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S. Dulai Eszterházy College Department of Plant Physiology Eger Hungary

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I. Molnár AGricultural Research Institute of the Hungarian Academy of Sciences Martonvásár Hungary

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B. Haló Eszterházy College Department of Plant Physiology Eger Hungary

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M. Molnár-Láng AGricultural Research Institute of the Hungarian Academy of Sciences Martonvásár Hungary

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The photosynthetic responses induced by NaCl were investigated in the 7H Asakaze komugi/Manas wheat/barley addition line developed in the Agricultural Research Institute, Martonvásár, Hungary, in the wheat (Triticum aestivum L.) cv. Asakaze komugi (Akom) and wheat line Martonvásári 9 kr1 (Mv9kr1) and in the barley (Hordeum vulgare L.) cv. Manas. An increase in the NaCl concentration of the nutrient solution to 200 mmol L−1 resulted in considerable stomatal closure and a decreased net CO2 assimilation rate (A) in the wheat genotypes, while the changes in these parameters were less significant for barley and the 7H addition line. Parallel with this, a relatively high non-stomatal limitation (Lm) of A was observed in wheat genotypes, which was not significant in Manas or the wheat-barley addition line at this level of salt stress. At severe stress (300 mM L−1 NaCl concentration) A and stomatal conductance were strongly inhibited in all the genotypes examined; however, Lm was less significant in the addition line and its parental wheat genotype. These preliminary results suggest that the 7H Akom/Manas addition line might be a good candidate for improving the salt tolerance of wheat in the future, and encourage further detailed physiological analysis of this addition line.

  • Allakhverdiev, S. I., Sakamoto, A., Nishiyama, Y., Inaba, M., Murata, N. (2000): Ionic and osmotic effects of NaCl induced inactivation of photosystems I and II in Synechococcus sp. Plant Physiol., 123, 1047–1056.

    Murata N. , 'Ionic and osmotic effects of NaCl induced inactivation of photosystems I and II in Synechococcus sp ' (2000 ) 123 Plant Physiol. : 1047 -1056 .

    • Search Google Scholar
  • Bagci, S. A. (2003): Determination of the salt tolerance of some barley genotypes and the characteristics affecting tolerance. Turk. J. Agric. For., 27, 253–260.

    Bagci S. A. , 'Determination of the salt tolerance of some barley genotypes and the characteristics affecting tolerance ' (2003 ) 27 Turk. J. Agric. For. : 253 -260 .

    • Search Google Scholar
  • Belkhodja, R., Morales, F., Abadía, A., Medrano, H., Abadía, J. (1999): Effects of salinity on chlorophyll fluorescence and photosynthesis of barley (Hordeum vulgare L.) grown under a triple-line-source sprinkler system in the field. Photosynthetica, 36, 375–387.

    Abadía J. , 'Effects of salinity on chlorophyll fluorescence and photosynthesis of barley (Hordeum vulgare L.) grown under a triple-line-source sprinkler system in the field ' (1999 ) 36 Photosynthetica : 375 -387 .

    • Search Google Scholar
  • Bongi, G., Loreto, F. (1989): Gas-exchange properties of salt stressed olive (Olea europea L.) leaves. Plant Physiol., 90, 1408–1416.

    Loreto F. , 'Gas-exchange properties of salt stressed olive (Olea europea L.) leaves ' (1989 ) 90 Plant Physiol. : 1408 -1416 .

    • Search Google Scholar
  • Boyer, J. S. (1982): Plant productivity and environment. Science, 218, 443–448.

    Boyer J. S. , 'Plant productivity and environment ' (1982 ) 218 Science : 443 -448 .

  • Brugnoli, E., Björkman, O. (1992): Growth of cotton under continuous salinity stress: Influence on allocation pattern, stomatal and non-stomatal components of photosynthesis and dissipation of excess light energy. Planta, 187, 335–347.

