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Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​

Year 2011, Volume: 39 Issue: 1, 61 - 64, 01.01.2011

Abstract

Salinity is one of the major problems to affect plant growth and development in arid and semi arid regions. The reasons of the formation of the salty soil are climatic factors, weathering of parental rocks, oceans and using salty water for irrigation. In this study, the effect of different salt concentrations [0 control , 75, 150, 225 and 300 mM NaCl] on the germination and early seedling stage of the three safflower Carthamus tinctori- ous L. cultivars Dinçer, Remzibey-05 and Yenice which are registered cultivars of Turkey were investigated. By the experimental study it was reported that safflower cultivars were negatively affected from different NaCl concentrations at early seedling stages and also, some differences at their salt tolerances to compare each others. Thus, it is suggested that safflower is moderately salt tolerant plant and safflower cultivars may be classified as tolerant Yenice , moderately tolerant Dinçer and sensitive Remzibey-05 by evaluating results obtained from both stage.

References

  • [1] K.K. Tanji, Salinity; Environment-Plants-Molecules, Kluwer Academic Publishers Dordrecht, Boston, London, 2002.
  • [2] R. Munns, M. Tester, Mechanisms of Salinity Tolerance, Annu. Rev. Plant Biol., 59 (2008) 651.
  • [3] W. Larcher, Physiological Plant Ecology, Third Edition, Springer, New York, 1995.
  • [4] K. Chartzoulakis, G. Klapaki, Response of two greenhouse pepper hybrids to NaCl salinity during different growth stages, Scientia Horticulturae, 8 (2000) 247.
  • [5] P. Sudhır, S.D.S. Murthy, Effect of salt stress on basic processes of photosynthesis, Photosynthetica, 42 (2004) 481.
  • [6] E. Ekmekçi, M. Apan, T. Kara, Tuzluluğun bitki gelişimi üzerine etkisi, OMÜ Zir. Fak. Dergisi, 20 (2005) 118.
  • [7] M. Ashraf, P.J.C. Harris, Potential biochemical indicators of salinity tolerance in plants, Plant Science, 166 (2004) 3.
  • [8] M. Ashraf, Some important physiological selection criteria for salt tolerance in plants, Flora, 199 (2004) 361.
  • [9] Q.Y. Li, H.B. Niu, J. Yin, M.B. Wang, H.B. Shao, D.Z. Deng, X.X. Chen, J.P. Ren, Y.C. Li, Protective role of exogenous nitric oxide against oxidative-stress induced by salt stress in barley (Hordeum vulgare), Colloid. Surf. B., 65 (2008) 220.
  • [10] P.J. Zapata, M. Serrano, M.T. Pretel, A. Amorós, M.Á. Botella, Changes in ethylene evolution and polyamine profiles of seedlings of nine cultivars of Lactuca sativa L. in response to salt stress during germination, Plant Sci., 164 (2003) 557.
  • [11] M.D. Kaya, G. Okçu, M. Atak, Y. Çıkılı, O. Kolsarıcı, Seed treatments to overcome salt and drought stress during germination in sunflower (Helianthus annuus L.), Europ. J. Agronomy, 24 (2006) 291.
  • [12] M.A. Khan, R. Ansari, B. Gul, W. Li, Dormancy and germination responses of halophyte seeds to the application of ethylene, C. R. Biologies, 332 (2009) 806.
  • [13] P.J. Zapata, M. Serrano, M.T. Pretel, A. Amorós, M.Á. Botella,, Polyamines and ethylene changes during germination of different plant species under salinity, Plant Science, 167 (2004) 781.
  • [14] M.H. Pahlavanı, A.F. Mırlohı, G. Saeıdı, Inheritance of flower color and spininess in safflower (Carthamus tinctorius L.), J. Heredity, 95 (2004) 265.
  • [15] H. Baydar, O.Y. Gökmen, Hybrid seed production in safflower (Carthamus tinctorius L.) following the induction of male sterility by gibberellic acid, Plant Breeding, 122 (2003) 459.
  • [16] S.K. Yau, Winter versus spring sowing of rain-fed safflower in a semi-arid, high-elevation Mediterranean environment, Europ. J. Agronomy, 26 (2007) 249.
  • [17] S. Knight, Safflower: potential & world adaptability, IREC Farmers´ Newsletter, 176 (2007) 34.
  • [18] L. Dajue, H-H. Mündel, Safflower Carthamus tinctorius L., Promoting the conservation and use of underutilized and neglected crops, 7. International Plant Genetic Resources Institute, 1996.
  • [19] B. Coşge, B. Gürbüz, M. Kıralan, Oil content and fatty acid composition of some safflower (Carthamus tinctorius L.) varieties sown in spring and winter, Int. J. Natural Eng. Sci., 1 (2007) 11.
  • [20] E.H. Siddiqi, M. Ashraf, N.A. Akram, Variation in seed germination and seedling growth in some diverse lines of safflower (Carthamus tınctorıus l.) under salt stress, Pak. J. Bot., 39 (2007) 1937.
  • [21] O. Vicente, M. Boscaiu, M.Á. Naranjo, E. Estrelles, J.M. Bellés, P. Soriano, Responses to salt stress in the halophyte Plantago crassifolia (Plantaginaceae),, J. Arid Env., 58 (2004) 463.
  • [22] N. Misra, U.N. Dwivedi, Genotypic differences in salinity tolerance of green gram cultivars, Plant Sci., 166 (2004) 1135.
  • [23] S.R. Ghorashy, N. Sionit, M. Kheradnam, Salt tolerance of safflower varieties (Carthamus tinctorius L.) during germination, Agronomy J., 64 (1972) 256.
  • [24] D.A. Meloni, M.R. Gulotta, C.A. Martínez, Salinity tolerance in Schinopsis quebracho colorado: Seed germination, growth, ion relations and metabolic responses, J. Arid Env., 72 (2008) 1785.
  • [25] Z. Huang, X. Zhang, G. Zheng, Y. Gutterman, Influence of light, temperature, salinity and storage on seed germination of Haloxylon ammodendro, J. Arid Env., 55 (2003) 453.

