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Dikegulac-Sodium Effect on Micropropagation and Biochemical Parameters in the Cherry Rootstocks CAB-6P and Gisela 6

Yıl 2014, Cilt: 1 Sayı: Özel Sayı-2, 1713 - 1726, 01.03.2014

Öz

The effects of dikegulac-sodium (DS) alone and in combination with benzyladenine (BA) οn the morphogenetic and biochemical responses in the cherry rootstocks CAB-6P (Prunus cerasus L.) and Gisela 6 (Prunus cerasus x Prunus canescens) were investigated. In the CAB-6P rootstock, DS did not promote shoot proliferation whereas its application at 40, 120 and 150 μΜ suppressed shoot length. In the Gisela 6 rootstock, the number of shoots per explant and shoot proliferation rate were greater with 80 μΜ DS. Furthermore, DS significantly stimulated rhizogenesis in both rootstocks. Leaf chlorophyll concentration of CAB-6P microshoots was maximum in the control treatment, whereas in the Gisela 6 rootstock, 40 μΜ DS had a positive effect on it. In the CAB-6P explants, DS decreased leaf (20-150 μΜ) and root (80-150 μΜ) carbohydrate concentration as well as proline concentration in roots (40-150 μΜ). All DS concentrations, especially 80 μΜ increased leaf carbohydrate concentration of the Gisela 6 explants. Carbohydrate and proline concentrations in roots were 2.5 times greater with 80 μΜ DS, compared to the control. In the CAB-6P rootstock, a synergistic effect was found between BA and 250 μΜ DS regarding shoot fresh weight (FW). Best rooting results in terms of root number per rooted explant and rooting percentage were obtained with 500 μΜ DS. In the Gisela 6 rootstock, 250 μΜ DS promoted the positive effect of 4.4 μΜ BA concerning shoot number per explant. DS seems to be a promising growth regulator in micropropagation of the cherry rootstocks CAB-6P and Gisela 6