    Björkman O. , 'Growth of cotton under continuous salinity stress: Influence on allocation pattern, stomatal and non-stomatal components of photosynthesis and dissipation of excess light energy ' (1992 ) 187 Planta : 335 -347 .

    • Search Google Scholar
  • Cattivelli, L., Baldi, P., Crosatti, C., Di Fonzo, N., Faccioli, P., Grossi, M., Mastrangelo, A. M., Pecchioni, N., Stanca, A. M. (2002): Chromosome regions and stress-related sequences involved in resistance to abiotic stress in Triticeae. Plant Mol. Biol., 48, 649–665.

    Stanca A. M. , 'Chromosome regions and stress-related sequences involved in resistance to abiotic stress in Triticeae ' (2002 ) 48 Plant Mol. Biol. : 649 -665 .

    • Search Google Scholar
  • Centritto, M., Loreto, F., Chartzoulakis, K. (2003): The use of low [CO2] to estimate diffusional and non-diffusional limitations of photosynthetic capacity of salt stressed olive saplings. Plant Cell Environ., 26, 585–594.

    Chartzoulakis K. , 'The use of low [CO2] to estimate diffusional and non-diffusional limitations of photosynthetic capacity of salt stressed olive saplings ' (2003 ) 26 Plant Cell Environ. : 585 -594 .

    • Search Google Scholar
  • Chaves, M. M., Maroco, J. P., Pereira, J. S. (2003): Understanding plant responses to drought — from genes to whole plant. Funct. Plant Biol., 30, 239–264.

    Pereira J. S. , 'Understanding plant responses to drought — from genes to whole plant ' (2003 ) 30 Funct. Plant Biol. : 239 -264 .

    • Search Google Scholar
  • Colmer, T. D., Flowers, T. J., Munns, R. (2006): Use of wild relatives to improve salt tolerance in wheat. J. Exp. Bot., Salinity Special Issue, 1–20.

  • Colmer, T. D., Munns, R., Flowers, T. J. (2005): Improving salt tolerance of wheat and barley: future prospects. Aust. J. Exp. Agr., 45, 1425–1443.

    Flowers T. J. , 'Improving salt tolerance of wheat and barley: future prospects ' (2005 ) 45 Aust. J. Exp. Agr. : 1425 -1443 .

    • Search Google Scholar
  • Cornic, G. (2000): Drought stress inhibits photosynthesis by decreased stomatal aperture — not by affecting ATP synthesis. TIBS, 5, 187–188.

    Cornic G. , 'Drought stress inhibits photosynthesis by decreased stomatal aperture — not by affecting ATP synthesis ' (2000 ) 5 TIBS : 187 -188 .

    • Search Google Scholar
  • Cornic, G., Fresneau, C. (2002): Photosynthetic carbon reduction and carbon oxidation cycles are the main electron sinks for Photosystem II activity during a mild drought. Ann. Bot., 89, 887–894.

    Fresneau C. , 'Photosynthetic carbon reduction and carbon oxidation cycles are the main electron sinks for Photosystem II activity during a mild drought ' (2002 ) 89 Ann. Bot. : 887 -894 .

    • Search Google Scholar
  • Delfine, S., Alvino, A., Zacchini, M., Villani, M. C., Loreto, F. (1999): Consequences of salt stress on conductance to CO2 diffusion, Rubisco characteristics and anatomy of spinach leaves. Aust. J. Plant Physiol., 26, 585–594.

    Loreto F. , 'Consequences of salt stress on conductance to CO2 diffusion, Rubisco characteristics and anatomy of spinach leaves ' (1999 ) 26 Aust. J. Plant Physiol. : 585 -594 .

    • Search Google Scholar
  • Delfine, S., Loreto, F., Alvino, A. (2001): Drought-stress effects on physiology, growth and biomass production of rainfed and irrigated Bell Pepper plants in the Mediterranean region. J. Am. Soc. of Hort. Sci., 126, 297–304.