NaCl’nin İndüklediği Tuz Stresinin Erken Büyüme Evresindeki Aspir Carthamus tinctorius L. Çeşitleri Üzerine Etkisi

Year 2011, Volume: 39 Issue: 1, 61 - 64, 01.01.2011

Abstract

Tuzluluk, kurak ve yarı kurak bölgelerde bitki büyümesi ve gelişimini etkileyen önemli problemlerden birisidir. İklimsel faktörler, ana kayaların ayrışması, okyanuslar ve sulama sularının kullanımı tuzlu toprakların oluşmasının nedenleridir. Bu çalışmada, Türkiye’nin tescilli aspir Carthamus tinctorious L. çeşitlerinin Dinçer, Remizbey-05 ve Yenice çimlenme ve erken fide evresi üzerine farklı tuz konsantrasyonlarının [O kontrol , 75, 150, 225 ve 300 mM NaCI] etkileri incelenmiştir. Bu deneysel çalışma ile aspir çeşitlerinin erken fide evresinde farklı NaCl konsantrasyonlarından olumsuz etkilendiği ve çeşitler birbirleriyle karşılaştırıldıklarında tuz toleranslarında bazı farklılıklar olduğu da gösterilmiştir. Bu nedenle, aspir bitkisinin tuza karşı orta derece toleranslı olduğu ileri sürülebilir ve her iki evreden elde edilen sonuçların değerlendirilmesine göre aspir çeşitleri toleranslı Yenice , orta derece toleranslı Dinçer ve duyarlı Remzibey-05 olarak sınıflandırılabilir

