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Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress

Yıl 2013, Cilt: 41 Sayı: 4, 331 - 339, 01.11.2013

Öz

This study investigated the effects of polyamines, which were applied exogenously in growth period of sunflo- wer Helianthus annuus L. cv. Santafe plants grown, under controlled conditions, on leaf pairs and total leaf surface area. Salt was used in 3 different concentrations 50, 100 and 200 mM NaCl and also, spermine, spermidine and putrescine was applied in 3 levels 0.01, 1 and 2 mM . The leaf and stems of sunflower plants grown in salt culture solutions in Hoagland and at various concentrations for 45 days were sprayed with polyamine solution every other 3 days and 8 times in total as from the 15th day.

Kaynakça

  • A.W. Galston, R. Kaur-Sawhney, Polyamines in Plant Physiology. Plant Physiol., 94 (1990) 406.
  • R.T. Besford, C.M. Richardson, J.L. Campos and A.F. Tiburcio, Effect of polyamines on stabilization of molecular complexes of thylakoid membranes of osmotically stressed oat leaves. Planta, 189 (1993) 201.
  • F. Mutlu and S. Bozcuk, Relationship between salt stress and the levels of free and bound polyamines in sunflower plants. Plant Biosyst., 141 (2007) 31.
  • J. Legocka and E.N. Sobieszczuk, Sorbitol and NaCl stresses affect free, microsome-associated and thylakoid-associated polyamine content in Zea mays and Phaseolus vulgaris. Acta Physiol. Plant., 34 (2012) 1145.
  • F.J. Turano and G.F. Kramer, Effect of metabolic intermediates on the accumulation of polyamines in detected soybean leaves. Phytochemistry, 34 (1993) 959.
  • R.K. Basra, A.S. Basra, C.P. Malik and I.S. Grover, Are polyamines involved in the heat-shock protection of mung bean seedlings? Bot. Bull. Acad. Sin., 38 (1997) 165.
  • J. Yang, J. Zhang, K. Liu, Z. Wang and L. Liu, Involvement of polyamines in the drought resistance of rice. J. Exp. Bot., 58 (1997) 1545.
  • Y.Y. Chai, L. Jiang, L. Shi, T.S. Shi and W.B. Gu, Effects of exogenous spermine on sweet sorghum during germination under salinity. Biol. Plantarum, 54 (2010) 145.
  • H. Nayyar, S. Kaur, S.S. Kumar, K.J. Singh and K.K. Dhir, Involvement of polyamines in the contrasting sensitivity of chickpea (Cicer arietinum L.) and soybean (Glycine max) to water deficit stress. Bot. Bull. Acad. Sin.,46 (2005) 333.
  • E. Amri, M. Mirzaei, M. Moradi and K. Zare, The effects of spermidine and putrescine polyamines on growth of pomegranate (Punica granatum L. cv ‘Rabbab’) in salinity circumstance. Int. J. Plant Physiol. Biochem., 3 (2011) 43.
  • S. Lutts, J.M. Kinet and J. Bouharmont, NaCl- induced senescence in leaves of rice (Oryza sativaL.) cultivars differing in salinity resistance. Ann. Bot., 78 (1996) 389.
  • W.M.J. Achten, W.H. Maes, B. Reubens, E. Mathijs, V.P. Singh, L. Verchot and B. Muys, Biomass production and allocation in Jatropha curcas L. seedlings under different levels of drought stress. Biomass Bioenerg., 34 (2010) 667.
  • R.H. Ellis, E.H. Roberts, R.J. Summerfield and J.P. Cooper, Environmental control of flowering in barley Hordeum vulgareL. II. Rate of development as a function of temperature and photoperiod and its modification by low temperature vernelization. Ann. Bot., 62 (1988) 145.
  • M. Flaudung and E. Ritter, Plant leaf area measurements by personal computers. J. Agron. Crop Sci., 166 (1991) 69.
  • H.S. Aldesuquy, M.A. Abbas, S.A. Abo- Hamed, A.H. Elhakem and S.S. Alsokari, Role of glycine betaine and salicylic acid in improving growthvigour and physiological aspects of droughted wheat cultivars.J. Stress Physiol. Biochem., 8 (2012) 72.
  • G.R. Cramer, G.J. Alberico and C. Schmidt, Leaf expansion limits dry matter accumulation of salt- stressed maize. Aust. J. Plant Physiol., 21 (1994) 663.
  • M.A. Babu, D. Singh and K.M. Gothandam, The effect of salinity on growth, hormones and mineral elements in leaf and fruit of tomato cultivar PKM1. J. Anim. Plant Sci., 22 (2012) 159.
  • J.S. Bayuelo-Jimenez, D.G. Debouck and J.P. Lynch, Growth, gas exchange, water relations, and ion composition of Phaseolus species grown under saline conditions. Field Crop. Res., 80 (2003) 207.
  • J.A. Franco, J.A. Fernandez, S. Banon and A. Gonzalez, Relationship between the effects of salinity on seedling leaf area and fruit yield of six muskmelon cultivars. Hortscience, 32 (1997) 642.
  • R. Krishnamurthy, Amelioration of salinity effect in salt tolerant rice (Oryza sativa L.) by foliar application of putrescine. Plant Cell Physiol., 32 (1991) 699.
  • A. Ndayiragije and S. Lutts, Long term exogenous putrescine application improves grain yield of a salt- sensitive rice cultivar exposed to NaCl. Plant Soil, 291 (2007) 225.
  • A.A. Amin, F.A.E. Gharib, M. El-Awadi M. and E.M. Rashad, Physiological response of onion plants to foliar application of putrescine and glutamine. Sci. Hortic., 129 (2011) 353.
  • S. Suleiman, C. Wilson and C.M. Grieve, Effect of salinity and exogenously applied polyamines on growth and ion relations in spinach. J. Plant Nutr., 25 (2002) 2705.
  • A. Ndayiragije and S. Lutts, Do exogenous polyamines have an impact on the response of a salt-sensitive rice cultivar to NaCl. J. Plant Physiol., 163 (2006) 506.
  • M.A.K. Shaddad, M. Hamdia Abd El-Samad and H.T. Mohammed, Interactive effects of drought stress and phytohormones or polyamines on growth and yield of two M (Zea maize L.) genotypes. Am. J. Plant Sci., 2 (2011) 790.
  • S. Shu, L.Y. Yuan, S.G. Guo, J. Sun and C.J. Liu, Effects of exogenous spermidine on photosynthesis, xanthophyll cycle and endogenous polyamines in cucumber seedlings exposed to salinity. Afr. J. Biotechnol., 11 (2012) 6064.
  • R.H. Zhang, J. Li, S.R. Guo and T. Tezuka, Effects putrescine of characteristics and chlorophyll fluorescence of NaCl- stressed cucumber seedlings. Photosynth. Res., 100 (2009) 155. on gas-exchange