    Alvino A. , 'Drought-stress effects on physiology, growth and biomass production of rainfed and irrigated Bell Pepper plants in the Mediterranean region ' (2001 ) 126 J. Am. Soc. of Hort. Sci. : 297 -304 .

    • Search Google Scholar
  • Dulai, S., Molnár, I., Prónay, J., Csernák, Á., Tarnai, R., Molnár-Láng, M. (2006): Effects of drought on photosynthetic parameters and heat stability of PS II in wheat and in Aegilops species originating from dry habitats. Acta Biol. Szeged., 50, 11–17.

    Molnár-Láng M. , 'Effects of drought on photosynthetic parameters and heat stability of PS II in wheat and in Aegilops species originating from dry habitats ' (2006 ) 50 Acta Biol. Szeged. : 11 -17 .

    • Search Google Scholar
  • El-Shintinawy, F. (2000): Photosynthesis in two wheat cultivars differing in salt tolerance. Photosynthetica, 38, 615–620.

    El-Shintinawy F. , 'Photosynthesis in two wheat cultivars differing in salt tolerance ' (2000 ) 38 Photosynthetica : 615 -620 .

    • Search Google Scholar
  • Flexas, J., Bota, J., Escalona, J. M., Sampol, B., Medrano, H. (2002): Effects of drought on photosynthesis in grapevines under field conditions: an evaluation of stomatal and mesophyll limitations. Funct. Plant Biol., 29, 461–471.

    Medrano H. , 'Effects of drought on photosynthesis in grapevines under field conditions: an evaluation of stomatal and mesophyll limitations ' (2002 ) 29 Funct. Plant Biol. : 461 -471 .

    • Search Google Scholar
  • Flexas, J., Medrano, H. (2002): Drought-inhibition of photosynthesis in C3 plants: stomatal and non-stomatal limitations revisited. Ann. Bot., 89, 183–189.

    Medrano H. , 'Drought-inhibition of photosynthesis in C3 plants: stomatal and non-stomatal limitations revisited ' (2002 ) 89 Ann. Bot. : 183 -189 .

    • Search Google Scholar
  • Flowers, T. J., Troke, P. F., Yeo, A. R. (1977): The mechanism of salt tolerance in halophytes. Annu. Rev. Plant Physiol., 28, 81–129.

    Yeo A. R. , 'The mechanism of salt tolerance in halophytes ' (1977 ) 28 Annu. Rev. Plant Physiol. : 81 -129 .

    • Search Google Scholar
  • Hoffmann, B., Cseuz, L., Pauk, J. (2006): Az őszibúza szárazságtűrésre történő nemesítésének lehetőségei és korlátai. (Possibilities and limitations of winter wheat breeading for drought tolerance.), pp. 191–224. In: D. Dudits (ed.), A búza nemesbítésének tudománya (Science of wheat breeding), Winter Fair Ltd., Szeged, Hungary.

    Pauk J. , '', in A búza nemesbítésének tudománya , (2006 ) -.

  • Hsiao, T. C. (1986): Additive and interactive effects of soil salinity and water regimes in crop-growth responses and osmoregulation. pp. 18–22. In: Letey, J. (ed.), Soil and Plant Interaction with Salinity. Agr. Exp. Sat. Univ. Calif. Spec. Publ. 3315.

  • Islam, A. K. M. R., Shepherd, K. W. (1990): Incorporation of barley chromosomes in wheat. pp. 128–151. In: Bajaj, Y. P. S. (ed.), Wheat (Biotechnology in Agriculture and Forestry, Vol. 13). Springer-Verlag, Berlin.

    Shepherd K. W. , '', in Wheat (Biotechnology in Agriculture and Forestry, Vol. 13) , (1990 ) -.

  • Joset, F., Jeanjea, R., Hagemann, M. (1996): Dynamics of the response of cyanobacteria to salt stress: Deciphering the molecular events. Physiol. Plant., 96, 738–744.

