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A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3

Yıl 2013, Cilt: 41 Sayı: 4, 317 - 320, 01.11.2013

Öz

Nigella turcica Dönmez & Mutlu Ranunculaceae is a narrow endemic species and closest relative is N. sativa black cumin has an economic importance. In this study, optimum conditions of seed germination was searched for N. turcica. Germination did not occur during 45 days either 4 or 16°C. Potassium nitrate and giberellic asid GA3 with 10 and 25 ppm concentrations were ineffective in embro growth. Optimal conditions to seed germination of N. turcica have been determined as 100 ppm concentrations of giberellic asid at 16°C.

Kaynakça

  • C.C. Baskin, J.M. Baskin, Seeds – ecology, biogeography, and evolution of dormancy and germination. San Diego, Academic Press, 1998.
  • J.M. Baskin, C.C. Baskin, A classification system for seed dormancy. Seed Sci. Res. 14 (2004) 1.
  • A.A. Dönmez, B. Mutlu, Nigella turcica a new species from Turkey. Bot. J. Linnean Soc. 146 (2004) 251.
  • Figure 1. Root tip of Nigella turcica (AAD 15499) seed after days (Scale bar =2mm).
  • Table 2. Seed germination of Nigella turcica. Treatment Temperature ppm GA ppm GA ppm GA ppm GA ppm + 0.2% KNO °C _ _ _ _ _ °C _ _ + + _ B.R. Atwater, Germination, dormancy and morphology of the seeds of herbaceous ornamental plants. Seed Sci. Technol. 8 (1980) 523.
  • S. Bullowa, M. Negbi, Y. Özeri, Role of temperature light and growth regulators in germination in Anemone coronaria L. Aust. J. P1. Phys. 2 (1975) 91.
  • W. Crocker, Mechanics of dormancy in seeds. Am. J. Bot. 19 (1916) 99.
  • A.M. Mayer, A. Poljakoff-Mayber, Germination of Seeds. 2nd Ed. Pergamon Press, New York, 1975.
  • M.M. Pinnell, A. M. Armitage, D. Seaborn, Germination needs of common perennial seed. Ga. Agr. Expt. Sta. Res. Bul. (1985) 901.
  • S.J. Lockhart, M.L. Albrecht, Notes on Germination of Helleborus niger L. (Ranunculaceae). Trans. the Kansas Acad. Sci. 90 (1987) 96.
  • M. Singh, G.N. Singh, L.N. Singh, Effect of GA3 on seed germination in mosambi (Citrus sinensis osbeck). Haryana Journal of Horti. Sci. 18 (1989) 29.
  • A.A. Khan, The Physiology and Biochemistry of Seed Dormancy and Germination. Elsevier Scientific Publications Co. Amsterdam. 477, 1977.
  • A.N. Verma, P. Tandon, Effect of growth regulators on germination and seedling growth of Pinus kesiya and Schima khosiana. Ind. J. Forest. 11 (1988) 32.
  • S.C. Joshi, S.S. Parihar, H.C.S. Negi, Effect of GA3 on seed germination of Pyracantha crenulata (D.Don.) M. Roem. NY Sci. J. 3 (2010) 55.
  • M.G. Nikolaeva, Physiology of deep dormancy in seeds. Leningrad, Russia: Izdatel’stvo ‘Nauka’ (in Russian). Translated from Russian by Z. Shapiro (1969), National Science Foundation, Washington, DC, USA: 219. 1967.
  • M.G. Nikolaeva, On criteria to use in studies of seed evolution. Seed Sci. Res. 14 (2004) 315.
  • E. William, G. Leubner-Metzger, Seed dormancy and the control of germination. New Phytol. 171(2006)

Endemik Nigella turcica Dönmez & Mutlu Ranunculaceae taksonunun tohum dormansisini kırmada izlenen yol: GA3 and KNO3

Yıl 2013, Cilt: 41 Sayı: 4, 317 - 320, 01.11.2013

Öz

Nigella turcica Dönmez & Mutlu Ranunculaceae dar yayılışlı endemik bir türdür ve ekonomik öneme sahip N. sativa çörek otu türüne en yakın taksondur. Bu çalışmada bu türe ait tohum çimlenmesi için gerekli en uygun koşullar araştırılmıştır. Çimlenme 4 veya 16°C’de 45 gün süresince gerçekleşmemiştir. 10 ve 25 ppm potasyum nitrat ve giberellik asit GA3 uygulamaları da embriyo üzerinde etkili olmamıştır. Çimlenmenin sağlanabilmesi için en uygun koşullar 100 ppm giberellik asit derişiminde ve 16°C sıcaklıkta elde edilmiştir