Tuzluluk stresi altında büyütülen ayçiçeği bitkilerine dışsal uygulanan poliaminlerin yaprak alanına etkisi

Yıl 2013, Cilt: 41 Sayı: 4, 331 - 339, 01.11.2013

Öz

B u çalışmada kontrollu iklim koşullarında büyütülen ayçiçeği Helianthus annuus L. cv. Santafe bitkilerinin büyüme döneminde uygulanan dışssal poliaminlerin yaprak çiftleri ve total yaprak yüzey alanı üzerine etkileri çalışılmıştır. Çalışmada 3 farklı tuz derişimi 50, 100 ve 200 mM ile üç farklı düzeyde 0.01, 1 ve 2 mM putresin, spermin ve spermidin kullanılmıştır. Hoagland ve değişik konsantrasyonlardaki tuzlu kültür çözeltilerinde 45 gün büyütülen ayçiçeği bitkilerinin yaprak ve gövdelerine 15. günden itibaren 3`er gün arayla toplam 8 kez poliamin çözeltisi püskürtülmüştür.Total yaprak alanı ve yaprak çifti alanları artan tuz derişimine bağlı olarak azalmıştır. Bitkilere püskürtülen Spermin, Spermidin ve Putresin kültür ortamına eklenen tuz ve poliamin düzeyine bağlı olmak üzere sadece belirli ve sınırlı koşullarda olumlu etki gösterebilmiştir. Tuzun yaprak alanı üzerinde yapmış olduğu engelleyici etkiyi kaldırabilmek açısından en etkili poliamin Putresin olarak tespit edilmiştir

