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Climate change

Genotypic differences in the response to elevated CO2 concentration of one-year-old olive cuttings (Olea europaea L. cv. Frantoio and Moraiolo)

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Pages 199-207 | Published online: 05 Aug 2006

REFERENCES

  • Bazzaz , F.A. and Miao , S.L. 1993 . Successional status, seed size, and responses of tree seedlings to CO2, light, and nutrients . Ecology , 74 : 104 – 112 .
  • Bettarini , I. , Vaccari , F.P. and Miglietta , F. 1998 . Elevated CO2 concentrations and stomatal density: observations from 17 plant species growing in a CO2 spring in central Italy . Global Change Biol. , 4 : 17 – 22 .
  • Centritto , M. , Lee , H.S.J. and Jarvis , P.G. 1999a . Long-term effects of elevated carbon dioxide concentration and provenance on four clones of Sitka spruce (Picea sitchensis). I. Plant growth, allocation, and ontogeny . Tree Physiol. , 19 : 799 – 806 .
  • Centritto , M. , Lee , H.S.J. and Jarvis , P.G. 1999b . Increased growth in elevated [CO2]: an early, short-term response? . Global Change Biol. , 5 : 623 – 633 .
  • Centritto , M. , Magnani , F. , Lee , H.S.J. and Jarvis , P.G. 1999c . Interactive effects of elevated [CO2] and drought on cherry (Prunus avium) seedlings. II. Photosynthetic capacity and water relations . New Phytol. , 141 : 141 – 153 .
  • Ceulemans , R. and Mousseau , M. 1994 . Tansley Review No. 71. Effects of elevated atmospheric CO2 on woody plants . New Phytol. , 127 : 425 – 446 .
  • Curtis , P.S. and Wang , X. 1998 . A meta-analysis of elevated CO2 effects on woody plant mass, form, and physiology . Oecologia , 113 : 299 – 313 .
  • Drake , B.G. , Gonzàlez-Meler , M.A. and Long , S.P. 1997 . More efficient plants: a consequence of rising atmospheric CO2? . Annu. Rev. Plant. Physiol. Plant. Mol. Biol. , 48 : 607 – 637 .
  • Eamus , D. and Jarvis , P.G. 1989 . The direct effects of increase in the global atmospheric CO2 concentration on natural and commercial temperate trees and forests . Adv. Ecol. Res. , 19 : 1 – 55 .
  • Houghton , J.T. , Meiro-Filho , L.G. , Callander , B.A. , Harris , N. , Kattenburg , A. and Maskell , K. , eds. 1995 . “ Climate Change 1995. The Science of Climate Change ” . In Second Assessment Report of the Intergovernmental Panel on Global Change , Cambridge, , UK : Cambridge University Press .
  • 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. For Meteorol. , 69 : 153 – 203 .
  • Kattenburg , A. , Giorgi , F. , Grassil , H. , Meehl , G.A. , Mitchell , J.F.B. , Stouffer , R.J. , Tokioka , T. , Weaver , A.J. and Wigley , T.M.L. 1996 . “ Climate-models-projections of future climate ” . In Climate Change 1995 — The Science of Climate Change , Contribution of Working Group I to the Second Assessment Report of the Intergovernmental Panel on Climate Change Edited by: Houghton , J.T. , Meira Filho , L.G. , Callander , B.A. , Harris , N. , Kattenburg , A. and Maskell , K. 285 – 357 . Cambridge, , UK : Cambridge University Press . In
  • Liu , S. and Teskey , R.O. 1995 . Responses of foliar gas exchange to long-term elevated CO2 concentrations in mature loblolly pine trees . Tree Physiol. , 15 : 351 – 359 .