Kaynakça

  • Antonopoulou, C., 2009. Effect of different factors in vitrification, shoot propagation and rooting of olive (Olea europaea L.) in vitro. PhD Thesis, Aristotle University of Thessaloniki, Thessaloniki, Greece. (in Greek)
  • Arzee, T., Langenauer, H., Gressel, J., 1977. Effects of dikegulac, a new growth regulator, development of three Compositae. Bot. Gaz. 138: 18-28. growth and
  • Bekheta, M.A., El-Ghourab, A.H., Mahgoub, M.H., 2003. Influence of stigmasterol and uniconazole on growth, endogenous hormones, chemical composition and radical scavenging activity of Thyme (Thymus syrpyllum L.). Egypt J. Res. NRC 1: 523-545.
  • Bhattacharjee, A., Gupta, K., 1981. Effect of dikegulac on growth and correlative biochemical changes in leaves of sunflower (Helianthus annuus L. cv. EC 68414). Biochemie und Physiologie der Pflanzen 176: 305-313.
  • Bhattacharjee, A., Jana, S., 1990. Regulatory actions dimethylhydrazine and Na-dikegulac on seed germination, early seedling growth and metabolism of a sunflower cultivar. Environ. Ecol. 8: 260-266. acid,
  • Bhattacharjee, A., Kanp, U.K., Chakrabarti, D., Pati, C.K., 2006. Technique for storage longevity of mung bean and sunflower seeds using sodium dikegulac and Eucalyptus oil. Bangladesh J. Bot. 35: 55- 61.
  • Biswas, A.K., Begam, H.H., Choudhuri, M.A., 1989. Effect of dikegulac sodium on water stress-induced changes in Vigna sinensis (L.) Walp. Biochemie und Physiologie der Pflanzen 184: 285-292.
  • Bocion, P.F., de Silva, W.H., 1977. Some effects of dikegulac on the physiology of whole plants and tissues: Interactions with plant hormones. Proc. Intl. Conf. on Plant Growth Switzerland, pp. 198-198. Lausanne,
  • Borkowska, B., 1983. Micropropagation of sour cherry cultivar-Schattenmorelle. Fruit Sci. Rep. 10: 59-66.
  • Choudhury, S., Gupta, K., 1998. Effect of dikegulac on growth and alkaloid production in Catharanthus roseus (L.) G. Don. (Pink flowered). J. Plant Biol. 41: 149-154.
  • Cline, M.G., 1997. Concepts and terminology of apical dominance. Am. J. Bot. 84: 1064- 1069. Dalzotto, A., Docampo, D.M., 1997. Micropropagation of rootstock from the Marianna-2624 plum (Prunus cerasifera x Prunus munsoniana) and the pixy plum (P. conditions. Phyton – Int. J. Exp. Bot. 60: 127-135. controlled
  • Dar, H.A., Singh, S.R., Sundouri, A.S., Sharma, Srivastava, M.K., Micropropagation rootstocks by employing forced and unforced explants. Indian J. Hort. 67: 9- 14. 2010. cherry of
  • Das, S., Ghosh, S., Basu, P.S., 2006. Effect of dikegulac on flowering, fruit setting and development of Cucumis sativus L. Indian J. Plant Physiol. 11: 119-122.
  • Davies, P.J., 2004. The plant hormones: Their nature, occurrence and function, In: Plant Hormones Biosynthesis, Signal Transduction, Action . (ed) Davies, P.J., MA: Dordrecht, Norwell, 750. Publishers,
  • Dimassi-Theriou, K., Therios, I., 2006. General Pomology – Part A: Propagation and Rootstocks of Fruit Trees. Gartaganis, Thessaloniki. (In Greek)
  • El-Kady, F.M.A., 2002. Some studies on the effect of the growth regulator uniconazol on the growth, some metabolic changes, level of endogenous hormones and productivity of wheat plants. Thesis, Bot. Dept. Fac. Sci., Al-Azhar University, Cairo, Egypt.
  • Fletcher, R.A., Gilley, A., Sankhla, N., Davis, T.D., 2000. Triazoles regulators and stress protectants. In: Horticultural Review. (ed) Vol 24. Janick, J., John Wiley and Sons, New York, 55- 138. growth Hammatt, N., Grant, N.J., 1996. Micropropagation of mature British wild cherry. Plant Cell Tiss. Org. Cult. 47: 103- 110.
