249
Views
14
CrossRef citations to date
0
Altmetric
Original Articles

Irrigation and elevated carbon dioxide effects on whole canopy photosynthesis and water use efficiency in cotton (Gossypium hirsutum L.)

, , &
Pages 202-215 | Published online: 03 Mar 2011

References

  • Acock , B and Acock , M C . 1989 . Calculating air leakage rates in controlled-environment chambers containing plants . Agron J , 81 : 619 – 623 .
  • Allen , L H Jr , Pan , D , Boote , K J , Pickering , N B and Jones , J W . 2003 . Carbon dioxide and temperature effects on evapotranspiration and water use efficiency of soybean . Agron J , 95 : 1071 – 1081 .
  • Allen , L H Jr , Valle , R R , Mishoe , J W and Jones , J W . 1994 . Soybean leaf gas-exchange responses to carbon dioxide and water stress . Agron J , 86 : 625 – 636 .
  • Baker , J T . 2004 . Yield responses of southern US rice cultivars to CO2 and temperature . Agricult Forest Meteorol , 122 : 129 – 137 .
  • Baker , J T , Allen , L H Jr , Boote , K J and Pickering , N B . 1997 . Rice responses to drought under carbon dioxide enrichment. 2. Photosynthesis and evapotranspiration . Global Change Bio , 3 : 129 – 138 .
  • Baker , J T , Kim , S H , Gitz , D C , Timlin , D and Reddy , V R . 2004 . A method for estimating carbon dioxide leakage rates in controlled-environment chambers using nitrous oxide . Env Exp Bot , 51 : 103 – 110 .
  • Ball , R A , Oosterhuis , D M and Mauromoustakos , A . 1994 . Growth dynamics of the cotton plant during water-deficit stress . Agron J , 86 : 788 – 795 .
  • Bhattacharya , N C , Radin , J W , Kimball , B A , Mauney , J R , Hendrey , G R Nagy , J . 1994 . Leaf water relations of cotton in a free-air CO2-enriched environment . Agric Forest Meteor , 70 : 171 – 182 .
  • Bowes , G . 1991 . Growth at elevated CO2: Photosynthetic responses mediated through Rubisco . Plant Cell Environ , 14 : 795 – 806 .
  • Brakke , M P , Allen , L H and Jones , J W . 2003 . Modeling effects of partial root zone irrigation on stomatal conductance and transpiration of young citrus trees . Trans Asae , 46 : 345 – 357 .
  • Bunce , J A . 2000 . Response of stomatal conductance to light, humidity, and temperature in winter wheat and barley grown at three concentrations of carbon dioxide in the field . Global Change Biol , 6 : 371 – 382 .
  • Clifford , S C , Black , C R , Roberts , J A , Stronach , I M , Singleton-Jones , P R Mohamad , A D . 1995 . Effect of elevated atmospheric CO2 and drought on stomatal frequency in groundnut (Arachis hypogaea (L.) . J Exp Botany , 46 : 847 – 852 .
  • Clifford , S C , Stronach , I M , Mohamad , A D , Azam-Ali , S N and Crout , N J . 1993 . The effects of elevated atmospheric carbon dioxide and water stress on light interception, dry matter production and yield in stands of groundnut (Arachis hypogaea (L.) . J Exp Bot , 44 : 1763 – 1770 .
  • Conley , M M , Kimball , B A , Brooks , T J , Pinter , P J Jr , Hunsaker , D J Wall , G W . 2001 . CO2 enrichment increases water-use efficiency in sorghum . New Phytologist , 151 : 407 – 412 .
  • Constable , G A and Rawson , H M . 1980 . Effect of leaf position, expansion and age on photosynthesis, transpiration, and water use efficiency of cotton . Aust J Plant Physiol , 7 : 89 – 100 .
  • Cox , P M , Betts , R A , Jones , C D , Spall , S A and Totterdell , I J . 2000 . Acceleration of global warming due to carbon-cycle feedbacks in a coupled climate model . Nature , 408 : 184 – 187 .
  • Drake , B J and Leadley , P W . 1991 . Canopy photosynthesis of crops and native plant communities . Plant Cell Environ , 14 : 853 – 860 .
  • Ephrath , J E and Marani , A . 1993 . Simulation of the effect of drought stress on the rate of photosynthesis in cotton . Agricult Syst , 42 : 327 – 341 .
  • Ephrath , J E , Marani , A and Bravdo , B . 1993 . Photosynthetic rate, stomatal resistance and leaf water potential in cotton (Gossypium hirsutum L.) as affected by soil moisture and irradiance . Photosynthetica , 29 : 63 – 71 .
  • Evett , S R . The TACQ computer program for automatic measurement of water content and bulk electrical conductivity using time domain reflectometry . Bushland, TX : ASAE meeting presentation . Paper No. 983182. USDA-ARS
  • Evett , S R . 2000 . The TACQ program for automatic time domain reflectometry measurements: II. Waveform interpretation methods . Trans ASAE , 43 : 1947 – 1956 .
