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Determining Salt Tolerance of Some Grapevine Rootstocks Under In vitro Conditions

Year 1997, Volume: 26 Issue: 1-2, 49 - 65, 31.12.1997

Abstract

Salt resistance tests were conducted in 5 BB, 41 B and 1613 grapevine rootstocks under in vitro conditions. Plant materials used in in vitro salt resistance tests were propagated by the axillary bud culture method. Single-node shoots were subjected to five different NaCl concentrations (0.00%, 0.25%, 0.50%, 0.75% and 1.00%) in MS + 5 µM BA medium for two different periods (4 and 8 weeks). Proliferation, growth and chlorophyll contents decreased due to the increase in NaCl concentration and treatment period. Salt treatments caused loss of viability and injuries at different levels in explants, depending on NaCl concentrations, treatment periods and grape rootstocks. Beside the percentage viability, tolerance ratio and tolerance index were calculated on the bases of explant weight and total chlorophyll to determine salt tolerance of grapevine rootstocks and difference among the rootstocks. The most tolerant grape rootstock to salt treatments was 1613 and this was followed by 5 BB and 41 B. It was determined that salt tolerant grape rootstocks could relatively maintain their growth rates and could avoid from metabolic disorders such as chlorophyll deficiency.

References

  • Alsaidi, I.H. and B.J. Alawi, 1984. Effect of Different Concentrations of NaCl and CaCl₂ on Growth, Dry Weight and Mineral Elements of Some Grapevine Cultivars (Vitis vinifera L.). Ann. Agric. Sci. 29(2):971-988.
  • Alsaidi, I.H., I.A. Shakir and A.J. Hiissein, 1988. Rooting of Some Grapevine Cuttings as Affected by Salinity. Ann. Agric. Sci. 33(1):479-499.
  • Alsaidi, I.H. and Z. A. Dawood and B. J. Alawi, 1985. Effect of Saline Condition on Growth and Mineral Content in Different Parts of Grapevine W. Deiss (Vitis vinefera L.). Ann. Agric. Sci., 30(2):1495-1512.
  • Alsaidi, I.H., A.J. Hiissein and J. Sidiq, 1988. Effect of Salinity on the Rooting of Cuttings of Abbasi and Kemali Grape Cultivars (Vitis vinifera L.). Hort. Abst. 58(11):7382.
  • Arbabzadeh, F. and G. Dutt, 1987. Salt Tolerance of Grape Rootstocks Under Greenhouse Conditions. Amer. J. Enol. Viticui, 38(2):95-99.
  • Awang, Y.B., J.G. Atherton, A.J. Taylor, 1993. Salinity Effects on Strawberry Plants Grown in Rockwool. 1. Growth and Leaf Water Relations. J. Hort. Set, 68(5):783-790.
  • Badawi, M.A., M. Alphonse, A.Z. Bondok and Y.A. Hosni, 1990. Effect of Some Disinfectant Treatments and Different Sodium Chloride Concentrations on the in vitro Growth of Some Strawberry Cultivars. Egyp. J. Hort. 17(1):17-24.
  • Behboidian, M.H., E. Törökfalvy and R.R. Walker, 1986. Effects of Salinity on Ionic Content, Water Relations and Gas Exchange Parameters in Some Citrus Scion-Rootstock Combinations. Set Hort., 28(112):105-116.
  • Cao, Z., 1983. Grape: Micropropagation. In “Handbook of Plant Cell Culture, Vol.1” (Eds: D.A. Evans, W.R. Sharp, P.V. Ammirato, Y. Yamada), Collier Macmillan Publishers, London, pp:312-328.
  • Cardi, T. and E. Filippone, 1986. Response to Sodium Chloride of Tissue Cultured in vitro from Two Genotypes of Tomato (Lycopersicon esculentum Mill.) Hort. Abst. 56(2):1067.
  • Chandler, S.F., B.B. Mandal and T.A, Thorpe, 1986. Effect of Sodium Sulphate on Tissue Cultures of Brassica napus cv. Westar and Brassica campestris L. cv. Tobin. J. Plant Physiol., 126(1):105-117.
