
Plant, Cell & Environment. 2011 34(1). p.89
On the ratio of intercellular to ambient CO2 (c
i/c
a) derived from ecosystem flux
Tan Zheng-Hong,
Wu Zhi-Xiang,
Hughes Alice C.,
Schaefer Douglas,
Zeng Jiye,
Lan Guo-Yu,
Yang Chuang,
Tao Zhong-Liang,
Chen Bang-Qian,
Tian Yao-Hua,
Song Liang,
Jatoi Muhammad Tahir,
Zhao Jun-Fu, Yang Lian-Yan
International Journal of Biometeorology. 2017 61(12). p.2059
Do stomata optimize turgor‐driven growth? A new framework for integrating stomata response with whole‐plant hydraulics and carbon balance
Potkay Aaron, Feng Xue
New Phytologist. 2023 238(2). p.506
Rice (Oryza sativa) alleviates photosynthesis and yield loss by limiting specific leaf weight under low light intensity
Saha Shoumik,
Purkayastha Shampa,
K Nimitha,
Ganguly Sebantee,
Das Subhadeep,
Ganguly Shamba,
Sinha Mahapatra Nilanjan,
Bhattacharya Kriti,
Das Dibakar,
Saha Arup K.,
Biswas Tirthankar,
Bhattacharyya Prabir K.,
Bhattacharyya Somnath, Allakhverdiev Suleyman
Functional Plant Biology. 2023 50(4). p.267
Testing different CO2 response algorithms against a FACE crop rotation experiment
Nendel C.,
Kersebaum K.C.,
Mirschel W.,
Manderscheid R.,
Weigel H.-J., Wenkel K.-O.
NJAS: Wageningen Journal of Life Sciences. 2009 57(1). p.17
Belowground factors mediating changes in methane consumption in a forest soil under elevated CO2
McLain Jean E. T.,
Kepler Thomas B., Ahmann Dianne M.
Global Biogeochemical Cycles. 2002 16(3).
Response of tomato crop growth and development to a vertical temperature gradient in a semi-closed greenhouse
Qian T.,
Dieleman J. A.,
Elings A.,
De Gelder A., Marcelis L. F. M.
The Journal of Horticultural Science and Biotechnology. 2015 90(5). p.578
Modelling transpiration and growth in salinity-stressed tomato under different climatic conditions
Karlberg Louise,
Ben-Gal Alon,
Jansson Per-Erik, Shani Uri
Ecological Modelling. 2006 190(1-2). p.15
Season effects on leaf nitrogen partitioning and photosynthetic water use efficiency in mango
Urban Laurent,
Montpied Pierre, Normand Frédéric
Journal of Plant Physiology. 2006 163(1). p.48
An overview of long-term effects of elevated atmospheric CO2concentration on the growth and physiology of birch (Betula pendulaRoth.)
Rey Ana, Jarvis Paul G.
Botanical Journal of Scotland. 1997 49(2). p.325
Water level impact on pine seedlings in greenhouse conditions: assessing growth and survival potential in ditched and managed peatlands
Edvardsson Johannes,
Lund Anna, Levinsson Anna
Scandinavian Journal of Forest Research. 2024 39(3-4). p.199
On the Treatment of Soil Water Stress in GCM Simulations of Vegetation Physiology
Vidale P. L.,
Egea G.,
McGuire P. C.,
Todt M.,
Peters W.,
Müller O.,
Balan-Sarojini B., Verhoef A.
Frontiers in Environmental Science. 2021 9
The role of the mesophyll in stomatal responses to light and CO2
MOTT KEITH A.,
SIBBERNSEN ERIK D., SHOPE JOSEPH C.
Plant, Cell & Environment. 2008 31(9). p.1299
Reductions in mesophyll and guard cell photosynthesis impact on the control of stomatal responses to light and CO2
Lawson Tracy,
Lefebvre Stephane,
Baker Neil R.,
Morison James I. L., Raines Christine A.
Journal of Experimental Botany. 2008 59(13). p.3609
Stomatal responses to CO2 during a diel Crassulacean acid metabolism cycle in Kalanchoe daigremontiana and Kalanchoe pinnata
VON CAEMMERER SUSANNE, GRIFFITHS HOWARD
Plant, Cell & Environment. 2009 32(5). p.567
Partitioning of water flux in a Sierra Nevada ponderosa pine plantation
Kurpius M.R,
Panek J.A,
Nikolov N.T,
McKay M, Goldstein A.H
Agricultural and Forest Meteorology. 2003 117(3-4). p.173
The third dimension of bat migration: evidence for elevational movements of Miniopterus natalensis along the slopes of Mount Kilimanjaro
Voigt Christian C.,
Helbig-Bonitz Maria,
Kramer-Schadt Stephanie, Kalko Elisabeth K. V.
Oecologia. 2014 174(3). p.751
Optimal leaf life strategies determine Vc,max dynamic during ontogeny
Detto Matteo, Xu Xiangtao
New Phytologist. 2020 228(1). p.361
Parameter inversion estimation in photosynthetic models: Impact of different simulation methods
Wang H. B.,
Ma M. G.,
Xie Y. M.,
Wang X. F., Wang J.
Photosynthetica. 2014 52(2). p.233
Dynamics of patchy stomatal movements, and their contribution to steady‐state and oscillating stomatal conductance calculated using gas‐exchange techniques
CARDON Z. G.,
MOTT K. A., BERRY J. A.
Plant, Cell & Environment. 1994 17(9). p.995
Modelling stomatal conductance in response to environmental factors
BUCKLEY THOMAS N., MOTT KEITH A.
Plant, Cell & Environment. 2013 36(9). p.1691
Carbon isotope evidence implying high O2/CO2 ratios in the Permo-Carboniferous atmosphere
Beerling D.J.,
Lake J.A.,
Berner R.A.,
Hickey L.J.,
Taylor D.W., Royer D.L.
Geochimica et Cosmochimica Acta. 2002 66(21). p.3757
Global patterns of intraspecific leaf trait responses to elevation
Midolo Gabriele,
De Frenne Pieter,
Hölzel Norbert, Wellstein Camilla
Global Change Biology. 2019 25(7). p.2485
Seasonal variation of the leaf-scale control of gas exchange in a temperate broad-leaved forest.
Matsuo Naoko, Kosugi Yoshiko
Journal of the Japanese Society of Revegetation Technology. 2002 28(1). p.14
Opinion: The red-light response of stomatal movement is sensed by the redox state of the photosynthetic electron transport chain
Busch Florian A.
Photosynthesis Research. 2014 119(1-2). p.131
Carbon Dioxide and Terrestrial Ecosystems (1996)
Influences of local feedbacks on land–air exchanges of energy and carbon
Raupach M. R.