Kaynakça

  • A.W. Galston, R. Kaur-Sawhney, Polyamines in Plant Physiology. Plant Physiol., 94 (1990) 406.
  • R.T. Besford, C.M. Richardson, J.L. Campos and A.F. Tiburcio, Effect of polyamines on stabilization of molecular complexes of thylakoid membranes of osmotically stressed oat leaves. Planta, 189 (1993) 201.
  • F. Mutlu and S. Bozcuk, Relationship between salt stress and the levels of free and bound polyamines in sunflower plants. Plant Biosyst., 141 (2007) 31.
  • J. Legocka and E.N. Sobieszczuk, Sorbitol and NaCl stresses affect free, microsome-associated and thylakoid-associated polyamine content in Zea mays and Phaseolus vulgaris. Acta Physiol. Plant., 34 (2012) 1145.
  • F.J. Turano and G.F. Kramer, Effect of metabolic intermediates on the accumulation of polyamines in detected soybean leaves. Phytochemistry, 34 (1993) 959.
  • R.K. Basra, A.S. Basra, C.P. Malik and I.S. Grover, Are polyamines involved in the heat-shock protection of mung bean seedlings? Bot. Bull. Acad. Sin., 38 (1997) 165.
  • J. Yang, J. Zhang, K. Liu, Z. Wang and L. Liu, Involvement of polyamines in the drought resistance of rice. J. Exp. Bot., 58 (1997) 1545.
  • Y.Y. Chai, L. Jiang, L. Shi, T.S. Shi and W.B. Gu, Effects of exogenous spermine on sweet sorghum during germination under salinity. Biol. Plantarum, 54 (2010) 145.
  • H. Nayyar, S. Kaur, S.S. Kumar, K.J. Singh and K.K. Dhir, Involvement of polyamines in the contrasting sensitivity of chickpea (Cicer arietinum L.) and soybean (Glycine max) to water deficit stress. Bot. Bull. Acad. Sin.,46 (2005) 333.
  • E. Amri, M. Mirzaei, M. Moradi and K. Zare, The effects of spermidine and putrescine polyamines on growth of pomegranate (Punica granatum L. cv ‘Rabbab’) in salinity circumstance. Int. J. Plant Physiol. Biochem., 3 (2011) 43.
  • S. Lutts, J.M. Kinet and J. Bouharmont, NaCl- induced senescence in leaves of rice (Oryza sativaL.) cultivars differing in salinity resistance. Ann. Bot., 78 (1996) 389.
  • W.M.J. Achten, W.H. Maes, B. Reubens, E. Mathijs, V.P. Singh, L. Verchot and B. Muys, Biomass production and allocation in Jatropha curcas L. seedlings under different levels of drought stress. Biomass Bioenerg., 34 (2010) 667.
  • R.H. Ellis, E.H. Roberts, R.J. Summerfield and J.P. Cooper, Environmental control of flowering in barley Hordeum vulgareL. II. Rate of development as a function of temperature and photoperiod and its modification by low temperature vernelization. Ann. Bot., 62 (1988) 145.
  • M. Flaudung and E. Ritter, Plant leaf area measurements by personal computers. J. Agron. Crop Sci., 166 (1991) 69.
  • H.S. Aldesuquy, M.A. Abbas, S.A. Abo- Hamed, A.H. Elhakem and S.S. Alsokari, Role of glycine betaine and salicylic acid in improving growthvigour and physiological aspects of droughted wheat cultivars.J. Stress Physiol. Biochem., 8 (2012) 72.
  • G.R. Cramer, G.J. Alberico and C. Schmidt, Leaf expansion limits dry matter accumulation of salt- stressed maize. Aust. J. Plant Physiol., 21 (1994) 663.
  • M.A. Babu, D. Singh and K.M. Gothandam, The effect of salinity on growth, hormones and mineral elements in leaf and fruit of tomato cultivar PKM1. J. Anim. Plant Sci., 22 (2012) 159.
  • J.S. Bayuelo-Jimenez, D.G. Debouck and J.P. Lynch, Growth, gas exchange, water relations, and ion composition of Phaseolus species grown under saline conditions. Field Crop. Res., 80 (2003) 207.
  • J.A. Franco, J.A. Fernandez, S. Banon and A. Gonzalez, Relationship between the effects of salinity on seedling leaf area and fruit yield of six muskmelon cultivars. Hortscience, 32 (1997) 642.
  • R. Krishnamurthy, Amelioration of salinity effect in salt tolerant rice (Oryza sativa L.) by foliar application of putrescine. Plant Cell Physiol., 32 (1991) 699.
  • A. Ndayiragije and S. Lutts, Long term exogenous putrescine application improves grain yield of a salt- sensitive rice cultivar exposed to NaCl. Plant Soil, 291 (2007) 225.
  • A.A. Amin, F.A.E. Gharib, M. El-Awadi M. and E.M. Rashad, Physiological response of onion plants to foliar application of putrescine and glutamine. Sci. Hortic., 129 (2011) 353.
  • S. Suleiman, C. Wilson and C.M. Grieve, Effect of salinity and exogenously applied polyamines on growth and ion relations in spinach. J. Plant Nutr., 25 (2002) 2705.
  • A. Ndayiragije and S. Lutts, Do exogenous polyamines have an impact on the response of a salt-sensitive rice cultivar to NaCl. J. Plant Physiol., 163 (2006) 506.
  • M.A.K. Shaddad, M. Hamdia Abd El-Samad and H.T. Mohammed, Interactive effects of drought stress and phytohormones or polyamines on growth and yield of two M (Zea maize L.) genotypes. Am. J. Plant Sci., 2 (2011) 790.
  • S. Shu, L.Y. Yuan, S.G. Guo, J. Sun and C.J. Liu, Effects of exogenous spermidine on photosynthesis, xanthophyll cycle and endogenous polyamines in cucumber seedlings exposed to salinity. Afr. J. Biotechnol., 11 (2012) 6064.
  • R.H. Zhang, J. Li, S.R. Guo and T. Tezuka, Effects putrescine of characteristics and chlorophyll fluorescence of NaCl- stressed cucumber seedlings. Photosynth. Res., 100 (2009) 155. on gas-exchange
Toplam 27 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Fatma Mutlu Bu kişi benim