  • Finnan , J M , Donnelly , A , Jones , M B and Burke , J I . 2005 . The effect of elevated levels of carbon dioxide on potato crops: A review . J Crop Improve , 13 : 91
  • Fleisher , D H , Timlin , D J , Yang , Y , Reddy , V R and Reddy , G K . 2009 . Uniformity of soil-plant-atmosphere-research chambers . Trans ASAEB , 52 : 1 – 11 .
  • Flènet , F , Bouniols , A and Saraiva , C . 1996 . Sunflower response to a range of soil water contents . Eur J Agron , 5 : 161 – 167 .
  • Gan , Y T , Miller , P R , McConkey , B G , Zentner , R P , Stevenson , F C and McDonald , C L . 2003 . Influence of diverse cropping sequences on durum wheat yield and protein in the semiarid Northern Great Plains . Agronomy J , 95 : 245 – 252 .
  • Hunsaker , D J , Kimball , B A , Pinter , P J Jr , Wall , G W , LaMorte , R L Adamsen , F J . 2002 . CO2 enrichment and soil nitrogen effects on wheat evapotranspiration and water use efficiency . Agric Forest Meteor , 104 : 85 – 105 .
  • Idso , K E and Idso , S B . 1994 . Plant responses to atmospheric CO2 enrichment in the face of environmental constraints: A review of the past 10 years' research . Agric Forest Meteor , 69 : 153 – 203 .
  • Intergovernmental Panel on Climate Change (IPCC) . 2001 . “ Climate change 2001: The scientific basis ” . Edited by: Houghton , J T , Ding , Y , Griggs , D J , Noguer , M , van der Linden , P J , Dai , X , Maskell , K and Johnson , C A . Cambridge, MA : Cambridge University Press .
  • Jackson , R B , Sala , O E , Field , C B and Mooney , H A . 1994 . CO2 alters water use, carbon gain, and yield for the dominant species in a natural grassland . Oecologia , 98 : 257 – 262 .
  • Jones , P , Jones , J W and Allen , L H Jr . 1985 . Seasonal carbon and water balance of soybeans grown under stress treatment in sunlit chambers . Trans ASAE , 28 : 2021 – 2028 .
  • Kang , S , Zhang , F , Hu , X and Zhang , J . 2002 . Benefits of CO2 enrichment on crop plants are modified by soil water status . Plant Soil , 238 : 69 – 77 .
  • Kim , S H , Reddy , V R , Baker , J T , Gitz , D C and Timlin , D J . 2004 . Quantification of photosynthetically active radiation inside sunlit growth chambers . Agric Forest Meteorol , 126 : 117 – 119 .
  • Kimball , B A , Kobayashi , K and Bindi , M . 2002 . Responses of agricultural crops to free-air CO2 enrichment . Adv Agron , 77 : 293 – 368 .
  • Kimball , B A and Mauney , J R . 1993 . Response of cotton to varying CO2, irrigation, and nitrogen: Yield and growth . Agronomy J , 85 : 706 – 712 .
  • Lawlor David , W . 2002 . Limitation to photosynthesis in water-stressed leaves: Stomata vs. metabolism and the role of ATP . Ann Bot , 89 : 871 – 885 .
  • Littell Ramon , C , Milliken George , A , Stroup Walter , W and Wolfinger Russell , D . 1996 . “ SAS system for mixed models ” . Carey, NC : SAS Institute Inc .
  • Milroy , S P and Bange , M P . 2003 . Nitrogen and light responses of cotton photosynthesis and implications for crop growth . Crop Sci , 43 : 904 – 913 .
  • Morison , J IL . 1998 . Stomatal response to increased CO2 concentration . J Exp Bot , 49 : 443 – 452 .
  • Owensby , C E , Coyne , P I , Ham , L A , Auen , L A and Knapp , A K . 1993 . Biomass production in a tallgrass prairie ecosystem exposed to ambient and elevated CO2 . Ecol App , 3 : 644 – 653 .
  • Pickering , N B , Allen , L H Jr , Albrecht , S L , Jones , P , Jones , J W and Baker , J T . Environmental plant chambers: Control and measurement using CR-10 data loggers . Computers in agriculture. A paper presented at the proceedings of the 5th international conference . February 5–9 , Orlando, Florida. Edited by: Watson , D G , Zazueta , F S and Harrison , T V . pp. 29 – 35 . Michigan : American Society of Agricultural Engineers, St. Joseph .
  • Reddy , K R , Baker , J T , Reddy , V R , McKinion , J , Tarpley , L and Read , J J . 2001 . Soil-plant-atmosphere-research (SPAR) facility: a tool for plant research and modeling . Biotronics , 30 : 27 – 50 .