Global Change Biology. 1998 4(5). p.477
Advances in Botanical Research Volume 26 (1997)
Photosynthesis (2024)
Response of ecosystem intrinsic water use efficiency and gross primary productivity to rising vapor pressure deficit
Zhang Quan,
Ficklin Darren L,
Manzoni Stefano,
Wang Lixin,
Way Danielle,
Phillips Richard P, Novick Kimberly A
Environmental Research Letters. 2019 14(7). p.074023
Stomatal CO2 sensing in plants: control of gas exchange and interactions with environmental stimuli
Takahashi Yohei,
Joo Hyunhee,
Pankasem Nattiwong,
Hsu Po-Kai, Schroeder Julian I
Plant and Cell Physiology. 2025
Reporting estimates of maximum potential electron transport rate
Buckley Thomas N., Diaz‐Espejo Antonio
New Phytologist. 2015 205(1). p.14
Kinetic factors of physiology and the dynamic light environment influence the economic landscape of short‐term hydraulic risk
Buckley Thomas N.,
Frehner Ethan H., Bailey Brian N.
New Phytologist. 2023 238(2). p.529
Effects of short-term variation in weather on diurnal canopy CO2 flux and evapotranspiration of a juvenile douglas-fir stand
Price D.T., Black T.A.
Agricultural and Forest Meteorology. 1990 50(3). p.139
Spatial and temporal scaling of intercellular CO2concentration in a temperate rain forest dominated byDacrydium cupressinumin New Zealand
TISSUE DAVID T.,
BARBOUR MARGARET M.,
HUNT JOHN E.,
TURNBULL MATTHEW H.,
GRIFFIN KEVIN L.,
WALCROFT ADRIAN S., WHITEHEAD DAVID
Plant, Cell & Environment. 2006 29(4). p.497
Assessment of annual carbon exchange in a water‐stressed Pinus radiata plantation: an analysis based on eddy covariance measurements and an integrated biophysical model
Arneth A.,
Kelliher F. M.,
Mcseveny T. M., Byers J. N.
Global Change Biology. 1999 5(5). p.531
Vascular Transport in Plants (2005)
Does transpiration limit the growth of vegetation or vice versa?
Monteith J.L.
Journal of Hydrology. 1988 100(1-3). p.57
European‐wide simulations of croplands using an improved terrestrial biosphere model: Phenology and productivity
Smith P. C.,
De Noblet‐Ducoudré N.,
Ciais P.,
Peylin P.,
Viovy N.,
Meurdesoif Y., Bondeau A.
Journal of Geophysical Research: Biogeosciences. 2010 115(G1).
Mathematical review of literature to assess alternative electron transports and interphotosystem excitation partitioning of steady‐state C3photosynthesis under limiting light
YIN XINYOU,
HARBINSON JEREMY, STRUIK PAUL C.
Plant, Cell & Environment. 2006 29(9). p.1771
Sensitivity of stomata and water use efficiency to high CO2
MORISON JAMES I. L.
Plant, Cell & Environment. 1985 8(6). p.467
Eco‐physiological and morphological traits explain alpine plant species' response to warming
Visakorpi Kristiina,
Block Sebastián,
Pellissier Loïc,
Levine Jonathan M., Alexander Jake
Functional Ecology. 2023 37(2). p.287
Comparison of C3 Photosynthetic Responses to Light and CO2 Predicted by the Leaf Photosynthesis Models of Farquhar et al. (1980) and Goudriaan et al. (1985)
van Diepen K. H. H.,
Goudriaan J.,
Vilà‐Guerau de Arellano J., de Boer H. J.
Journal of Advances in Modeling Earth Systems. 2022 14(9).
The interplay of short‐term mesophyll and stomatal conductance responses under variable environmental conditions
Márquez Diego A., Busch Florian A.
Plant, Cell & Environment. 2024 47(9). p.3393
Warming triggers stomatal opening by enhancement of photosynthesis and ensuing guard cell CO2 sensing, whereas higher temperatures induce a photosynthesis‐uncoupled response
Pankasem Nattiwong,
Hsu Po‐Kai,
Lopez Bryn N. K.,
Franks Peter J., Schroeder Julian I.
New Phytologist. 2024 244(5). p.1847
Stomatal Responses to Light, CO2, and Mesophyll Tissue in Vicia faba and Kalanchoë fedtschenkoi
Santos Mauro G.,
Davey Phillip A.,
Hofmann Tanja A.,
Borland Anne,
Hartwell James, Lawson Tracy
Frontiers in Plant Science. 2021 12
Advances in Botanical Research Volume 20 (1994)
A Mathematical Model of Photosynthetic Electron Transport in Response to the Light Spectrum Based on Excitation Energy Distributed to Photosystems
Murakami Keach,
Matsuda Ryo, Fujiwara Kazuhiro
Plant and Cell Physiology. 2018 59(8). p.1643
In situ stomatal responses to long-term CO2 enrichment in calcareous grassland plants
Lauber Wolfgang, Körner Christian
Acta Oecologica. 1997 18(3). p.221
Sugarcane: Physiology, Biochemistry, and Functional Biology (2013)
Modeling Light Response of Electron Transport Rate and Its Allocation for Ribulose Biphosphate Carboxylation and Oxygenation
Ye Zi-Piao,
Kang Hua-Jing,
An Ting,
Duan Hong-Lang,
Wang Fu-Biao,
Yang Xiao-Long, Zhou Shuang-Xi
Frontiers in Plant Science. 2020 11
Control of Metabolic Processes (1990)
Progress in Botany (1986)
The Ball–Berry–Leuning and Tardieu–Davies stomatal models: synthesis and extension within a spatially aggregated picture of guard cell function
Dewar R. C.
Plant, Cell & Environment. 2002 25(11). p.1383
Stomatal behaviour, photosynthesis and transpiration under rising CO2
JARVIS A. J.,
MANSFIELD T. A., DAVIES W. J.
Plant, Cell & Environment. 1999 22(6). p.639
A generalised dynamic model of leaf-level C3 photosynthesis combining light and dark reactions with stomatal behaviour
Bellasio Chandra
Photosynthesis Research. 2019 141(1). p.99
Low conductances for CO2 diffusion from stomata to the sites of carboxylation in leaves of woody species
LLOYD J.,
SYVERTSEN J. P.,
KRIEDEMANN P. E., FARQUHAR G. D.
Plant, Cell & Environment. 1992 15(8). p.873
Metabolic modeling identifies determinants of thermal growth responses in Arabidopsis thaliana
Wendering Philipp,
Andreou Gregory M.,
Laitinen Roosa A. E., Nikoloski Zoran
New Phytologist. 2025 247(1). p.178
Modeling atmospheric O2 over Phanerozoic time
Berner R.A.
Geochimica et Cosmochimica Acta. 2001 65(5). p.685
More timber from boreal forests under changing climate?
Kellomäki Seppo,
Karjalainen Timo, Väisänen Hannu
Forest Ecology and Management. 1997 94(1-3). p.195
A process-based, terrestrial biosphere model of ecosystem dynamics (Hybrid v3.0)
Friend A.D.,
Stevens A.K.,
Knox R.G., Cannell M.G.R.