References

  • [1] K.K. Tanji, Salinity; Environment-Plants-Molecules, Kluwer Academic Publishers Dordrecht, Boston, London, 2002.
  • [2] R. Munns, M. Tester, Mechanisms of Salinity Tolerance, Annu. Rev. Plant Biol., 59 (2008) 651.
  • [3] W. Larcher, Physiological Plant Ecology, Third Edition, Springer, New York, 1995.
  • [4] K. Chartzoulakis, G. Klapaki, Response of two greenhouse pepper hybrids to NaCl salinity during different growth stages, Scientia Horticulturae, 8 (2000) 247.
  • [5] P. Sudhır, S.D.S. Murthy, Effect of salt stress on basic processes of photosynthesis, Photosynthetica, 42 (2004) 481.
  • [6] E. Ekmekçi, M. Apan, T. Kara, Tuzluluğun bitki gelişimi üzerine etkisi, OMÜ Zir. Fak. Dergisi, 20 (2005) 118.
  • [7] M. Ashraf, P.J.C. Harris, Potential biochemical indicators of salinity tolerance in plants, Plant Science, 166 (2004) 3.
  • [8] M. Ashraf, Some important physiological selection criteria for salt tolerance in plants, Flora, 199 (2004) 361.
  • [9] Q.Y. Li, H.B. Niu, J. Yin, M.B. Wang, H.B. Shao, D.Z. Deng, X.X. Chen, J.P. Ren, Y.C. Li, Protective role of exogenous nitric oxide against oxidative-stress induced by salt stress in barley (Hordeum vulgare), Colloid. Surf. B., 65 (2008) 220.
  • [10] P.J. Zapata, M. Serrano, M.T. Pretel, A. Amorós, M.Á. Botella, Changes in ethylene evolution and polyamine profiles of seedlings of nine cultivars of Lactuca sativa L. in response to salt stress during germination, Plant Sci., 164 (2003) 557.
  • [11] M.D. Kaya, G. Okçu, M. Atak, Y. Çıkılı, O. Kolsarıcı, Seed treatments to overcome salt and drought stress during germination in sunflower (Helianthus annuus L.), Europ. J. Agronomy, 24 (2006) 291.
  • [12] M.A. Khan, R. Ansari, B. Gul, W. Li, Dormancy and germination responses of halophyte seeds to the application of ethylene, C. R. Biologies, 332 (2009) 806.
  • [13] P.J. Zapata, M. Serrano, M.T. Pretel, A. Amorós, M.Á. Botella,, Polyamines and ethylene changes during germination of different plant species under salinity, Plant Science, 167 (2004) 781.
  • [14] M.H. Pahlavanı, A.F. Mırlohı, G. Saeıdı, Inheritance of flower color and spininess in safflower (Carthamus tinctorius L.), J. Heredity, 95 (2004) 265.
  • [15] H. Baydar, O.Y. Gökmen, Hybrid seed production in safflower (Carthamus tinctorius L.) following the induction of male sterility by gibberellic acid, Plant Breeding, 122 (2003) 459.
  • [16] S.K. Yau, Winter versus spring sowing of rain-fed safflower in a semi-arid, high-elevation Mediterranean environment, Europ. J. Agronomy, 26 (2007) 249.
  • [17] S. Knight, Safflower: potential & world adaptability, IREC Farmers´ Newsletter, 176 (2007) 34.
  • [18] L. Dajue, H-H. Mündel, Safflower Carthamus tinctorius L., Promoting the conservation and use of underutilized and neglected crops, 7. International Plant Genetic Resources Institute, 1996.
  • [19] B. Coşge, B. Gürbüz, M. Kıralan, Oil content and fatty acid composition of some safflower (Carthamus tinctorius L.) varieties sown in spring and winter, Int. J. Natural Eng. Sci., 1 (2007) 11.
  • [20] E.H. Siddiqi, M. Ashraf, N.A. Akram, Variation in seed germination and seedling growth in some diverse lines of safflower (Carthamus tınctorıus l.) under salt stress, Pak. J. Bot., 39 (2007) 1937.
  • [21] O. Vicente, M. Boscaiu, M.Á. Naranjo, E. Estrelles, J.M. Bellés, P. Soriano, Responses to salt stress in the halophyte Plantago crassifolia (Plantaginaceae),, J. Arid Env., 58 (2004) 463.
  • [22] N. Misra, U.N. Dwivedi, Genotypic differences in salinity tolerance of green gram cultivars, Plant Sci., 166 (2004) 1135.
  • [23] S.R. Ghorashy, N. Sionit, M. Kheradnam, Salt tolerance of safflower varieties (Carthamus tinctorius L.) during germination, Agronomy J., 64 (1972) 256.
  • [24] D.A. Meloni, M.R. Gulotta, C.A. Martínez, Salinity tolerance in Schinopsis quebracho colorado: Seed germination, growth, ion relations and metabolic responses, J. Arid Env., 72 (2008) 1785.
  • [25] Z. Huang, X. Zhang, G. Zheng, Y. Gutterman, Influence of light, temperature, salinity and storage on seed germination of Haloxylon ammodendro, J. Arid Env., 55 (2003) 453.
There are 25 citations in total.

Details

Primary Language English
Journal Section Research Article
Authors

Şeküre Çulha This is me

Hüsnü Çakırlar This is me

Publication Date January 1, 2011
Published in Issue Year 2011 Volume: 39 Issue: 1

Cite

APA Çulha, Ş., & Çakırlar, H. (2011). Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​. Hacettepe Journal of Biology and Chemistry, 39(1), 61-64.
AMA Çulha Ş, Çakırlar H. Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​. HJBC. January 2011;39(1):61-64.
Chicago Çulha, Şeküre, and Hüsnü Çakırlar. “Effect of Salt Stress Induced by NaCl on Safflower Carthamus Tinctorius L. Cultivars at Early Seedling Stages ​”. Hacettepe Journal of Biology and Chemistry 39, no. 1 (January 2011): 61-64.
EndNote Çulha Ş, Çakırlar H (January 1, 2011) Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​. Hacettepe Journal of Biology and Chemistry 39 1 61–64.
IEEE Ş. Çulha and H. Çakırlar, “Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​”, HJBC, vol. 39, no. 1, pp. 61–64, 2011.
ISNAD Çulha, Şeküre - Çakırlar, Hüsnü. “Effect of Salt Stress Induced by NaCl on Safflower Carthamus Tinctorius L. Cultivars at Early Seedling Stages ​”. Hacettepe Journal of Biology and Chemistry 39/1 (January 2011), 61-64.
JAMA Çulha Ş, Çakırlar H. Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​. HJBC. 2011;39:61–64.
MLA Çulha, Şeküre and Hüsnü Çakırlar. “Effect of Salt Stress Induced by NaCl on Safflower Carthamus Tinctorius L. Cultivars at Early Seedling Stages ​”. Hacettepe Journal of Biology and Chemistry, vol. 39, no. 1, 2011, pp. 61-64.
Vancouver Çulha Ş, Çakırlar H. Effect of Salt Stress Induced by NaCl on Safflower Carthamus tinctorius L. Cultivars at Early Seedling Stages ​. HJBC. 2011;39(1):61-4.

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