  • Charbaji, T., M. Garcia and J. Fallot, 1989. The effect of Sodium Chloride on the Growth of Grapevine in Hydroponic Culture and on the Distribution of the Two Constituent Elements of This Salt. Hort. Abs., 59(12):9865.
  • Chartzoulakis, K.S., 1992. Effects of NaCl Salinity on Germination, Growth and Yield of Greenhouse Cucumber. J. Hort. Sci. 67(1):115-119.
  • Chee, R. and R.M. Pool, 1987. Improved Inorganic Media Constituents for in vitro Shoot Multiplication of Vitis. Set Hort., 32:85-95.
  • Croughan, T.P., J.S. Stavarek, D.W. Rains, 1981. In vitro Development of Salt Resistant Plants. Envir. Exp. Bot. 21(3/4):317-324.
  • Dalloul, A., S. Misik and L. Olah, 1990. In vitro Micro-propagation of Grape Varieties. Proc. 5. Int. Symp. on Grape Breeding, 12-16 Sep., 1989, Germany. Vitis, pp:463.
  • Dalsou, V. and K. C. Short, 1987. Selection for Sodium Chloride Tolerance in Chrysanthemums. Acta Hort. 212:737-740.
  • Downton, W.J.S., 1977. Photosynthesis in Salt Stressed Grapevines. Aust. J. Plan Physiol. 4:183-192.
  • Downton, W.J.S., 1985. Growth and Mineral Composition of Sultana Grapevine as Influenced by Salinity and Rootstock. Aust. J. Agric. Res. 36(3):425-434.
  • and J. Millhouse, 1983. Turgor Maintenance During Salt Stress Prevent Loss of Variable Fluorescence in Grapevine Leaves. Plant Science Letters, 31(1):1-7.
  • and J. Millhouse, 1985. Chlorophyll Fluorescence and Water Relations of Salt Stressed Plants. Plant Science Letters, 37(3):205-212.
  • Downton, W.J.S., B.R. Loveys and W.J.R. Grant, 1990. Salinity Effects on the Stomatal Behavior of Grapevine. New Phytol. 16:499-503.
  • Epstein, E., J.D. Nortlyn, D.W. Rush, R.W. Kingsbury, D.B. Kelley, G.A. Cunning Ham, A.F. Wrona, 1980. Saline Culture of Crops: A Genetic Approach. Science, 210:399-404.
  • Ercan, N. ve R. Gülcan, 1992. In Vitro Koşullarında Bazı Asma Çeşit ve Anaçlarının Tuza Dayanıklılıkları Üzerinde Araştırmalar. Türkiye 1. Ulusal Bahçe Bitkileri Kongresi, İzmir. 2:541-543.
  • Eriş, A. und N. Sivritepe, 1995. In vitro Propagation of Grapevines by Axillary Bud Culture. Symposium Über Wissenschaftliche Ergebnisse Deutsch-Türkischer Universität Partnerschaften im Agrarbereich (Verbände Deutsch-Türkischer Agra Rund Naturwissenschaftler, Ankara-Berlin), 12-17 September 1995, Ankara. pp:235-242.
  • Göktürk, N., 1993. Üç Değişik Amerikan Asma Anacının in vitro Koşullarda Tuzluluğa Dayanımlarının Belirlenmesi Üzerine Bir Araştırma (Yüksek Lisans Tezi). Ankara Üniversitesi, Fen Bilimleri Enstitüsü, 72s.
  • Haffman, G.J., P.B. Catlin, R.M. Mead, R.S. Johnson, L.E. François and D. Goldhamer, 1989. Yield and Foliar Injury Responses of Mature Plum Trees to Salinit. Irrigation Science, 10(3):215-229.
  • Hasegawa, P.M., R.A. Bressan and A.V. Handa, 1986. Cellular Mechanisms of Salinity Tolerance. HortScience, 21(6):1317-1324.
  • Holden, M. 1976. Chemistry and Biochemistry of Plant Pigments. (Ed: T.W. Goodwin). Academic Press, London, pp:1-37.
  • Joolka, N.K., J. Singh and A.P. Khera, 1976. Growth of Grapevines as Affected by Sodium Chloride and Sodium Sulfate Salts. Haryana J. Hort. Sci. 5(3/4):181-189.
  • Khanouja, S.D., K.N.J. Chaturvedi and V.K. Gard, 1980. Effect of Exchangeable Sodium Percentage on the Growth and Mineral Composition of Thompson Seedless Grapevine. Sci. Hort. 12(1):47-53.
  • Kishore, D.K., M. Pandey and R. Singh, 1985. Effect of Salt Stress on Growth Characters of Perlette Grapevines. Prog. Hort. 17(4):289-297.