Ecological Modelling. 1997 95(2-3). p.249
Crop Modeling and Decision Support (2009)
A new analytical model for whole‐leaf potential electron transport rate
BUCKLEY T. N., FARQUHAR G. D.
Plant, Cell & Environment. 2004 27(12). p.1487
Photosynthesis (2018)
Persistent negative temperature response of mesophyll conductance in red raspberry (Rubus idaeus L.) leaves under both high and low vapour pressure deficits: a role for abscisic acid?
Qiu Changpeng,
Ethier Gilbert,
Pepin Steeve,
Dubé Pascal,
Desjardins Yves, Gosselin André
Plant, Cell & Environment. 2017 40(9). p.1940
Global photosynthetic capacity is optimized to the environment
Smith Nicholas G.,
Keenan Trevor F.,
Colin Prentice I.,
Wang Han,
Wright Ian J.,
Niinemets Ülo,
Crous Kristine Y.,
Domingues Tomas F.,
Guerrieri Rossella,
Yoko Ishida F.,
Kattge Jens,
Kruger Eric L.,
Maire Vincent,
Rogers Alistair,
Serbin Shawn P.,
Tarvainen Lasse,
Togashi Henrique F.,
Townsend Philip A.,
Wang Meng,
Weerasinghe Lasantha K.,
Zhou Shuang‐Xi, Niu Shuli
Ecology Letters. 2019 22(3). p.506
Short‐term variation in leaf‐level water use efficiency in a tropical forest
Davidson Kenneth J.,
Lamour Julien,
Rogers Alistair,
Ely Kim S.,
Li Qianyu,
McDowell Nate G.,
Pivovaroff Alexandria L.,
Wolfe Brett T.,
Wright S. Joseph,
Zambrano Alfonso, Serbin Shawn P.
New Phytologist. 2023 237(6). p.2069
Photosynthetic pathways in Bromeliaceae: phylogenetic and ecological significance of CAM and C3based on carbon isotope ratios for 1893 species
Crayn Darren M.,
Winter Klaus,
Schulte Katharina, Smith J. Andrew C.
Botanical Journal of the Linnean Society. 2015 178(2). p.169
Modelling vegetation primary production during HAPEX-Sahel using production efficiency and canopy conductance model formulations
Hanan N.P.,
Prince S.D., Bégué A.
Journal of Hydrology. 1997 188-189 p.651
Phanerozoic Atmospheric Oxygen
Berner Robert A.,
Beerling David J.,
Dudley Robert,
Robinson Jennifer M., Wildman Richard A.
Annual Review of Earth and Planetary Sciences. 2003 31(1). p.105
Modeling CO2 exchange over a Bornean tropical rain forest using measured vertical and horizontal variations in leaf‐level physiological parameters and leaf area densities
Kumagai Tomo`omi,
Ichie Tomoaki,
Yoshimura Mitsunori,
Yamashita Megumi,
Kenzo Tanaka,
Saitoh Taku M.,
Ohashi Mizue,
Suzuki Masakazu,
Koike Takayoshi, Komatsu Hikaru
Journal of Geophysical Research: Atmospheres. 2006 111(D10).
Steps toward an improvement in process-based models of water use by fruit trees: A case study in olive
Diaz-Espejo A.,
Buckley T.N.,
Sperry J.S.,
Cuevas M.V.,
de Cires A.,
Elsayed-Farag S.,
Martin-Palomo M.J.,
Muriel J.L.,
Perez-Martin A.,
Rodriguez-Dominguez C.M.,
Rubio-Casal A.E.,
Torres-Ruiz J.M., Fernández J.E.
Agricultural Water Management. 2012 114 p.37
Using a Bottom-Up Approach to Scale Leaf Photosynthetic Traits of Oil Palm, Rubber, and Two Coexisting Tropical Woody Species
Ali Ashehad A.,
Nugroho Branindityo,
Moyano Fernando E.,
Brambach Fabian,
Jenkins Michael W.,
Pangle Robert,
Stiegler Christian,
Blei Emanuel,
Cahyo Andi Nur,
Olchev Alexander,
Irawan Bambang,
Ariani Rahmi,
June Tania,
Tarigan Suria,
Corre Marife D.,
Veldkamp Edzo, Knohl Alexander
Forests. 2021 12(3). p.359
A Two-Big-Leaf Model for Canopy Temperature, Photosynthesis, and Stomatal Conductance
Dai Yongjiu,
Dickinson Robert E., Wang Ying-Ping
Journal of Climate. 2004 17(12). p.2281
Photosynthesis in newly developed leaves of heat-tolerant wheat acclimates to long-term nocturnal warming
Coast Onoriode,
Scafaro Andrew P,
Bramley Helen,
Taylor Nicolas L,
Atkin Owen K, Carmo-Silva Elizabete
Journal of Experimental Botany. 2024 75(3). p.962
Measurement and influence of environmental and plant factors on stomatal conductance in the field
Turner Neil C.
Agricultural and Forest Meteorology. 1991 54(2-4). p.137
Evolution of a biochemical model of steady‐state photosynthesis
Yin Xinyou,
Busch Florian A.,
Struik Paul C., Sharkey Thomas D.
Plant, Cell & Environment. 2021 44(9). p.2811
Effects of kinetics of light‐induced stomatal responses on photosynthesis and water‐use efficiency
McAusland Lorna,
Vialet‐Chabrand Silvère,
Davey Philip,
Baker Neil R.,
Brendel Oliver, Lawson Tracy
New Phytologist. 2016 211(4). p.1209
Fifty years since Monteith's 1965 seminal paper: the emergence of global ecohydrology
Dolman A. Johannes,
Miralles Diego G., de Jeu Richard A.M.
Ecohydrology. 2014 7(3). p.897
Use of a model of photosynthesis and leaf microenvironment to predict optimal stomatal conductance and leaf nitrogen partitioning
FRIEND A. D.
Plant, Cell & Environment. 1991 14(9). p.895
Estimation of photosynthesis parameters for a modified Farquhar–von Caemmerer–Berry model using simultaneous estimation method and nonlinear mixed effects model
Qian T.,
Elings A.,
Dieleman J.A.,
Gort G., Marcelis L.F.M.
Environmental and Experimental Botany. 2012 82 p.66
Leaf photosynthetic plasticity does not predict biomass responses to growth irradiance in rice
Chen Lin,
Luo Wanzhen,
Huang Jianliang,
Peng Shaobing, Xiong Dongliang
Physiologia Plantarum. 2021 173(4). p.2155
A refinement to the two-leaf model for calculating canopy photosynthesis
Wang Ying Ping
Agricultural and Forest Meteorology. 2000 101(2-3). p.143
Light‐dependent damage to photosynthesis in olive leaves during chilling and high temperature stress
BONGI G., LONG S. P.