    Hagemann M. , 'Dynamics of the response of cyanobacteria to salt stress: Deciphering the molecular events ' (1996 ) 96 Physiol. Plant. : 738 -744 .

    • Search Google Scholar
  • Kaiser, W. M., Weber, H., Sauer, M. (1983): Photosynthetic capacity, osmotic response and solute content of leaves and chloroplasts from Spinacia oleracea under salt stress. Z. Pflanzenphysiol., 113, 15–27.

    Sauer M. , 'Photosynthetic capacity, osmotic response and solute content of leaves and chloroplasts from Spinacia oleracea under salt stress ' (1983 ) 113 Z. Pflanzenphysiol. : 15 -27 .

    • Search Google Scholar
  • Khavari-Nejad, R. A., Mostofi, Y. (1998): Effects of NaCl on photosynthetic pigments, saccharides and chloroplast ultrastructure in leaves of tomato cultivars. Photosynthetica, 35, 151–154.

    Mostofi Y. , 'Effects of NaCl on photosynthetic pigments, saccharides and chloroplast ultrastructure in leaves of tomato cultivars ' (1998 ) 35 Photosynthetica : 151 -154 .

    • Search Google Scholar
  • Kingsbury, R. W., Epstein, E., Pearcy, R. W. (1984): Physiological responses to salinity in selected lines of wheat. Plant Physiol., 74, 417–423.

    Pearcy R. W. , 'Physiological responses to salinity in selected lines of wheat ' (1984 ) 74 Plant Physiol. : 417 -423 .

    • Search Google Scholar
  • Lawlor, D. W. (2002): Limitation to photosynthesis in water-stressed leaves: stomata vs. metabolism and the role of ATP. Ann. Bot., 89, 871–885.

    Lawlor D. W. , 'Limitation to photosynthesis in water-stressed leaves: stomata vs. metabolism and the role of ATP ' (2002 ) 89 Ann. Bot. : 871 -885 .

    • Search Google Scholar
  • Lawlor, D. W., Cornic, G. (2002): Photosynthetic carbon assimilation and associated metabolism in relation to water deficits in higher plants. Plant Cell Environ., 25, 275–294.

    Cornic G. , 'Photosynthetic carbon assimilation and associated metabolism in relation to water deficits in higher plants ' (2002 ) 25 Plant Cell Environ. : 275 -294 .

    • Search Google Scholar
  • Loreto, F., Centritto, M., Chartzoulakis, K. (2003): Photosynthetic limitations in olive cultivars with different sensitivity. Plant Cell Environ., 26, 595–601.

    Chartzoulakis K. , 'Photosynthetic limitations in olive cultivars with different sensitivity ' (2003 ) 26 Plant Cell Environ. : 595 -601 .

    • Search Google Scholar
  • Molnár, I., Gáspár, L., Sárvári, É., Dulai, S., Hoffmann, B., Molnár-Láng, M., Galiba, G. (2004): Physiological and morphological responses to water stress in Aegilops biuncialis and Triticum aestivum genotypes with differing tolerance to drought. Funct. Plant Biol., 31, 1149–1159.

    Galiba G. , 'Physiological and morphological responses to water stress in Aegilops biuncialis and Triticum aestivum genotypes with differing tolerance to drought ' (2004 ) 31 Funct. Plant Biol. : 1149 -1159 .

    • Search Google Scholar
  • Molnár, I., Linc, G., Dulai, S., Nagy, E. D., Molnár-Láng, M. (2007): The compensation ability of chromosome 4H for 4D in response to drought stress investigated in newly developed wheat-barley 4H(4D) disomic substitution line. Plant Breeding, 126, 369–374.

    Molnár-Láng M. , 'The compensation ability of chromosome 4H for 4D in response to drought stress investigated in newly developed wheat-barley 4H(4D) disomic substitution line ' (2007 ) 126 Plant Breeding : 369 -374 .