Suna Bozcuk Bu kişi benim

Yayımlanma Tarihi 1 Kasım 2013
Yayımlandığı Sayı Yıl 2013 Cilt: 41 Sayı: 4

Kaynak Göster

APA Mutlu, F., & Bozcuk, S. (2013). Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress. Hacettepe Journal of Biology and Chemistry, 41(4), 331-339.
AMA Mutlu F, Bozcuk S. Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress. HJBC. Kasım 2013;41(4):331-339.
Chicago Mutlu, Fatma, ve Suna Bozcuk. “Effects of Exogenous Polyamines on Leaf Area of Sunflower Grown in Salinity Stress”. Hacettepe Journal of Biology and Chemistry 41, sy. 4 (Kasım 2013): 331-39.
EndNote Mutlu F, Bozcuk S (01 Kasım 2013) Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress. Hacettepe Journal of Biology and Chemistry 41 4 331–339.
IEEE F. Mutlu ve S. Bozcuk, “Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress”, HJBC, c. 41, sy. 4, ss. 331–339, 2013.
ISNAD Mutlu, Fatma - Bozcuk, Suna. “Effects of Exogenous Polyamines on Leaf Area of Sunflower Grown in Salinity Stress”. Hacettepe Journal of Biology and Chemistry 41/4 (Kasım 2013), 331-339.
JAMA Mutlu F, Bozcuk S. Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress. HJBC. 2013;41:331–339.
MLA Mutlu, Fatma ve Suna Bozcuk. “Effects of Exogenous Polyamines on Leaf Area of Sunflower Grown in Salinity Stress”. Hacettepe Journal of Biology and Chemistry, c. 41, sy. 4, 2013, ss. 331-9.
Vancouver Mutlu F, Bozcuk S. Effects of exogenous polyamines on leaf area of sunflower grown in salinity stress. HJBC. 2013;41(4):331-9.

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