Plant, Cell & Environment. 1987 10(3). p.241
Leaf nitrogen, photosynthesis, conductance and transpiration: scaling from leaves to canopies
LEUNING R.,
KELLIHER F. M.,
DE PURY D. G. G., SCHULZE E.‐D.
Plant, Cell & Environment. 1995 18(10). p.1183
Photosynthesis affects following night leaf conductance in Vicia faba
EASLON HSIEN MING, RICHARDS JAMES H.
Plant, Cell & Environment. 2009 32(1). p.58
Quantitative System Modeling Bridges the Gap between Macro‐ and Microscopic Stomatal Model
Rui Mengmeng,
Jing Yi,
Jiang Hangjin, Wang Yizhou
Advanced Biology. 2022 6(10).
Simulating evapotranspiration and photosynthesis of winter wheat over the growing season
Mo Xingguo, Liu Suxia
Agricultural and Forest Meteorology. 2001 109(3). p.203
The effects of clearcut harvesting on moss chloroplast lipidome and adaptation to light stress during boreal forest regeneration
Callahan Grace,
Fillier Tiffany,
Pham Thu Huong,
Zhu Xinbiao, Thomas Raymond
Journal of Environmental Management. 2022 315 p.115126
Calibrating a remote sensing evapotranspiration model using the Budyko framework
Bai Peng, Cai Changxin
Agricultural and Forest Meteorology. 2023 342 p.109757
On the air cleansing efficiency of an extended green wall: A CFD analysis of mechanistic details of transport processes
Joshi Saumitra V., Ghosh Sat.
Journal of Theoretical Biology. 2014 361 p.101
Multi‐hypothesis comparison of Farquhar and Collatz photosynthesis models reveals the unexpected influence of empirical assumptions at leaf and global scales
Walker Anthony P.,
Johnson Abbey L.,
Rogers Alistair,
Anderson Jeremiah,
Bridges Robert A.,
Fisher Rosie A.,
Lu Dan,
Ricciuto Daniel M.,
Serbin Shawn P., Ye Ming
Global Change Biology. 2021 27(4). p.804
Does Rubisco control the rate of photosynthesis and plant growth? An exercise in molecular ecophysiology
STITT M., SCHULZE D.
Plant, Cell & Environment. 1994 17(5). p.465
The Regulation of Rubisco Activity in Response to Variation in Temperature and Atmospheric CO2 Partial Pressure in Sweet Potato
Cen Yan-Ping, Sage Rowan F.
Plant Physiology. 2005 139(2). p.979
Annual carbon fixation in terrestrial populations of Nostoc commune (Cyanobacteria) from an Antarctic dry valley is driven by temperature regime
NOVIS PHIL M.,
WHITEHEAD DAVID,
GREGORICH ED G.,
HUNT JOHN E.,
SPARROW ASHLEY D.,
HOPKINS DAVID W.,
ELBERLING BO, GREENFIELD LAURIE G.
Global Change Biology. 2007 13(6). p.1224
Impacts of Global Change on Tree Physiology and Forest Ecosystems (1997)
A new version of the CABLE land surface model (Subversion revision r4601) incorporating land use and land cover change, woody vegetation demography, and a novel optimisation-based approach to plant coordination of photosynthesis
Haverd Vanessa,
Smith Benjamin,
Nieradzik Lars,
Briggs Peter R.,
Woodgate William,
Trudinger Cathy M.,
Canadell Josep G., Cuntz Matthias
Geoscientific Model Development. 2018 11(7). p.2995
Radiative transfer Vcmax estimation from hyperspectral imagery and SIF retrievals to assess photosynthetic performance in rainfed and irrigated plant phenotyping trials
Camino Carlos,
Gonzalez-Dugo Victoria,
Hernandez Pilar, Zarco-Tejada Pablo J.
Remote Sensing of Environment. 2019 231 p.111186
Simulating short-term light responses of photosynthesis and water use efficiency in sweet sorghum under varying temperature and CO2 conditions
Yang Xiao-Long,
Ma Xiao-Fei,
Ye Zi-Piao,
Yang Long-Sheng,
Shi Jun-Bo,
Wang Xun,
Zhou Bei-Bei,
Wang Fu-Biao, Deng Zi-Fa
Frontiers in Plant Science. 2024 15
Linked stomata and photosynthesis model for Corylus avellana (hazel)
von Stamm Susanne
Ecological Modelling. 1994 75-76 p.345
Optimum vegetation characteristics, assimilation, and transpiration during a dry season: 1. Model description
van der Tol C.,
Meesters A. G. C. A.,
Dolman A. J., Waterloo M. J.
Water Resources Research. 2008 44(3).
A critical appraisal of a combined stomatal‐photosynthesis model for C3 plants
LEUNING R.
Plant, Cell & Environment. 1995 18(4). p.339
Environmental and physiological determinants of carbon isotope discrimination in terrestrial plants
Cernusak Lucas A.,
Ubierna Nerea,
Winter Klaus,
Holtum Joseph A. M.,
Marshall John D., Farquhar Graham D.
New Phytologist. 2013 200(4). p.950
The stomatal response to evaporative demand persists at night in Ricinus communis plants with high nocturnal conductance
BARBOUR MARGARET M., BUCKLEY THOMAS N.
Plant, Cell & Environment. 2007 30(6). p.711
Stable carbon isotopes of woods during carbonization and their correlation with climatic factors
Luo Fan,
Sun Nan,
Li Xiabo,
Guo Junfeng,
Xiao Liang,
Lei Peng, Song Yougui
PLOS ONE. 2022 17(10). p.e0270133
Spatio‐Temporal Variations in Carbon Isotope Discrimination Predicted by the JULES Land Surface Model
Palmer Lewis,
Robertson Iain,
Lavergne Aliénor,
Hemming Deborah,
Loader Neil J.,
Young Giles,
Davies Darren,
Rinne‐Garmston Katja,
Los Sietse, Williams Jamie
Journal of Geophysical Research: Biogeosciences. 2022 127(12).
Improving the process-based simulation of growth heterogeneities in agricultural stands through assimilation of earth observation data
2012 IEEE International Geoscience and Remote Sensing Symposium (2012)
Forest Hydrology and Biogeochemistry (2011)
Water-use efficiency – indications from carbon and oxygen stable isotope composition of crop plants
Eitelberg Leah,
Sun Yajie,
Amelung Wulf, Bauke Sara L.
Plant and Soil. 2025
The effect of temperature on C4‐type leaf photosynthesis parameters
MASSAD RAIA‐SILVIA,
TUZET ANDRÉE, BETHENOD OLIVIER
Plant, Cell & Environment. 2007 30(9). p.1191
Effect of flooding on C metabolism of flood-tolerant (Quercus robur) and non-tolerant (Fagus sylvatica) tree species
Ferner E.,
Rennenberg H., Kreuzwieser J.
Tree Physiology. 2012 32(2). p.135
A model of stomatal conductance to quantify the relationship between leaf transpiration, microclimate and soil water stress
Gao Q.,
Zhao P.,
Zeng X.,
Cai X., Shen W.