    • Search Google Scholar
  • Molnár-Láng, M., Linc, G., Logojan, A., Sutka, J. (2000): Production and meiotic pairing behaviour of new hybrids of winter wheat (Triticum aestivum) × winter barley (Hordeum vulgare). Genome, 43, 1045–1054.

    Sutka J. , 'Production and meiotic pairing behaviour of new hybrids of winter wheat (Triticum aestivum) × winter barley (Hordeum vulgare) ' (2000 ) 43 Genome : 1045 -1054 .

    • Search Google Scholar
  • Molnár-Láng, M., Linc, G., Sutka, J. (1996): Transfer of the recessive crossability allele kr1 from Chinese Spring into the winter wheat variety Martonvásári 9. Euphytica, 90, 301–305.

    Sutka J. , 'Transfer of the recessive crossability allele kr1 from Chinese Spring into the winter wheat variety Martonvásári 9 ' (1996 ) 90 Euphytica : 301 -305 .

    • Search Google Scholar
  • Molnár-Láng, M., Novotny, C., Linc, G. D., Nagy, E. (2005): Changes in the meiotic pairing behaviour of a winter wheat-winter barley hybrid maintained for a long term in tissue culture, and tracing the barley chromatin in the progenies using GISH and SSR markers. Plant Breeding, 124, 247–252.

    Nagy E. , 'Changes in the meiotic pairing behaviour of a winter wheat-winter barley hybrid maintained for a long term in tissue culture, and tracing the barley chromatin in the progenies using GISH and SSR markers ' (2005 ) 124 Plant Breeding : 247 -252 .

    • Search Google Scholar
  • Molnár-Láng, M., Szakács, É. D., Nagy, E. (2007): Development and molecular cytogenetic identification of new winter wheat/winter barley disomic addition lines. pp. 707–713. In: Buck, H. T., Nisi, J. E., Salomón, N. (eds.), Wheat Production in Stressed Environments. Developments in Plant Breeding 12. Springer, Dordrecht, The Netherlands.

    Nagy E. , '', in Wheat Production in Stressed Environments. Developments in Plant Breeding 12 , (2007 ) -.

  • Morales, F., AbadÍa, A., Gómez-Aparisi, J., Abadía, J. (1992): Effect of combined NaCl and CaCl2 salinity on photosynthetic parameters of barley grown in nutrient solution. Physiol. Plant., 86, 419–426.

    Abadía J. , 'Effect of combined NaCl and CaCl2 salinity on photosynthetic parameters of barley grown in nutrient solution ' (1992 ) 86 Physiol. Plant. : 419 -426 .

    • Search Google Scholar
  • Munns, R. (2002): Comparative physiology of salt and water stress. Plant Cell Environ., 25, 239–250.

    Munns R. , 'Comparative physiology of salt and water stress ' (2002 ) 25 Plant Cell Environ. : 239 -250 .

    • Search Google Scholar
  • Munns, R., Termaat, A. (1986): Whole plant responses to salinity. Aust. J. Plant Physiol., 13, 143–160.

    Termaat A. , 'Whole plant responses to salinity ' (1986 ) 13 Aust. J. Plant Physiol. : 143 -160 .

    • Search Google Scholar
  • Murai, K., Koba, T., Shimada, T. (1997): Effects of barley chromosome on heading characters in wheat-barley chromosome addition lines. Euphytica, 96, 281–287.

    Shimada T. , 'Effects of barley chromosome on heading characters in wheat-barley chromosome addition lines ' (1997 ) 96 Euphytica : 281 -287 .

    • Search Google Scholar
  • Nagy, Z., Galiba, G. (1995): Drought and salt tolerance are not necessarily linked: a study on wheat varieties differing in drought resistance under consecutive water and salinity stresses. J. Plant Physiol., 145, 168–174.

    Galiba G. , 'Drought and salt tolerance are not necessarily linked: a study on wheat varieties differing in drought resistance under consecutive water and salinity stresses ' (1995 ) 145 J. Plant Physiol. : 168 -174 .