Kaynakça

  • C.C. Baskin, J.M. Baskin, Seeds – ecology, biogeography, and evolution of dormancy and germination. San Diego, Academic Press, 1998.
  • J.M. Baskin, C.C. Baskin, A classification system for seed dormancy. Seed Sci. Res. 14 (2004) 1.
  • A.A. Dönmez, B. Mutlu, Nigella turcica a new species from Turkey. Bot. J. Linnean Soc. 146 (2004) 251.
  • Figure 1. Root tip of Nigella turcica (AAD 15499) seed after days (Scale bar =2mm).
  • Table 2. Seed germination of Nigella turcica. Treatment Temperature ppm GA ppm GA ppm GA ppm GA ppm + 0.2% KNO °C _ _ _ _ _ °C _ _ + + _ B.R. Atwater, Germination, dormancy and morphology of the seeds of herbaceous ornamental plants. Seed Sci. Technol. 8 (1980) 523.
  • S. Bullowa, M. Negbi, Y. Özeri, Role of temperature light and growth regulators in germination in Anemone coronaria L. Aust. J. P1. Phys. 2 (1975) 91.
  • W. Crocker, Mechanics of dormancy in seeds. Am. J. Bot. 19 (1916) 99.
  • A.M. Mayer, A. Poljakoff-Mayber, Germination of Seeds. 2nd Ed. Pergamon Press, New York, 1975.
  • M.M. Pinnell, A. M. Armitage, D. Seaborn, Germination needs of common perennial seed. Ga. Agr. Expt. Sta. Res. Bul. (1985) 901.
  • S.J. Lockhart, M.L. Albrecht, Notes on Germination of Helleborus niger L. (Ranunculaceae). Trans. the Kansas Acad. Sci. 90 (1987) 96.
  • M. Singh, G.N. Singh, L.N. Singh, Effect of GA3 on seed germination in mosambi (Citrus sinensis osbeck). Haryana Journal of Horti. Sci. 18 (1989) 29.
  • A.A. Khan, The Physiology and Biochemistry of Seed Dormancy and Germination. Elsevier Scientific Publications Co. Amsterdam. 477, 1977.
  • A.N. Verma, P. Tandon, Effect of growth regulators on germination and seedling growth of Pinus kesiya and Schima khosiana. Ind. J. Forest. 11 (1988) 32.
  • S.C. Joshi, S.S. Parihar, H.C.S. Negi, Effect of GA3 on seed germination of Pyracantha crenulata (D.Don.) M. Roem. NY Sci. J. 3 (2010) 55.
  • M.G. Nikolaeva, Physiology of deep dormancy in seeds. Leningrad, Russia: Izdatel’stvo ‘Nauka’ (in Russian). Translated from Russian by Z. Shapiro (1969), National Science Foundation, Washington, DC, USA: 219. 1967.
  • M.G. Nikolaeva, On criteria to use in studies of seed evolution. Seed Sci. Res. 14 (2004) 315.
  • E. William, G. Leubner-Metzger, Seed dormancy and the control of germination. New Phytol. 171(2006)
Toplam 17 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Article
Yazarlar

Zübeyde Uğurlu Bu kişi benim

Ali A. Dönmez Bu kişi benim

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

Kaynak Göster

APA Uğurlu, Z., & Dönmez, A. A. (2013). A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3. Hacettepe Journal of Biology and Chemistry, 41(4), 317-320.
AMA Uğurlu Z, Dönmez AA. A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3. HJBC. Kasım 2013;41(4):317-320.
Chicago Uğurlu, Zübeyde, ve Ali A. Dönmez. “A Pathway to Break Seed Dormancy of Endemic Nigella Turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3”. Hacettepe Journal of Biology and Chemistry 41, sy. 4 (Kasım 2013): 317-20.
EndNote Uğurlu Z, Dönmez AA (01 Kasım 2013) A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3. Hacettepe Journal of Biology and Chemistry 41 4 317–320.
IEEE Z. Uğurlu ve A. A. Dönmez, “A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3”, HJBC, c. 41, sy. 4, ss. 317–320, 2013.
ISNAD Uğurlu, Zübeyde - Dönmez, Ali A. “A Pathway to Break Seed Dormancy of Endemic Nigella Turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3”. Hacettepe Journal of Biology and Chemistry 41/4 (Kasım 2013), 317-320.
JAMA Uğurlu Z, Dönmez AA. A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3. HJBC. 2013;41:317–320.
MLA Uğurlu, Zübeyde ve Ali A. Dönmez. “A Pathway to Break Seed Dormancy of Endemic Nigella Turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3”. Hacettepe Journal of Biology and Chemistry, c. 41, sy. 4, 2013, ss. 317-20.
Vancouver Uğurlu Z, Dönmez AA. A pathway to break seed dormancy of endemic Nigella turcica Dönmez & Mutlu Ranunculaceae : GA3 and KNO3. HJBC. 2013;41(4):317-20.

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