Plant, Cell & Environment. 2002 25(11). p.1373
Evidence for Involvement of Photosynthetic Processes in the Stomatal Response to CO2
Messinger Susanna M.,
Buckley Thomas N., Mott Keith A.
Plant Physiology. 2006 140(2). p.771
Optimal plant water economy
Buckley Thomas N,
Sack Lawren, Farquhar Graham D
Plant, Cell & Environment. 2017 40(6). p.881
The relationship of leaf photosynthetic traits – Vcmax and Jmax – to leaf nitrogen, leaf phosphorus, and specific leaf area: a meta‐analysis and modeling study
Walker Anthony P.,
Beckerman Andrew P.,
Gu Lianhong,
Kattge Jens,
Cernusak Lucas A.,
Domingues Tomas F.,
Scales Joanna C.,
Wohlfahrt Georg,
Wullschleger Stan D., Woodward F. Ian
Ecology and Evolution. 2014 4(16). p.3218
An Excel tool for deriving key photosynthetic parameters from combined gas exchange and chlorophyll fluorescence: theory and practice
Bellasio Chandra,
Beerling David J, Griffiths Howard
Plant, Cell & Environment. 2016 39(6). p.1180
Photosynthesis: from Light to Biosphere (1995)
Modelling photosynthesis in flag leaves of winter wheat (Triticum aestivum) considering the variation in photosynthesis parameters during development
Sun Jingsong,
Sun Jindong, Feng Zhaozhong
Functional Plant Biology. 2015 42(11). p.1036
Closer vein spacing by ectopic expression of nucleotide-binding and leucine-rich repeat proteins in rice leaves
Lo Shuen-Fang,
Chatterjee Jolly,
Biswal Akshaya K.,
Liu I.-Lun,
Chang Yu-Pei,
Chen Pei-Jing,
Wanchana Samart,
Elmido-Mabilangan Abigail,
Nepomuceno Robert A.,
Bandyopadhyay Anindya,
Hsing Yue-Ie, Quick William Paul
Plant Cell Reports. 2022 41(2). p.319
Reduction of bundle sheath size boosts cyclic electron flow in C4Setaria viridis acclimated to low light
Bellasio Chandra, Ermakova Maria
The Plant Journal. 2022 111(5). p.1223
Photon-Vegetation Interactions (1991)
The applicability of a SIF-based mechanistic model for estimating GPP at the canopy scale
Liu Yanping,
Hu Zhaoyong,
Wang Genxu,
Gessler Arthur, Sun Shouqin
Agricultural and Forest Meteorology. 2024 356 p.110192
A simple calibrated model of Amazon rainforest productivity based on leaf biochemical properties
LLOYD J.,
GRACE J.,
MIRANDA A. C.,
MEIR P.,
WONG S. C.,
MIRANDA H. S.,
WRIGHT I. R.,
GASH J. H. C., McINTYRE J.
Plant, Cell & Environment. 1995 18(10). p.1129
Stomatal heterogeneity in responses to humidity and temperature: Testing a mechanistic model
Sweet Kathryn J.,
Peak David, Mott Keith A.
Plant, Cell & Environment. 2017 40(11). p.2771
Progress in Photosynthesis Research (1987)
A Model of C4 Photosynthetic Acclimation Based on Least‐Cost Optimality Theory Suitable for Earth System Model Incorporation
Scott Helen G., Smith Nicholas G.
Journal of Advances in Modeling Earth Systems. 2022 14(3).
Incorporating canopy physiology into a hydrological model: photosynthesis, dynamic respiration, and stomatal sensitivity
Garcia-Quijano Juan F., Barros Ana P.
Ecological Modelling. 2005 185(1). p.29
Mathematical models of the photosynthetic response of tree stands to rising CO2 concentrations and temperatures
McMURTRIE R. E., WANG Y.‐P.
Plant, Cell & Environment. 1993 16(1). p.1
Foliar δ13C Showed No Altitudinal Trend in an Arid Region and Atmospheric Pressure Exerted a Negative Effect on Plant δ13C
Chen Zixun,
Wang Guoan, Jia Yufu
Frontiers in Plant Science. 2017 8
On the need to incorporate sensitivity to CO2 transfer conductance into the Farquhar–von Caemmerer–Berry leaf photosynthesis model
ETHIER G. J., LIVINGSTON N. J.
Plant, Cell & Environment. 2004 27(2). p.137
A hierarchical Bayesian approach for estimation of photosynthetic parameters of C3plants
PATRICK LISA D.,
OGLE KIONA, TISSUE DAVID T.
Plant, Cell & Environment. 2009 32(12). p.1695
Modeling canopy CO2 and H2O exchange of a temperate mixed forest
Shi Ting‐Ting,
Guan De‐Xin,
Wang An‐Zhi,
Wu Jia‐Bing,
Yuan Feng‐Hui,
Jin Chang‐Jie, Zhang Mi
Journal of Geophysical Research: Atmospheres. 2010 115(D17).
Accounting for the decrease of photosystem photochemical efficiency with increasing irradiance to estimate quantum yield of leaf photosynthesis
Yin Xinyou,
Belay Daniel W.,
van der Putten Peter E. L., Struik Paul C.
Photosynthesis Research. 2014 122(3). p.323
Observation and Measurement of Ecohydrological Processes (2019)
Impact of fog drip versus fog immersion on the physiology of Bishop pine saplings
Baguskas Sara A.,
King Jennifer Y.,
Fischer Douglas T.,
D'Antonio Carla M., Still Christopher J.
Functional Plant Biology. 2017 44(3). p.339
A coupled carbon-water-energy-vegetation model to assess responses of temperate forest ecosystems to changes in climate and atmospheric CO2. Part I. Model concept
Nikolov Nedialko T., Fox Douglas G.
Environmental Pollution. 1994 83(1-2). p.251
Advanced Agricultural Instrumentation (1986)
Photosynthesis-dependent/independent control of stomatal responses to CO2 in mutant barley with surplus electron transport capacity and reduced SLAH3 anion channel transcript
Córdoba Javier,
Molina-Cano José-Luis,
Pérez Pilar,
Morcuende Rosa,
Moralejo Marian,
Savé Robert, Martínez-Carrasco Rafael
Plant Science. 2015 239 p.15
Parameterization of the CO2 and H2O gas exchange of several temperate deciduous broad‐leaved trees at the leaf scale considering seasonal changes
KOSUGI Y.,
SHIBATA S., KOBASHI S.
Plant, Cell & Environment. 2003 26(2). p.285
Relationship between wheat yield and foliage temperature: theory and its application to infrared measurements
Smith R.C.G,
Barrs H.D,
Steiner J.L, Stapper M
Agricultural and Forest Meteorology. 1985 36(2). p.129
Opinion: Stomatal responses to light and CO2 depend on the mesophyll
MOTT KEITH A.