    • Search Google Scholar
  • Robinson, S. P., Dowton, W. J. S., Millhouse, J. A. (1983): Photosynthesis and ion content of leaves and isolated chloroplasts of salt stressed spinach. Plant Physiol., 73, 238–242.

    Millhouse J. A. , 'Photosynthesis and ion content of leaves and isolated chloroplasts of salt stressed spinach ' (1983 ) 73 Plant Physiol. : 238 -242 .

    • Search Google Scholar
  • Siler, B., Misic, D., Filipovic, D., Popovic, Z., Cvetic, T., Mijovic, A. (2007): Effects of salinity on in vitro growth and photosynthesis of common centaury (Centaurium erythraea Rafn.). Arch. Biol. Sci., 59, 129–134.

    Mijovic A. , 'Effects of salinity on in vitro growth and photosynthesis of common centaury (Centaurium erythraea Rafn ' (2007 ) 59 Arch. Biol. Sci. : 129 -134 .

    • Search Google Scholar
  • Stiller, I., Dulai, S., Kondrák, M., Tarnai, R., Szabó, L., Toldi, O., Bánfalvi, Z. (2008): Effects of drought on water content and photosynthetic parameters in potato plants expressing the trehalose-6-phosphate synthase gene of Saccharomyces cerevisiae. Planta, 227, 299–308.

    Bánfalvi Z. , 'Effects of drought on water content and photosynthetic parameters in potato plants expressing the trehalose-6-phosphate synthase gene of Saccharomyces cerevisiae ' (2008 ) 227 Planta : 299 -308 .

    • Search Google Scholar
  • Szabolcs, L. (1994): Soils and salinization. pp. 3–11. In: Pessarakli, M. (ed.), Handbook of Plant and Crop Stress. Marcel Dekker, New York.

    Szabolcs L. , '', in Handbook of Plant and Crop Stress , (1994 ) -.

  • Tezara, W., Mitchell, V. J., Driscoll, S. D., Lawlor, D. W. (1999): Water stress inhibits plant photosynthesis by decreasing coupling factor and ATP. Nature, 401, 914–917.

    Lawlor D. W. , 'Water stress inhibits plant photosynthesis by decreasing coupling factor and ATP ' (1999 ) 401 Nature : 914 -917 .

    • Search Google Scholar
  • Veselov, D. S., Sharipova, G. V., Akhiyarova, G. R., Kudoyarova, G. R. (2009): Fast growth responses of barley and durum wheat plants to NaCl- and PEG-treatment: resolving the relative contributions of water deficiency and ion toxicity. Plant Growth Reg., 1, 125–129.

    Kudoyarova G. R. , 'Fast growth responses of barley and durum wheat plants to NaCl- and PEG-treatment: resolving the relative contributions of water deficiency and ion toxicity ' (2009 ) 1 Plant Growth Reg. : 125 -129 .

    • Search Google Scholar
  • von Caemmerer, S., Farquhar, G. D. (1981): Some relationships between the biochemistry of photosynthesis and the gas exchange of leaves. Planta, 153, 376–387.

    Farquhar G. D. , 'Some relationships between the biochemistry of photosynthesis and the gas exchange of leaves ' (1981 ) 153 Planta : 376 -387 .

    • Search Google Scholar
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Acta Agronomica Hungarica
Language English
Russian
German
French
Size  
Year of
Foundation
1950
Publication
Programme
ceased
Volumes
per Year
 
Issues
per Year
 
Founder Magyar Tudományos Akadémia   
Founder's
Address
H-1051 Budapest, Hungary, Széchenyi István tér 9.
Publisher Akadémiai Kiadó
Publisher's
Address
H-1117 Budapest, Hungary 1516 Budapest, PO Box 245.
Responsible
Publisher
Chief Executive Officer, Akadémiai Kiadó
ISSN 0238-0161 (Print)
ISSN 1588-2527 (Online)