  • LaRosa, P.C., N.K. Singh, P.M. Hasegawa and R.A. Bressan, 1989. Stable NaCl Tolerance of Tobacco Cells is Associated with Enhanced Accumulation of Osmotic. Plant Physiol. 91(5):855-861.
  • Lebrun, L., K. Rajasekaran and M.G. Mullins, 1985. Selection in vitro for NaCl-Tolerance in Vitis rupestris Scheele. Ann. Bot., 56:733-739.
  • Levitt, J., 1980. Responses of Plants to Environmental Stresses. Vol.2, 2. Ed. Academic Press, New York. pp:607.
  • Lurie, S., R. Ben-Arie, M. Zeidman, Y. Zuthi and Y. David, 1992. Irrigation of Pomegranates, Pear and Table Grapes with Brackish Water: Fruit Quality and Storage Potential. Hort. Abs. 62(4):3475.
  • Mortan, L. T. 1979. A practical Ampelography. Cornell University Press, Ithaca.
  • Munns, R. and A. Termaat, 1986. Whole Plant Responses to Salinity. Aust. J. Plant Physiol. 13:143-160.
  • Pool, R. and L. E. Powell, 1975. The Influence of Cytokinins on in vitro Shoot Development of “Concord” Grape. J. Amer. Soc. Hort. Sci., 100(2):200-202.
  • Prior, L.D., A.M. Grieve and B.R. Cullis, 1992. Sodium Chloride and Soil Texture Interactions in Irrigated Field Grown Sultana Grapevines. 2. Plant Mineral Content, Growth and Physiology. Aust. J. Agr. Res., 43(5):1067-1083.
  • Prior, L.D., A.M. Grieve and B.R. Cullis, 1992. Sodium Chloride and Soil Texture Interactions in Irrigated Field Grown Sultana Grapevines. I. Yield and Fruit Quality. Aust. J. Agr. Res., 43(5):1051-1066.
  • Samra, J.S., 1985. Sodicity Tolerance of Grapes with Reference to the Uptake of Nutrients. Indian J. Hort., 42(1/2): 12-17.
  • Samra, J.S., 1986. Effect of Soil Sodicity on the Growth of Four Cultivars of Grape. Indian J. Hort., 43(1/2):60-65.
  • Shannon, M.C., 1985. Principles and Strategies in Breeding for Higher Salt Tolerance. Plant and Soil, 89:227-241.
  • Sivritepe, N., 1995. Asmalarda Tuza Dayanıklılık Testleri ve Tuza Dayanımda Etkili Bazı Faktörler Üzerinde Araştırmalar (Doktora Tezi). Uludağ Üniversitesi Fen Bilimleri Enstitüsü Bahçe Bitkileri Anabilim Dalı. Bursa. 176s.
  • Southey, J.M. and J.H. Jooste, 1991. The Effect of Grapevine Rootstock on the Performance of Vitis vinifera L. (cv. Colombard) on a Relatively Saline Soil. S. Afr. J. Enol. Vitic. 12(1):32-40.
  • Stamp, J.S., M.S. Colby and C.P. Meredith, 1990. Direct Shoot Organogenesis and Plant Regeneration from Leaves of Grape. Plant Cell, Tissue and Organ Culture, 22: 127-233.
  • Sudarsono, G.G. and G.G. Ronald, 1991. Growth Regular and Axillary Bud Position Effect on in vitro Establishment of Vitis rotundifolia. HortSci. 26(3):304-307.
  • Tal, M.,1983. Selection or Stress Tolerance. In “Handbook of Plant Cell Culture, Vol.1” (Eds: D.E. Evans, W.R. Sharp, P.V. Amrnirato, Y. Yamada), Collier Macmillan Publisher, London, pp:461-487.
  • Taylor, R.M., L.B. Fenn and C.A. Pety, 1987. Nitrogen Uptake by Grapes with Divided Roots Growing in Differentially Salinized Soils, HortSci., 22(4):664.
  • Vitagliano, C., A. Mensuali-Sodi and F. Blando, 1991. Effect of NaCl on Quince (Cydonia oblonga Mill.) Tissue Culture. Acta Hort., 300:347-352.
  • Walker, R.R., E. Törökfalvy, N.S. Scoot and P.E. Kriedemann, 1981. An Analysis of Photosynthetic Response to Salt Treatment in Vitis Vinifera. Aust. J. Plant Physiol, 8:359-374.
  • Zid, E. and C. Grignon, 1986. Comparative Effects of NaCl, KCl and Na₂SO₄ on the Growth and Mineral Nutrition of Young Citrus aurantium L. Oecologia Plantarum. 7(4):407-416.

Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi

Year 1997, Volume: 26 Issue: 1-2, 49 - 65, 31.12.1997

Abstract

5 BB, 41 B ve 1613 asma anaçlarına in vitro koşullarında tuz testleri uygulanmıştır. In vitro tuz testlerinde kullanılan materyal aktif tomurcuk kültürü yöntemi ile çoğaltılmıştır. Tek boğumlu sürgünler MS+5 µM BA ortamında, %0.00, %0.25, %0.50, %0.75 ve %1.00 olmak üzere 5 farklı NaCl konsantrasyonu ile 4 ve 8 hafta olmak üzere iki farklı zaman periyodunda tuza maruz bırakılmışlardır. Artan NaCl konsantrasyonu ve uygulama süresine bağlı olarak eksplantlarda çoğalma, büyüme ve toplam klorofil miktarının azaldığı tespit edilmiştir. Tuz uygulamaları NaCl konsantrasyonları, uygulama süreleri ve çeşitlere bağlı olarak, eksplantlarda farklı şiddetlerde zararlanmaların meydana gelmesine ve canlılığın azalmasına da neden olmuştur. Kutlanılan anaçların tuza dayanımlarının ve çeşitler arasındaki farklılığın belirlenmesi amacı ile eksplant ağırlığı ve toplam klorofil bazında hesaplanan tolerans oranı ve tolerans indeksleri ile yüzde canlılık değerlerinden faydalanılmıştır. Bütün bu kriterlerin değerlendirilmesi sonucunda tuza en dayanıklı anacın 1613 olduğu, bunu sırası ile 5 BB ve 41 B anaçlarının izlediği tespit edilmiştir. 1613 anacının tuzlu ortamlarda büyüme oranını nispeten koruyabildiği ve klorofil noksanlığı gibi metabolik bozukluklardan sakınabildiği belirlenmiştir.