Plant, Cell & Environment. 2009 32(11). p.1479
Low stomatal and internal conductance to CO2 versus Rubisco deactivation as determinants of the photosynthetic decline of ageing evergreen leaves
ETHIER G. J.,
LIVINGSTON N. J.,
HARRISON D. L.,
BLACK T. A., MORAN J. A.
Plant, Cell & Environment. 2006 29(12). p.2168
Patterns and variability in seedling carbon assimilation: implications for tree recruitment under climate change
Peltier D. M. P., Ibanez I.
Tree Physiology. 2015 35(1). p.71
Growth patterns and carbon balance of Pinus radiata and Pseudotsuga menziesii plantations under climate change scenarios in Italy
Magnani F.,
Consiglio L.,
Erhard M.,
Nolè A.,
Ripullone F., Borghetti M.
Forest Ecology and Management. 2004 202(1-3). p.93
Seasonal fluctuations in growth/decline and single-leaf gas exchange of C3 turfgrass fields under various light conditions
MATSUBARA Takashi,
KOSUGI Yoshiko,
TAKANASHI Satoru,
MIZOTA Yoko,
ITOH Masayuki,
OSAKA Ken'ichi,
FUJIMOTO Masamitsu, OHKUBO Shinjiro
Journal of Agricultural Meteorology. 2011 67(1). p.1
Simple models for stomatal conductance derived from a process model: cross‐validation against sap flux data
BUCKLEY THOMAS N.,
TURNBULL TARRYN L., ADAMS MARK A.
Plant, Cell & Environment. 2012 35(9). p.1647
Importance of tree height and social position for drought-related stress on tree growth and mortality
Grote Rüdiger,
Gessler Arthur,
Hommel Robert,
Poschenrieder Werner, Priesack Eckart
Trees. 2016 30(5). p.1467
Detection of morphological and eco-physiological traits of ornamental woody species to assess their potential Net O3 uptake
Manzini Jacopo,
Hoshika Yasutomo,
Sicard Pierre,
De Marco Alessandra,
Ferrini Francesco,
Pallozzi Emanuele,
Neri Luisa,
Baraldi Rita,
Paoletti Elena, Moura Barbara Baesso
Environmental Research. 2024 252 p.118844
Modelling the soil‐plant‐atmosphere continuum in a Quercus–Acer stand at Harvard Forest: the regulation of stomatal conductance by light, nitrogen and soil/plant hydraulic properties
WILLIAMS M.,
RASTETTER E. B.,
FERNANDES D. N.,
GOULDEN M. L.,
WOFSY S. C.,
SHAVER G. R.,
MELILLO J. M.,
MUNGER J. W.,
FAN S.‐M., NADELHOFFER K. J.
Plant, Cell & Environment. 1996 19(8). p.911
Effects of salinity on temperature-dependent photosynthetic parameters of a native C3 and a non-native C4 marsh grass in the Yangtze Estuary, China
Ge Z. M.,
Zhang L. Q.,
Yuan L., Zhang C.
Photosynthetica. 2014 52(4). p.484
Limitation of net CO2 assimilation rate by internal resistances to CO2 transfer in the leaves of two tree species (Fagus sylvatica L. and Castanea sativa Mill.)
EPRON D.,
GODARD D.,
CORNIC G., GENTY B.
Plant, Cell & Environment. 1995 18(1). p.43
Estimating uncertainty: A Bayesian approach to modelling photosynthesis in C3 leaves
Xiao Yi,
Sloan Jen,
Hepworth Chris,
Osborne Colin P.,
Fleming Andrew J.,
Chen Xingyuan, Zhu Xin‐Guang
Plant, Cell & Environment. 2021 44(5). p.1436
Increasing CO2 accelerates root growth and enhances water acquisition during early stages of development in Larrea tridentata
Obrist D., Arnone III J. A.
New Phytologist. 2003 159(1). p.175
Autumn photosynthetic decline and growth cessation in seedlings of white spruce are decoupled under warming and photoperiod manipulations
Stinziano Joseph R., Way Danielle A.
Plant, Cell & Environment. 2017 40(8). p.1296
A PRI-based water stress index combining structural and chlorophyll effects: Assessment using diurnal narrow-band airborne imagery and the CWSI thermal index
Zarco-Tejada P.J.,
González-Dugo V.,
Williams L.E.,
Suárez L.,
Berni J.A.J.,
Goldhamer D., Fereres E.
Remote Sensing of Environment. 2013 138 p.38
Seasonal Dynamics of Canopy Properties and Ecosystem Fluxes in a Temperate Evergreen Angiosperm Forest
Renchon Alexandre Alexis,
Haverd Vanessa,
Trudinger Cathy M.,
Medlyn Belinda E.,
Griebel Anne,
Metzen Daniel,
Knauer Jürgen,
Boer Matthias, Pendall Elise
SSRN Electronic Journal . 2021
A model of canopy photosynthesis and water use incorporating a mechanistic formulation of leaf CO2 exchange
McMurtrie R.E.,
Leuning R.,
Thompson W.A., Wheeler A.M.
Forest Ecology and Management. 1992 52(1-4). p.261
The poorly‐explored stomatal response to temperature at constant evaporative demand
Mills Colleen,
Bartlett Megan K., Buckley Thomas N.
Plant, Cell & Environment. 2024 47(9). p.3428
PGEN: an integrated model of leaf photosynthesis, transpiration, and conductance
Friend A.D.
Ecological Modelling. 1995 77(2-3). p.233
13C discrimination by fossil leaves during the late-glacial climate oscillation 12-10 ka BP: measurements and physiological controls
Beerling D. J.
Oecologia. 1996 108(1). p.29
Temperature, nutrient availability, and species traits interact to shape elevation responses of Australian tropical trees
Singh Ramesh Arun,
Cheesman Alexander W.,
Flores-Moreno Habacuc,
Preece Noel D.,
Crayn Darren M., Cernusak Lucas A.
Frontiers in Forests and Global Change. 2023 6
Increase in leaf temperature opens stomata and decouples net photosynthesis from stomatal conductance in Pinus taeda and Populus deltoides x nigra
Urban Josef,
Ingwers Miles W.,
McGuire Mary Anne, Teskey Robert O.
Journal of Experimental Botany. 2017 68(7). p.1757
Estimating canopy gross primary production by combining phloem stable isotopes with canopy and mesophyll conductances
Vernay Antoine,
Tian Xianglin,
Chi Jinshu,
Linder Sune,
Mäkelä Annikki,
Oren Ram,
Peichl Matthias,
Stangl Zsofia R.,
Tor‐Ngern Pantana, Marshall John D.
Plant, Cell & Environment. 2020 43(9). p.2124
Calvin cycle and guard cell metabolism impact stomatal function
Lemonnier P., Lawson T.