  • Hare, P., Cress, W.A., Van Staden, J., 1998. Dissecting the roles of accumulation during stress. Plant Cell Environ. 21: 535-553. osmolyte
  • Haq, I.U., Soomro, F., Parveen, N., Dahot, M.U., Mirbahar, A.A., 2011. Certain growth related attributes of micropropagated banana under different salinity levels. Pak. J. Bot. 43: 1655-1658.
  • Ιbrahim, M.E., Bekheta, M.A., El-Moursi, A., Gaafar, N.A., 2007. Improvement of growth and seed yield quality of Vicia faba L. plants as affected by application of some bioregulators. Aust. J. Basic Appl. Sci. 1: 657-666.
  • Kanp, U.K., Das, R.K., Bhattacharjee, A., 2009. Enhancement of storage potential of seeds and field performance of pea and horse gram by growth retardants. Legume Res. 32: 7-12.
  • Khan, M.A., Gul, B., Weber, D.J., 2000. Germination responses of Salicornia rubra to temperature and salinity. J. Arid Environ. 45: 207-214.
  • Litwińczuk, W., Prokop, A., 2010. The usefulness of dikegulac in propagation of highbush blueberry (Vaccinium corymbosum L.) ‘Herbert’. J. Fruit Ornam. Plant Res. 18: 85-92.
  • Mendoza-de Gyves, E., Mira, F.R., Ruiu, F., Rugini, E., 2008. Stimulation of node and lateral micropropagation of olive (Olea europea L.) by using dikegulac. Plant Cell Tiss. Org. Cult. 92: 233-238. in
  • Murashige, T., Skoog, F., 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant. 15: 473-497.
  • Pech, J., Latche, A., Bouzayen, M., 2004. Ethylene Hormones Transduction, Action . (ed) Davies, P.J., MA: Dordrecht, Norwell, 750. In: Plant Signal Biosynthesis, Kluwer Academic Publishers,
  • Plummer, D.T., 1987. Practical Biochemistry. 3rd edn. NY: McGraw-Hill Book Company, New York, 179-180
  • Pruski, K.W., Lewis, T., Astatkie, T., Nowak, J., 2000. Micropropagation of chokecherry and pincherry cultivars. Plant Cell Tiss. Org. Cult. 63: 93-100.
  • Puglisi, S.E., 2002. Use of plant growth regulators to enhance branching of Clematis spp. Thesis, Virginia Polytechnic Institute Blacksburg, Virginia, USA. University,
  • Sansberro, P., Mroginski, L., Bottini, R., 2006. Stimulation of lateral branch formation on Ilex paraguariensis (Aquifoliaceae) seedlings. Aust. J. Exp. Agric. 46: 707- 710.
  • Schilling, G., 1985. Neue Ergebnisse Zum Mechanismus der N-Wirkung in der Pflanze, "Mikronanrstoff-Forschung", Symposium Institute Rosa enhance micropropagation. Biol. Plant. 43: 279- 281. L.
  • Snir, I., 1983. A micropropagation system for sour cherry. Sci. Hortic. 19: 85-90.
  • Soad, M.M., Ibrahim, Lobna, I., Taha, S., Farahat, M.M., 2010. Vegetative growth and chemical constituents of croton plants as affected by foliar application of benzyl adenine and gibberellic acid. J. Am. Sci. 6: 126-130.
  • Tang, H., Ren, Z., Reustle, G., Krczal, G., 2002. Plant regeneration from leaves of sweet and sour cherry cultivars. Sci. Hortic. 93: 235-244.
  • Thetford, M., Berry, J.B., 2000. Response of five woody landscape plants to primo and pruning. J. Environ. Hort. 18: 128-132.
  • Troll, W., Lindsley, J., 1955. A photometric method for determination of proline. J. Biol. Chem. 215: 655-660.
  • Watanabe, S., Katsumi, K., Yuji, I., Sasaki, S., 2001. Effects of saline and osmotic stress on proline and sugar accumulation in Populus euphratica in vitro. Plant Cell Tiss. Org. Cult. 63: 199-206.
  • Whiting, P.A., 2007. Commercial production of Christia subcordata by establishing cultural practices and by applying plant growth regulators. MSc, B.S.C.E. Florida A & M University 1995, B.S.A. University of Georgia 2006, Athens Georgia 2007.
  • Wintermans, J.F.G.M., De Mots, A., 1965. Spectrophotometric characteristics of chlorophylls a pheophytins Biophys. Acta 109: 448-453. and their in ethanol. Biochim.