  • Reddy , K R , Hodges , H F and Kimball , B A . 2000 . “ Crop ecosystem responses to global climate change: Cotton ” . In Climate change and global crop productivity , Edited by: Reddy , K R and Hodges , H F . 162 – 187 . Wallingford, , UK : CAB International .
  • Reddy , V R , Acock , B and Acock , M C . 1989 . Seasonal carbon and nitrogen accumulation in relation to net carbon dioxide exchange in a carbon dioxide-enriched soybean canopy . Agron J , 81 : 78 – 83 .
  • Reddy , V R , Baker , D N and Hodges , H F . 1991 . Temperature effects on cotton canopy growth, photosynthesis and respiration . Agron J , 83 : 699 – 704 .
  • Reicosky , D C and Ritchie , J T . 1976 . Relative importance of soil resistance and plant resistance in root water absorption . Soil Sci Soc Am J , 40 : 293 – 297 .
  • Remy , M . 2007 . Drought stress effects on wheat are mitigated by atmospheric CO2 enrichment . Agron Sustain Dev , 27 : 79 – 97 .
  • Robredo , A , Perez-Lopez , U , de la Maza , H S , Gonzalez-Moro , B , Lacuesta , M Mena-Petite , A . 2007 . Elevated CO2 alleviates the impact of drought on barley improving water status by lowering stomatal conductance and delaying its effects on photosynthesis . Environ Exp Botany , 59 : 252 – 263 .
  • Rogers , H H , Prior , S A and O'Neill , E G . 1992 . Cotton root and rhizosphere responses to free-air CO2 enrichment . Crit Rev Plant Sci , 11 : 251 – 263 .
  • SAS Institute Inc. 1999 . “ SAS onlineDoc 7, Version 8 ” . Cary, NC : SAS Institute Inc .
  • Scholander , P F , Hammel , H T , Bradstreet , E A and Hemmingsen , E A . 1965 . Sap pressure in vascular plants . Science , 148 : 339 – 346 .
  • Soinit , N , Hellmers , H and Strain , B R . 1980 . Growth and yield of wheat under CO2 enrichment and water stress . Crop Sci , 20 : 687 – 690 .
  • Timlin , D , Fleisher , D , Kim , S-H , Reddy , V R and Baker , J . 2007 . Evapotranspiration measurement in controlled environment chambers: A comparison between time domain reflectometry and accumulation of condensate from cooling coils . Agron J , 99 : 166 – 173 .
  • Tingey , D T , McVeety , B D , Waschmann , R S , Johnson , R M , Phillips , D L Rygiewicz , R T . 1996 . A versatile sun-lit controlled-environment facility for studying plant and soil processes . J Environ Qual , 25 : 614 – 625 .
  • Topp , G C , Davis , J L and Annan , A P . 1980 . Electromagnetic determination of soil water content: Measurements in coaxial transmission lines . Water Resour Res , 16 : 574 – 582 .
  • Van Iersel , M W and Kang , J G . 2002 . Nutrient solution concentration affects whole-plant CO2 exchange and growth of sub-irrigated Pansy . J Am Soc Hort Sci , 127 : 423 – 429 .
  • van Vuuren , M MI , Robinson , D , Fitter , A H , Chasalow , S D , Williamson , L and Raven , J A . 1997 . Effects of elevated atmospheric CO2 and soil water availability on root biomass, root length, and N, P and K uptake by wheat . New Phytol , 135 : 455 – 465 .
  • Wall Gerard , W . 2001 . Elevated atmospheric CO2 alleviates drought stress in wheat . Agricult Ecosyst Environ , 87 : 261 – 271 .
  • Wall , G W , Brooks , T J , Adam , N R , Cousins , A B , Kimball , B A Pinter , P J Jr . 2001 . Elevated atmospheric CO2 improved sorghum plant water status by ameliorating the adverse effects of drought . New Phytologist , 152 : 231 – 248 .
  • Wechsung , G , Wechsung , F , Wall , G W , Adamsen , F J , Kimball , B A Pinter , PJ Jr . 1999 . The effects of free-air CO2 enrichment and soil water availability on spatial and seasonal patterns of wheat root growth . Global Change Biol , 5 : 519 – 529 .
  • Woodward , F I , Thompson , G B and McKee , I F . 1991 . The effects of elevated concentrations of carbon dioxide on individual plants, populations, communities and ecosystems . Ann Bot. , 67 ( Suppl. 1 ) : 23 – 38 .
  • Wu , D X , Wang , G X , Bai , Y F and Liao , J X . 2004 . Effects of elevated CO2 concentration on growth, water use, yield and grain quality of wheat under two soil water levels . Agric Ecosys Environ , 104 : 493 – 507 .
  • Yoon , S T , Hoogenboom , G , Flitcroft , I and Bannayan , M . 2009 . Growth and development of cotton (Gossypium hirsutum L.) in response to CO2 enrichment under two different temperature regimes . Env Exp Bot , 67 : 178 – 187 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.