  • Miglietta , F. , Magliulo , V. , Bindi , M. , Cerio , L. , Vaccari , F.P. , Loduca , V. and Peressotti , A. 1998 . Free air CO2 enrichment of potato (Solanum tuberosum L.): development, growth and yield . Global Change Biol. , 4 : 163 – 172 .
  • Mills , H.A. and Jones , B.J. Jr. 1997 . Plant Analysis Handbook II: A Practical Sampling, Preparation, Analysis, and Interpretation Guide , Micro MacRo Intl .
  • Minnocci , A. , Panicucci , A. , Sebastiani , L. , Lorenzini , G. and Vitagliano , C. 1999 . Physiological and morphological responses of olive plants to ozone exposure during a growing season . Tree Physiol. , 19 : 391 – 397 .
  • Moran , R. 1982 . Formulae for determination of chlorophyllous pigments extracted with N,N-dimethylformamide . Plant Physiol. , 69 : 1376 – 1381 .
  • Morison , J.I.L. 1998 . Stomatal response to increased CO2 concentration . J. Exp. Bot. , 49 : 443 – 452 .
  • Radoglou , K.M. and Jarvis , P.G. 1990 . Effects of elevated CO2 enrichment on four poplar clones. I. Growth and leaf anatomy . Ann. Bot. , 65 : 617 – 626 .
  • Rey , A. and Jarvis , P.G. 1998 . Long-term photosynthetic acclimation to increased atmospheric CO2 concentration in young birch (Betula pendula) trees . Tree Physiol. , 18 : 441 – 450 .
  • Saxe , H. , Ellsworth , D.S. and Heath , J. 1998 . Tansley Review No. 98. Tree and forest functioning in an enriched CO2 atmosphere . New Phytol. , 139 : 395 – 436 .
  • Schaffer , B. , Searle , C. , Whiley , A.W. and Nissen , R.J. 1996 . Effects of atmospheric CO2 enrichment and root restriction on leaf gas exchange and growth of banana (Musa) . Physiol. Plant. , 97 : 685 – 693 .
  • Thomas , R.B. , Lewis , J.D. and Strain , B.R. 1994 . Effects of leaf nutrient status on photosynthetic capacity in loblolly pine (Pinus taeda L.) seedlings grown in elevated atmospheric CO2 . Tree Physiol. , 14 : 947 – 960 .
  • Tognetti , R. and Johnson , J.D. 1999 . Responses to elevated atmospheric CO2 concentration and nitrogen supply of Quercus ilex L. seedlings from a coppice stand growing at a natural CO2 spring . Ann. For. Sci. , 56 : 549 – 561 .
  • Tognetti , R. , Johnson , J.D. , Michelozzi , M. and Raschi , A. 1998 . Foliage metabolism in Quercus pubescens and Quercus ilex mature trees with lifetime exposure to local greenhouse effect . Environ. Exp. Bot. , 39 : 233 – 245 .
  • Tognetti , R. , Sebastiani , L. , Vitagliano , C. , Raschi , A. and Minnocci , A. 2001 . Responses of two olive tree (Olea europea L.) cultivars to elevated CO2 concentration in the field . Photosynthetica , 39 : 403 – 410 .
  • Vivin , P. , Martin , F. and Guehl , J.M. 1996 . Acquisition and withinplant allocation of 13C and 15N in CO2-enriched Quercus robur plants . Physiol. Plant. , 98 : 89 – 96 .
  • Wayne , P.M. and Bazzaz , F.A. 1995 . Yellow birch growth responses to elevated CO2 atmospheres: density-dependent differences among maternal families . Global Change Biol. , 1 : 315 – 324 .
  • Woodward , F.I. 1987 . Stomatal numbers are sensitive to increasing in CO2 from preindustrial levels . Nature , 327 : 617 – 618 .
  • Wullschleger , S.D. , Norby , R.J. and Hendrix , D.L. 1992 . Carbon exchange rates, chlorophyll content, and carbohydrate status of two forest tree species exposed to carbon dioxide enrichment . Tree Physiol. , 10 : 21 – 31 .

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