Dikegulac-Sodium Effect on Micropropagation and Biochemical Parameters in the Cherry Rootstocks CAB-6P and Gisela 6

Yıl 2014, Cilt: 1 Sayı: Özel Sayı-2, 1713 - 1726, 01.03.2014

Öz

Kaynakça

  • Antonopoulou, C., 2009. Effect of different factors in vitrification, shoot propagation and rooting of olive (Olea europaea L.) in vitro. PhD Thesis, Aristotle University of Thessaloniki, Thessaloniki, Greece. (in Greek)
  • Arzee, T., Langenauer, H., Gressel, J., 1977. Effects of dikegulac, a new growth regulator, development of three Compositae. Bot. Gaz. 138: 18-28. growth and
  • Bekheta, M.A., El-Ghourab, A.H., Mahgoub, M.H., 2003. Influence of stigmasterol and uniconazole on growth, endogenous hormones, chemical composition and radical scavenging activity of Thyme (Thymus syrpyllum L.). Egypt J. Res. NRC 1: 523-545.
  • Bhattacharjee, A., Gupta, K., 1981. Effect of dikegulac on growth and correlative biochemical changes in leaves of sunflower (Helianthus annuus L. cv. EC 68414). Biochemie und Physiologie der Pflanzen 176: 305-313.
  • Bhattacharjee, A., Jana, S., 1990. Regulatory actions dimethylhydrazine and Na-dikegulac on seed germination, early seedling growth and metabolism of a sunflower cultivar. Environ. Ecol. 8: 260-266. acid,
  • Bhattacharjee, A., Kanp, U.K., Chakrabarti, D., Pati, C.K., 2006. Technique for storage longevity of mung bean and sunflower seeds using sodium dikegulac and Eucalyptus oil. Bangladesh J. Bot. 35: 55- 61.
  • Biswas, A.K., Begam, H.H., Choudhuri, M.A., 1989. Effect of dikegulac sodium on water stress-induced changes in Vigna sinensis (L.) Walp. Biochemie und Physiologie der Pflanzen 184: 285-292.
  • Bocion, P.F., de Silva, W.H., 1977. Some effects of dikegulac on the physiology of whole plants and tissues: Interactions with plant hormones. Proc. Intl. Conf. on Plant Growth Switzerland, pp. 198-198. Lausanne,
  • Borkowska, B., 1983. Micropropagation of sour cherry cultivar-Schattenmorelle. Fruit Sci. Rep. 10: 59-66.
  • Choudhury, S., Gupta, K., 1998. Effect of dikegulac on growth and alkaloid production in Catharanthus roseus (L.) G. Don. (Pink flowered). J. Plant Biol. 41: 149-154.
  • Cline, M.G., 1997. Concepts and terminology of apical dominance. Am. J. Bot. 84: 1064- 1069. Dalzotto, A., Docampo, D.M., 1997. Micropropagation of rootstock from the Marianna-2624 plum (Prunus cerasifera x Prunus munsoniana) and the pixy plum (P. conditions. Phyton – Int. J. Exp. Bot. 60: 127-135. controlled
  • Dar, H.A., Singh, S.R., Sundouri, A.S., Sharma, Srivastava, M.K., Micropropagation rootstocks by employing forced and unforced explants. Indian J. Hort. 67: 9- 14. 2010. cherry of
  • Das, S., Ghosh, S., Basu, P.S., 2006. Effect of dikegulac on flowering, fruit setting and development of Cucumis sativus L. Indian J. Plant Physiol. 11: 119-122.
  • Davies, P.J., 2004. The plant hormones: Their nature, occurrence and function, In: Plant Hormones Biosynthesis, Signal Transduction, Action . (ed) Davies, P.J., MA: Dordrecht, Norwell, 750. Publishers,
  • Dimassi-Theriou, K., Therios, I., 2006. General Pomology – Part A: Propagation and Rootstocks of Fruit Trees. Gartaganis, Thessaloniki. (In Greek)
  • El-Kady, F.M.A., 2002. Some studies on the effect of the growth regulator uniconazol on the growth, some metabolic changes, level of endogenous hormones and productivity of wheat plants. Thesis, Bot. Dept. Fac. Sci., Al-Azhar University, Cairo, Egypt.
  • Fletcher, R.A., Gilley, A., Sankhla, N., Davis, T.D., 2000. Triazoles regulators and stress protectants. In: Horticultural Review. (ed) Vol 24. Janick, J., John Wiley and Sons, New York, 55- 138. growth Hammatt, N., Grant, N.J., 1996. Micropropagation of mature British wild cherry. Plant Cell Tiss. Org. Cult. 47: 103- 110.
  • Hare, P., Cress, W.A., Van Staden, J., 1998. Dissecting the roles of accumulation during stress. Plant Cell Environ. 21: 535-553. osmolyte
  • Haq, I.U., Soomro, F., Parveen, N., Dahot, M.U., Mirbahar, A.A., 2011. Certain growth related attributes of micropropagated banana under different salinity levels. Pak. J. Bot. 43: 1655-1658.