Seminars in Cell & Developmental Biology. 2024 155 p.59
Wet canopy photosynthesis in a temperate Japanese cypress forest
Jiao Linjie,
Kosugi Yoshiko,
Sakabe Ayaka,
Sempuku Yuichi,
Chang Ting-Wei,
Chen Siyu, Whitehead David
Tree Physiology. 2024 44(5).
A hydromechanical and biochemical model of stomatal conductance
BUCKLEY T. N.,
MOTT K. A., FARQUHAR G. D.
Plant, Cell & Environment. 2003 26(10). p.1767
Most stomatal closure in woody species under moderate drought can be explained by stomatal responses to leaf turgor
Rodriguez‐Dominguez Celia M.,
Buckley Thomas N.,
Egea Gregorio,
de Cires Alfonso,
Hernandez‐Santana Virginia,
Martorell Sebastia, Diaz‐Espejo Antonio
Plant, Cell & Environment. 2016 39(9). p.2014
A leaf‐level biochemical model simulating the introduction of C2 and C4 photosynthesis in C3 rice: gains, losses and metabolite fluxes
Bellasio Chandra, Farquhar Graham D.
New Phytologist. 2019 223(1). p.150
Changes in the chloroplastic CO2 concentration explain much of the observed Kok effect: a model
Farquhar Graham D., Busch Florian A.
New Phytologist. 2017 214(2). p.570
Modeling potential hydrochemical responses to climate change and increasing CO2at the Hubbard Brook Experimental Forest using a dynamic biogeochemical model (PnET‐BGC)
Pourmokhtarian Afshin,
Driscoll Charles T.,
Campbell John L., Hayhoe Katharine
Water Resources Research. 2012 48(7).
A model of photosynthetic CO2 assimilation in C3 leaves accounting for respiration and energy recycling by the plastidial oxidative pentose phosphate pathway
Wieloch Thomas,
Augusti Angela, Schleucher Jürgen
New Phytologist. 2023 239(2). p.518
The response of photosynthetic model parameters to temperature and nitrogen concentration in Pinus radiata D. Don
WALCROFT A. S.,
WHITEHEAD D.,
SILVESTER W. B., KELLIHER F. M.
Plant, Cell & Environment. 1997 20(11). p.1338
What does optimization theory actually predict about crown profiles of photosynthetic capacity when models incorporate greater realism?
BUCKLEY THOMAS N.,
CESCATTI ALESSANDRO, FARQUHAR GRAHAM D.
Plant, Cell & Environment. 2013 36(8). p.1547
The influence of leaf anatomy on the internal light environment and photosynthetic electron transport rate: exploration with a new leaf ray tracing model
Xiao Yi,
Tholen Danny, Zhu Xin-Guang
Journal of Experimental Botany. 2016 67(21). p.6021
C3 and C4 photosynthesis models: An overview from the perspective of crop modelling
Yin X., Struik P.C.
NJAS: Wageningen Journal of Life Sciences. 2009 57(1). p.27
P-model v1.0: an optimality-based light use efficiency model for simulating ecosystem gross primary production
Stocker Benjamin D.,
Wang Han,
Smith Nicholas G.,
Harrison Sandy P.,
Keenan Trevor F.,
Sandoval David,
Davis Tyler, Prentice I. Colin
Geoscientific Model Development. 2020 13(3). p.1545
Stomatal regulation by microclimate and tree water relations: interpreting ecophysiological field data with a hydraulic plant model
Zweifel Roman,
Steppe Kathy, Sterck Frank J.
Journal of Experimental Botany. 2007 58(8). p.2113
Plant Responses to Drought and Salinity Stress - Developments in a Post-Genomic Era (2011)
Transporatation efficiency of field-grown maize
Walker G.K.
Field Crops Research. 1986 14 p.29
Effects of Silicon on Transpiration and Leaf Conductance in Rice Plants (Oryza sativaL.)
Agarie Sakae,
Uchida Hideki,
Agata Waichi,
Kubota Fumitake, Kaufman Peter B.
Plant Production Science. 1998 1(2). p.89
Mathematical review of the energy transduction stoichiometries of C4 leaf photosynthesis under limiting light
YIN XINYOU, STRUIK PAUL C.
Plant, Cell & Environment. 2012 35(7). p.1299
Using combined measurements of gas exchange and chlorophyll fluorescence to estimate parameters of a biochemical C3 photosynthesis model: a critical appraisal and a new integrated approach applied to leaves in a wheat (Triticum aestivum) canopy
YIN XINYOU,
STRUIK PAUL C.,
ROMERO PASCUAL,
HARBINSON JEREMY,
EVERS JOCHEM B.,
VAN DER PUTTEN PETER E. L., VOS JAN
Plant, Cell & Environment. 2009 32(5). p.448
Observation and Measurement (2018)
The δ13C of cellulose from modern plants and its responses to the atmosphere – From the peatland records of Dajiuhu, China
Liu Jinliang,
Chen Ye,
Ma Limeng,
Pu Hongxue,
Liu Chao,
Zhao Zhijun, Shu Qiang
The Holocene. 2018 28(3). p.408
Wood production per evapotranspiration was increased by irrigation in plantations of Eucalyptus globulus and E. nitens
White Don A.,
Beadle Christopher L.,
Worledge Dale, Honeysett John L.
New Forests. 2016 47(2). p.303
The Evolution of Plant Physiology (2004)
Plant Osmoregulation as an Emergent Water‐Saving Adaptation
Perri Saverio,
Entekhabi Dara, Molini Annalisa
Water Resources Research. 2018 54(4). p.2781
CO2, Temperature, and Trees (2016)
Comparative sensitivity of ‘Prior Lisbon’ lemon and ‘Valencia’ orange trees to foliar sodium and chloride concentrations
LLOYD J.,
KRIEDEMANN P.E., ASPINALL D.
Plant, Cell & Environment. 1989 12(5). p.529
Parameterization of the Farquhar-von Caemmerer-Berry C3 photosynthesis model for oil palm
CHEAH S.S., TEH C.B.S.
Photosynthetica. 2020 58(3). p.769
Springer Handbook of Wood Science and Technology (2023)
The Leaf: A Platform for Performing Photosynthesis (2018)
Impact of leaf physiology on gas exchange in a Japanese evergreen broad-leaved forest
Kosugi Yoshiko,
Takanashi Satoru,
Matsuo Naoko,
Tanaka Katsunori, Tanaka Hiroki
Agricultural and Forest Meteorology. 2006 139(3-4). p.182
Spatial distributions of foliar nitrogen and phosphorus in crowns of Eucalyptus grandis
Leuning R.,
Cromer R. N., Rance S.
Oecologia. 1991 88(4). p.504
Modelling the dynamics of the forest ecosystem for climate change studies in the boreal conditions
Kellomäki Seppo, Väisänen Hannu
Ecological Modelling. 1997 97(1-2). p.121
An empirical model for stomatal resistance of field-grown wheat
Choudhury Bhaskar J., Idso Sherwood B.