References

  • Alsaidi, I.H. and B.J. Alawi, 1984. Effect of Different Concentrations of NaCl and CaCl₂ on Growth, Dry Weight and Mineral Elements of Some Grapevine Cultivars (Vitis vinifera L.). Ann. Agric. Sci. 29(2):971-988.
  • Alsaidi, I.H., I.A. Shakir and A.J. Hiissein, 1988. Rooting of Some Grapevine Cuttings as Affected by Salinity. Ann. Agric. Sci. 33(1):479-499.
  • Alsaidi, I.H. and Z. A. Dawood and B. J. Alawi, 1985. Effect of Saline Condition on Growth and Mineral Content in Different Parts of Grapevine W. Deiss (Vitis vinefera L.). Ann. Agric. Sci., 30(2):1495-1512.
  • Alsaidi, I.H., A.J. Hiissein and J. Sidiq, 1988. Effect of Salinity on the Rooting of Cuttings of Abbasi and Kemali Grape Cultivars (Vitis vinifera L.). Hort. Abst. 58(11):7382.
  • Arbabzadeh, F. and G. Dutt, 1987. Salt Tolerance of Grape Rootstocks Under Greenhouse Conditions. Amer. J. Enol. Viticui, 38(2):95-99.
  • Awang, Y.B., J.G. Atherton, A.J. Taylor, 1993. Salinity Effects on Strawberry Plants Grown in Rockwool. 1. Growth and Leaf Water Relations. J. Hort. Set, 68(5):783-790.
  • Badawi, M.A., M. Alphonse, A.Z. Bondok and Y.A. Hosni, 1990. Effect of Some Disinfectant Treatments and Different Sodium Chloride Concentrations on the in vitro Growth of Some Strawberry Cultivars. Egyp. J. Hort. 17(1):17-24.
  • Behboidian, M.H., E. Törökfalvy and R.R. Walker, 1986. Effects of Salinity on Ionic Content, Water Relations and Gas Exchange Parameters in Some Citrus Scion-Rootstock Combinations. Set Hort., 28(112):105-116.
  • Cao, Z., 1983. Grape: Micropropagation. In “Handbook of Plant Cell Culture, Vol.1” (Eds: D.A. Evans, W.R. Sharp, P.V. Ammirato, Y. Yamada), Collier Macmillan Publishers, London, pp:312-328.
  • Cardi, T. and E. Filippone, 1986. Response to Sodium Chloride of Tissue Cultured in vitro from Two Genotypes of Tomato (Lycopersicon esculentum Mill.) Hort. Abst. 56(2):1067.
  • Chandler, S.F., B.B. Mandal and T.A, Thorpe, 1986. Effect of Sodium Sulphate on Tissue Cultures of Brassica napus cv. Westar and Brassica campestris L. cv. Tobin. J. Plant Physiol., 126(1):105-117.
  • Charbaji, T., M. Garcia and J. Fallot, 1989. The effect of Sodium Chloride on the Growth of Grapevine in Hydroponic Culture and on the Distribution of the Two Constituent Elements of This Salt. Hort. Abs., 59(12):9865.
  • Chartzoulakis, K.S., 1992. Effects of NaCl Salinity on Germination, Growth and Yield of Greenhouse Cucumber. J. Hort. Sci. 67(1):115-119.
  • Chee, R. and R.M. Pool, 1987. Improved Inorganic Media Constituents for in vitro Shoot Multiplication of Vitis. Set Hort., 32:85-95.
  • Croughan, T.P., J.S. Stavarek, D.W. Rains, 1981. In vitro Development of Salt Resistant Plants. Envir. Exp. Bot. 21(3/4):317-324.
  • Dalloul, A., S. Misik and L. Olah, 1990. In vitro Micro-propagation of Grape Varieties. Proc. 5. Int. Symp. on Grape Breeding, 12-16 Sep., 1989, Germany. Vitis, pp:463.
  • Dalsou, V. and K. C. Short, 1987. Selection for Sodium Chloride Tolerance in Chrysanthemums. Acta Hort. 212:737-740.
  • Downton, W.J.S., 1977. Photosynthesis in Salt Stressed Grapevines. Aust. J. Plan Physiol. 4:183-192.
  • Downton, W.J.S., 1985. Growth and Mineral Composition of Sultana Grapevine as Influenced by Salinity and Rootstock. Aust. J. Agric. Res. 36(3):425-434.
  • and J. Millhouse, 1983. Turgor Maintenance During Salt Stress Prevent Loss of Variable Fluorescence in Grapevine Leaves. Plant Science Letters, 31(1):1-7.
  • and J. Millhouse, 1985. Chlorophyll Fluorescence and Water Relations of Salt Stressed Plants. Plant Science Letters, 37(3):205-212.
  • Downton, W.J.S., B.R. Loveys and W.J.R. Grant, 1990. Salinity Effects on the Stomatal Behavior of Grapevine. New Phytol. 16:499-503.
  • Epstein, E., J.D. Nortlyn, D.W. Rush, R.W. Kingsbury, D.B. Kelley, G.A. Cunning Ham, A.F. Wrona, 1980. Saline Culture of Crops: A Genetic Approach. Science, 210:399-404.
  • Ercan, N. ve R. Gülcan, 1992. In Vitro Koşullarında Bazı Asma Çeşit ve Anaçlarının Tuza Dayanıklılıkları Üzerinde Araştırmalar. Türkiye 1. Ulusal Bahçe Bitkileri Kongresi, İzmir. 2:541-543.
  • Eriş, A. und N. Sivritepe, 1995. In vitro Propagation of Grapevines by Axillary Bud Culture. Symposium Über Wissenschaftliche Ergebnisse Deutsch-Türkischer Universität Partnerschaften im Agrarbereich (Verbände Deutsch-Türkischer Agra Rund Naturwissenschaftler, Ankara-Berlin), 12-17 September 1995, Ankara. pp:235-242.