  • Ιbrahim, M.E., Bekheta, M.A., El-Moursi, A., Gaafar, N.A., 2007. Improvement of growth and seed yield quality of Vicia faba L. plants as affected by application of some bioregulators. Aust. J. Basic Appl. Sci. 1: 657-666.
  • Kanp, U.K., Das, R.K., Bhattacharjee, A., 2009. Enhancement of storage potential of seeds and field performance of pea and horse gram by growth retardants. Legume Res. 32: 7-12.
  • Khan, M.A., Gul, B., Weber, D.J., 2000. Germination responses of Salicornia rubra to temperature and salinity. J. Arid Environ. 45: 207-214.
  • Litwińczuk, W., Prokop, A., 2010. The usefulness of dikegulac in propagation of highbush blueberry (Vaccinium corymbosum L.) ‘Herbert’. J. Fruit Ornam. Plant Res. 18: 85-92.
  • Mendoza-de Gyves, E., Mira, F.R., Ruiu, F., Rugini, E., 2008. Stimulation of node and lateral micropropagation of olive (Olea europea L.) by using dikegulac. Plant Cell Tiss. Org. Cult. 92: 233-238. in
  • Murashige, T., Skoog, F., 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant. 15: 473-497.
  • Pech, J., Latche, A., Bouzayen, M., 2004. Ethylene Hormones Transduction, Action . (ed) Davies, P.J., MA: Dordrecht, Norwell, 750. In: Plant Signal Biosynthesis, Kluwer Academic Publishers,
  • Plummer, D.T., 1987. Practical Biochemistry. 3rd edn. NY: McGraw-Hill Book Company, New York, 179-180
  • Pruski, K.W., Lewis, T., Astatkie, T., Nowak, J., 2000. Micropropagation of chokecherry and pincherry cultivars. Plant Cell Tiss. Org. Cult. 63: 93-100.
  • Puglisi, S.E., 2002. Use of plant growth regulators to enhance branching of Clematis spp. Thesis, Virginia Polytechnic Institute Blacksburg, Virginia, USA. University,
  • Sansberro, P., Mroginski, L., Bottini, R., 2006. Stimulation of lateral branch formation on Ilex paraguariensis (Aquifoliaceae) seedlings. Aust. J. Exp. Agric. 46: 707- 710.
  • Schilling, G., 1985. Neue Ergebnisse Zum Mechanismus der N-Wirkung in der Pflanze, "Mikronanrstoff-Forschung", Symposium Institute Rosa enhance micropropagation. Biol. Plant. 43: 279- 281. L.
  • Snir, I., 1983. A micropropagation system for sour cherry. Sci. Hortic. 19: 85-90.
  • Soad, M.M., Ibrahim, Lobna, I., Taha, S., Farahat, M.M., 2010. Vegetative growth and chemical constituents of croton plants as affected by foliar application of benzyl adenine and gibberellic acid. J. Am. Sci. 6: 126-130.
  • Tang, H., Ren, Z., Reustle, G., Krczal, G., 2002. Plant regeneration from leaves of sweet and sour cherry cultivars. Sci. Hortic. 93: 235-244.
  • Thetford, M., Berry, J.B., 2000. Response of five woody landscape plants to primo and pruning. J. Environ. Hort. 18: 128-132.
  • Troll, W., Lindsley, J., 1955. A photometric method for determination of proline. J. Biol. Chem. 215: 655-660.
  • Watanabe, S., Katsumi, K., Yuji, I., Sasaki, S., 2001. Effects of saline and osmotic stress on proline and sugar accumulation in Populus euphratica in vitro. Plant Cell Tiss. Org. Cult. 63: 199-206.
  • Whiting, P.A., 2007. Commercial production of Christia subcordata by establishing cultural practices and by applying plant growth regulators. MSc, B.S.C.E. Florida A & M University 1995, B.S.A. University of Georgia 2006, Athens Georgia 2007.
  • Wintermans, J.F.G.M., De Mots, A., 1965. Spectrophotometric characteristics of chlorophylls a pheophytins Biophys. Acta 109: 448-453. and their in ethanol. Biochim.
Toplam 39 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Araştırma Makaleleri
Yazarlar

Virginia Sarropoulou Bu kişi benim

Kortessa Dımassıtherıou Bu kişi benim

İoannis Therıos Bu kişi benim

Yayımlanma Tarihi 1 Mart 2014
Gönderilme Tarihi 26 Ocak 2015
Yayımlandığı Sayı Yıl 2014 Cilt: 1 Sayı: Özel Sayı-2

Kaynak Göster

APA Sarropoulou, V., Dımassıtherıou, K., & Therıos, İ. (2014). Dikegulac-Sodium Effect on Micropropagation and Biochemical Parameters in the Cherry Rootstocks CAB-6P and Gisela 6. Türk Tarım Ve Doğa Bilimleri Dergisi, 1(Özel Sayı-2), 1713-1726.