Agricultural and Forest Meteorology. 1985 36(1). p.65
The circadian night depression of photosynthesis analyzed in a herb, Pulmonaria vallarsae. Day/night quantitative relationships
Pupillo Paolo,
Sparla Francesca,
Melandri Bruno A., Trost Paolo
Photosynthesis Research. 2022 154(2). p.143
A whole canopy gas exchange system for the targeted manipulation of grapevine source-sink relations using sub-ambient CO2
Smith Jason P.,
Edwards Everard J.,
Walker Amanda R.,
Gouot Julia C.,
Barril Celia, Holzapfel Bruno P.
BMC Plant Biology. 2019 19(1).
Carbon isotope discrimination by plants follows latitudinal and altitudinal trends
Körner Ch.,
Farquhar G. D., Wong S. C.
Oecologia. 1991 88(1). p.30
Impact of climate-driven changes in temperature on stomatal anatomy and physiology
Hofmann Tanja A.,
Atkinson William,
Fan Mengjie,
Simkin Andrew J.,
Jindal Pratham, Lawson Tracy
Philosophical Transactions of the Royal Society B: Biological Sciences. 2025 380(1927).
Physiological responses of Spartina alterniflora to varying environmental conditions in Virginia marshes
Kathilankal James C.,
Mozdzer Thomas J.,
Fuentes José D.,
McGlathery Karen J.,
D’Odorico Paolo, Zieman Jay C.
Hydrobiologia. 2011 669(1). p.167
Ozone effects on wheat in relation to CO2: modelling short‐term and long‐term responses of leaf photosynthesis and leaf duration
Ewert Frank, Porter John R.
Global Change Biology. 2000 6(7). p.735
Study of the Photosynthesis Response during the Gradual Lack of Water for 14 Olea europaea L. subsp europaea Cultivars and Their Adaptation to Climate Change
Martos de la Fuente Genoveva Carmen,
Viñegla Benjamín,
Illana Rico Elena, Fernández Ocaña Ana Maria
Plants. 2023 12(24). p.4136
Terrestrial biosphere models may overestimate Arctic CO2 assimilation if they do not account for decreased quantum yield and convexity at low temperature
Rogers Alistair,
Serbin Shawn P.,
Ely Kim S., Wullschleger Stan D.
New Phytologist. 2019 223(1). p.167
Coupling biochemical and biophysical processes at the leaf level: an equilibrium photosynthesis model for leaves of C3 plants
Nikolov Nedialko T.,
Massman William J., Schoettle Anna W.
Ecological Modelling. 1995 80(2-3). p.205
Photosynthesis by mature needles of field-grown Pinus radiata
Thompson W.A., Wheeler A.M.
Forest Ecology and Management. 1992 52(1-4). p.225
Improved photosynthesis by leaf nutrient content enhances water use efficiency in Juniperus tibetica along elevation gradients above 4000 m a.s.l.
Tao Wenjing,
Ju Tsam,
Milne Richard,
Miehe Georg,
Wang Wentao,
Li Jialiang,
Chen Lei, Mao Kangshan
Plant Ecology & Diversity. 2021 14(1-2). p.81
Complementary resource use by tree species in a rain forest tree plantation
Richards Anna E., Schmidt Susanne
Ecological Applications. 2010 20(5). p.1237
Photosynthetic characteristics of dwarf and fringe Rhizophora mangle L. in a Belizean mangrove
CHEESEMAN J. M., LOVELOCK C. E.
Plant, Cell & Environment. 2004 27(6). p.769
Modelling Wheat Stomatal Resistance in Hourly Time Steps from Micrometeorological Variables and Soil Water Status
Neukam D.,
Böttcher U., Kage H.
Journal of Agronomy and Crop Science. 2016 202(3). p.174
Deriving C4 photosynthetic parameters from combined gas exchange and chlorophyll fluorescence using an Excel tool: theory and practice
Bellasio Chandra,
Beerling David J, Griffiths Howard
Plant, Cell & Environment. 2016 39(6). p.1164
Effects of the mesophyll on stomatal responses in amphistomatous leaves
Mott Keith A., Peak David
Plant, Cell & Environment. 2018 41(12). p.2835
Physiological adjustments of an invasive tree species to extreme hydrological events in a tropical seasonal wetland
Dalmolin Ândrea Carla,
de Almeida Lobo Francisco,
Vourlitis George Louis,
Dalmagro Higo José,
Antunes Junior Mario Zortéa, Rodriguez Ortiz Carmen Eugenia
Trees. 2018 32(5). p.1365
Scaling CO2-photosynthesis relationships from the leaf to the canopy
Amthor Jeffrey S.
Photosynthesis Research. 1994 39(3). p.321
The Contribution of Photosynthesis to the Red Light Response of Stomatal Conductance
Baroli Irene,
Price G. Dean,
Badger Murray R., von Caemmerer Susanne
Plant Physiology. 2008 146(2). p.323
Photosynthetic parameters of two invasive tree species of the Brazilian Pantanal in response to seasonal flooding
Dalmagro H. J.,
de Lobo F. A.,
Vourlitis G. L.,
Dalmolin Â. C.,
Antunes M. Z.,
Ortíz C. E. R., de Nogueira J. S.
Photosynthetica. 2013 51(2). p.281
Guard cell photosynthesis and stomatal function
Lawson Tracy
New Phytologist. 2009 181(1). p.13
Crop Photosynthesis (1992)
Annual Plant Reviews online (2019)
A model for the irradiance responses of photosynthesis
Harbinson Jeremy, Yin Xinyou
Physiologia Plantarum. 2017 161(1). p.109
Effects of photoinhibition on whole‐plant carbon gain assessed with a photosynthesis model
Werner C.,
Ryel R. J.,
Correia O., Beyschlag W.
Plant, Cell & Environment. 2001 24(1). p.27
Modelling a spring wheat crop under elevated CO2 and drought
Grossman‐Clarke S.,
Pinter P. J.,
Kartschall T.,
Kimball B. A.,
Hunsaker D. J.,
Wall G. W.,
Garcia R. L., LaMorte R. L.
New Phytologist. 2001 150(2). p.315
A coupled model of stomatal conductance, photosynthesis and transpiration
TUZET A.,
PERRIER A., LEUNING R.
Plant, Cell & Environment. 2003 26(7). p.1097
Genotypic variation of the interactive effects of elevated temperature and CO2 on leaf gas exchange and early growth of sugarcane
De Silva A. L. Chandrajith,
Senarathna H. A. K. N. Nishadi, De Costa W. A. Janendra M.
Physiologia Plantarum. 2021 173(4). p.2276
The control of stomata by water balance
Buckley Thomas N.
New Phytologist. 2005 168(2). p.275
Towards an improved and more flexible representation of water stress in coupled photosynthesis–stomatal conductance models
Egea Gregorio,
Verhoef Anne, Vidale Pier Luigi
Agricultural and Forest Meteorology. 2011 151(10). p.1370