  • Göktürk, N., 1993. Üç Değişik Amerikan Asma Anacının in vitro Koşullarda Tuzluluğa Dayanımlarının Belirlenmesi Üzerine Bir Araştırma (Yüksek Lisans Tezi). Ankara Üniversitesi, Fen Bilimleri Enstitüsü, 72s.
  • Haffman, G.J., P.B. Catlin, R.M. Mead, R.S. Johnson, L.E. François and D. Goldhamer, 1989. Yield and Foliar Injury Responses of Mature Plum Trees to Salinit. Irrigation Science, 10(3):215-229.
  • Hasegawa, P.M., R.A. Bressan and A.V. Handa, 1986. Cellular Mechanisms of Salinity Tolerance. HortScience, 21(6):1317-1324.
  • Holden, M. 1976. Chemistry and Biochemistry of Plant Pigments. (Ed: T.W. Goodwin). Academic Press, London, pp:1-37.
  • Joolka, N.K., J. Singh and A.P. Khera, 1976. Growth of Grapevines as Affected by Sodium Chloride and Sodium Sulfate Salts. Haryana J. Hort. Sci. 5(3/4):181-189.
  • Khanouja, S.D., K.N.J. Chaturvedi and V.K. Gard, 1980. Effect of Exchangeable Sodium Percentage on the Growth and Mineral Composition of Thompson Seedless Grapevine. Sci. Hort. 12(1):47-53.
  • Kishore, D.K., M. Pandey and R. Singh, 1985. Effect of Salt Stress on Growth Characters of Perlette Grapevines. Prog. Hort. 17(4):289-297.
  • LaRosa, P.C., N.K. Singh, P.M. Hasegawa and R.A. Bressan, 1989. Stable NaCl Tolerance of Tobacco Cells is Associated with Enhanced Accumulation of Osmotic. Plant Physiol. 91(5):855-861.
  • Lebrun, L., K. Rajasekaran and M.G. Mullins, 1985. Selection in vitro for NaCl-Tolerance in Vitis rupestris Scheele. Ann. Bot., 56:733-739.
  • Levitt, J., 1980. Responses of Plants to Environmental Stresses. Vol.2, 2. Ed. Academic Press, New York. pp:607.
  • Lurie, S., R. Ben-Arie, M. Zeidman, Y. Zuthi and Y. David, 1992. Irrigation of Pomegranates, Pear and Table Grapes with Brackish Water: Fruit Quality and Storage Potential. Hort. Abs. 62(4):3475.
  • Mortan, L. T. 1979. A practical Ampelography. Cornell University Press, Ithaca.
  • Munns, R. and A. Termaat, 1986. Whole Plant Responses to Salinity. Aust. J. Plant Physiol. 13:143-160.
  • Pool, R. and L. E. Powell, 1975. The Influence of Cytokinins on in vitro Shoot Development of “Concord” Grape. J. Amer. Soc. Hort. Sci., 100(2):200-202.
  • Prior, L.D., A.M. Grieve and B.R. Cullis, 1992. Sodium Chloride and Soil Texture Interactions in Irrigated Field Grown Sultana Grapevines. 2. Plant Mineral Content, Growth and Physiology. Aust. J. Agr. Res., 43(5):1067-1083.
  • Prior, L.D., A.M. Grieve and B.R. Cullis, 1992. Sodium Chloride and Soil Texture Interactions in Irrigated Field Grown Sultana Grapevines. I. Yield and Fruit Quality. Aust. J. Agr. Res., 43(5):1051-1066.
  • Samra, J.S., 1985. Sodicity Tolerance of Grapes with Reference to the Uptake of Nutrients. Indian J. Hort., 42(1/2): 12-17.
  • Samra, J.S., 1986. Effect of Soil Sodicity on the Growth of Four Cultivars of Grape. Indian J. Hort., 43(1/2):60-65.
  • Shannon, M.C., 1985. Principles and Strategies in Breeding for Higher Salt Tolerance. Plant and Soil, 89:227-241.
  • Sivritepe, N., 1995. Asmalarda Tuza Dayanıklılık Testleri ve Tuza Dayanımda Etkili Bazı Faktörler Üzerinde Araştırmalar (Doktora Tezi). Uludağ Üniversitesi Fen Bilimleri Enstitüsü Bahçe Bitkileri Anabilim Dalı. Bursa. 176s.
  • Southey, J.M. and J.H. Jooste, 1991. The Effect of Grapevine Rootstock on the Performance of Vitis vinifera L. (cv. Colombard) on a Relatively Saline Soil. S. Afr. J. Enol. Vitic. 12(1):32-40.
  • Stamp, J.S., M.S. Colby and C.P. Meredith, 1990. Direct Shoot Organogenesis and Plant Regeneration from Leaves of Grape. Plant Cell, Tissue and Organ Culture, 22: 127-233.
  • Sudarsono, G.G. and G.G. Ronald, 1991. Growth Regular and Axillary Bud Position Effect on in vitro Establishment of Vitis rotundifolia. HortSci. 26(3):304-307.
  • Tal, M.,1983. Selection or Stress Tolerance. In “Handbook of Plant Cell Culture, Vol.1” (Eds: D.E. Evans, W.R. Sharp, P.V. Amrnirato, Y. Yamada), Collier Macmillan Publisher, London, pp:461-487.
  • Taylor, R.M., L.B. Fenn and C.A. Pety, 1987. Nitrogen Uptake by Grapes with Divided Roots Growing in Differentially Salinized Soils, HortSci., 22(4):664.
  • Vitagliano, C., A. Mensuali-Sodi and F. Blando, 1991. Effect of NaCl on Quince (Cydonia oblonga Mill.) Tissue Culture. Acta Hort., 300:347-352.
  • Walker, R.R., E. Törökfalvy, N.S. Scoot and P.E. Kriedemann, 1981. An Analysis of Photosynthetic Response to Salt Treatment in Vitis Vinifera. Aust. J. Plant Physiol, 8:359-374.
  • Zid, E. and C. Grignon, 1986. Comparative Effects of NaCl, KCl and Na₂SO₄ on the Growth and Mineral Nutrition of Young Citrus aurantium L. Oecologia Plantarum. 7(4):407-416.
There are 53 citations in total.

