The Medicinal-Aromatic Properties of Ginger (Zingiber officinale) Plant and Tissue Culture Studies

Özet

Referanslar

Acıbuca, V., & Budak, D. B. (2018). Dünya’da ve Türkiye’de tıbbi ve aromatik bitkilerin yeri ve önemi. Çukurova Tarım ve Gıda Bilimleri Dergisi, 33(1), 37-44.

Ahmad, I., Zahin, M., Aqil, F., Hasan, S., Khan, M. S. A., & Owais, M. (2008). Bioactive compounds from Punica granatum, Curcuma longa and Zingiber officinale and their therapeutic potential. Drugs of the Future. 33(4), 329-346.

Ahmed, K., Shaheen, G., & Asif, H. M. (2011). Zingiber officinale Roscoe (pharmacological activity). Journal of Medicinal Plants Research, 5(3), 344-348.

Ali, B.H., et al. (2008). Some phytochemical, pharmacological and toxicological properties of ginger (Zingiber officinale Roscoe): A review of recent research. Food Chem Toxicol, 46. 409-20.

Al-Taha, H. A., Al-Mayah, A. A., & Abd Al-Behadili, W. A. (2020). Efficient in vitro regeneration of Zingiber officinale Rosc. var. White through shoot tips culture. Plant Archives, 20(1), 434-437.

Anandaraj, M., S. Devasahayam, T. J. Zachariah, S. J. Eapen, B. Sasikumar & C. K. Thankamani. (2001). Ginger. (extension pamphlet) Agricultural Technology Information Centre. Indian Institute of Spices Research, Calicut, Kerala.

Antonietta, G. M., Ahmad, H. I., Maurizio, M. Alvaro, S. (2007). Preliminary research on conversion of encapsulated somatic embryos of Citrus reticulata Blanco, cv. Mandarino Tardivo di Ciaculli. Plant Cell Tissue and Organ Culture, 88(1):117-120.

Ayenew, B., Tefera, W., & Kassahun, B. (2012). In vitro propagation of Ethiopian ginger (Zingiber officinale Rosc.) cultivars: Evaluation of explant types and hormone combinations. African Journal of Biotechnology, 11(16), 3911-3918.

Babu, K. N., Samsudeen, K., & Ratnambal, M. J. (1992). In vitro plant regeneration from leaf-derived callus in ginger (Zingiber officinale Rosc.). Plant Cell, Tissue and Organ Culture, 29, 71-74.

Baliga, M. S., Haniadka, R., Pereira, M. M., D’Souza, J. J., Pallaty, P. L., Bhat, H. P., & Popuri, S. (2011). Update on the chemopreventive effects of ginger and its phytochemicals. Critical Reviews in Food Science and Nutrition, 51(6), 499-523.

Basile, A., & Rigano, D. (2017). Plants of the genus Zingiber as a source of bioactive phytochemicals: From tradition to pharmacy. Molecules, 22(12), 1-20.

Bayar, F. U. (2020). Doğadan gelen mucize: Zencefil (Zingiber officinale). Bahçe, 49(2), 99-110.

Bayraktar, D. Z. (2021). Zencefil’in (Zingiber officinale Roscoe) insan sağlığı üzerine çeşitli terapötik etkileri. Karya Journal of Health Science, 2(2), 55-60.

Bertila, S., Ariina, M. S., Maiti, C. S., Gadi, Y., & Daiho, L. (2020). Effect of planting time and harvest on yield and quality of ginger (Zingiber officinale Rosc.) cv. Nadia. International Journal of Chemical Studies, 8(5), 1922-1925.

Bhattacharya, M., & Sen, A. (2006). Rapid in vitro multiplication of disease-free Zingiber officinale Rosc. Indian Journal of Plant Physiology, 11(4), 379.

Bilgin Göçmen, G., Arslantunalı Tağtekin, D., Yanıkoğlu, F. (2020). Bitkisel diş macunları. Arslantunalı Tağtekin D, editör. Diş Macun ve Kremleri. Türkiye Klinikleri. 1.97-106.