Details

Primary Language Turkish
Subjects Agricultural Engineering (Other)
Journal Section Makaleler
Authors

Nuray Sivritepe This is me

Atilla Eriş This is me

Publication Date December 31, 1997
Submission Date January 1, 1997
Acceptance Date January 31, 1997
Published in Issue Year 1997 Volume: 26 Issue: 1-2

Cite

APA Sivritepe, N., & Eriş, A. (1997). Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi. Bahçe, 26(1-2), 49-65.
AMA Sivritepe N, Eriş A. Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi. Bahçe. December 1997;26(1-2):49-65.
Chicago Sivritepe, Nuray, and Atilla Eriş. “Bazı Asma Anaçlarının in Vitro Koşullarda Tuza Dayanımlarının Belirlenmesi”. Bahçe 26, no. 1-2 (December 1997): 49-65.
EndNote Sivritepe N, Eriş A (December 1, 1997) Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi. Bahçe 26 1-2 49–65.
IEEE N. Sivritepe and A. Eriş, “Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi”, Bahçe, vol. 26, no. 1-2, pp. 49–65, 1997.
ISNAD Sivritepe, Nuray - Eriş, Atilla. “Bazı Asma Anaçlarının in Vitro Koşullarda Tuza Dayanımlarının Belirlenmesi”. Bahçe 26/1-2 (December1997), 49-65.
JAMA Sivritepe N, Eriş A. Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi. Bahçe. 1997;26:49–65.
MLA Sivritepe, Nuray and Atilla Eriş. “Bazı Asma Anaçlarının in Vitro Koşullarda Tuza Dayanımlarının Belirlenmesi”. Bahçe, vol. 26, no. 1-2, 1997, pp. 49-65.
Vancouver Sivritepe N, Eriş A. Bazı Asma Anaçlarının in vitro Koşullarda Tuza Dayanımlarının Belirlenmesi. Bahçe. 1997;26(1-2):49-65.

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