Black, C. D., Herring, M. P., Hurley, D. J., & O'Connor, P. J. (2010). Ginger (Zingiber officinale) reduces muscle pain caused by eccentric exercise. The Journal of Pain, 11(9), 894-903.

Buckle, J. (2003). Clinical Aromatherapy. 2nd Edition, New York: Churchill Livingstone.

Bürün, B. (2001). Bitki Biyoteknolojisi I Doku Kültür ve Uygulamaları, Hastalıksız Bitki Üretimi, (Eds. Sebahattin Özcan, Ekrem Gürel ve Mehmet Babaoğlu), Konya: S.Ü. Vakfı Yayınları, s.211-261.

Carpenter, S., Rigaud, M., Barile, M., Priest, T. J., Perez, L., & Ferguson, J. B. (2006). The Ebers Papyrus. Bard College, 3.

CITES (2023) The Convention on International Trade In Endangered Species of Wild Fauna and Flora. Accessed on 2.11.2023, https://cites.org/eng/prog/medplants from the address.

David, D., Ji, T. Y., & Gansau, J. A. (2016). In Vitro Propagation of Zingiber officinale Rosc.'Tambunan'. Transactions on Science and Technology, 3(1-2), 162-167.

Demirçivi, B. M., & Altaş, A. (2016). Üniversite Öğrencilerinin Baharatlara İlişkin Bilgileri ve Tüketim Tercihleri: Aksaray Üniversitesinde Bir Uygulama, Journal of Tourism and Gastronomy Studies, 4(4), 88-112.

Demirezer, L.Ö. (2010). Bitkilerin tıpta kullanılması konusundaki sorumluluklarımız. Bitkilerle Tedavi Sempozyumu 5-6 Haziran 2010 Zeytinburnu/İstanbul Bildiri Kitabı, s: 87- 88.

Elbir, Z. G. (2000). Gayetü’l-Beyan Fi Tedbiri Bedeni’l-İnsan. Yayınlanmamış Doktora Tezi, Fırat Üniversitesi, Sosyal Bilimler Enstitüsü, Elâzığ.

El-Nabarawy, M. A., El-Kafafi, S. H., Hamza, M. A., & Omar, M. A. (2015). The effect of some factors on stimulating the growth and production of active substances in Zingiber officinale callus cultures. Annals of Agricultural Sciences, 60(1), 1-9.

Gezahegn, G., Feyissa, T., & Rezene, Y. (2023). Replacement of ammonium nitrate by alternative nitrogen sources in MS medium to enhance ginger (Zingiber officinale Rosc.) in vitro regeneration. Plant Cell, Tissue and Organ Culture, 1-7.

Ghosh, A.K., (2011). Zingiber officinale: a natural gold. International Journal of Pharma and Bio Sciences, 2(1).

Göktaş, Ö., & Gıdık, B. (2019). Tıbbi ve aromatik bitkilerin kullanım alanları. Bayburt Üniversitesi Fen Bilimleri Dergisi, 2(1), 145-151.

Guo, Y., & Zhang, Z. (2005). Establishment and plant regeneration of somatic embryogenic cell suspension cultures of the Zingiber officinale Rosc. Scientia Horticulturae, 107(1), 90-96.

Hartmann, H. T., & Kester, D. E. (2002). Plant propagation: principles and practices. 7th Edition, USA Pearson Education.

Higgins, S., Rose, K., Wilson, R., Francis, R. D., Watson, C. T., & Riley, C. K. (2020). In Vitro Propagation of Zingiber Officinale Rosc. Biotechnological Research, 6(1), 1-6

İzer, M. (1988). Baharatın İzleri. İstanbul: Sev Matbaacılık ve Yayıncılık A.Ş.

Jenkins, M., Timoshyna, A., Cornthwaite, M. (2018) Wild at home. Exploring the global harvest, trade and use of wild plant ingredients. TRAFFIC, Cambridge, UK. https://www.traffic.org/site/assets/files/7339/wild-at-home.pdf Accessed on 2.11.2023, from the address.

Jo, M. H., Ham, I. K., Lee, M., Park, S. K., Kwon, K. H., & Lee, E. M. (2009). Efficient production of ginger (Zingiber officinale Roscoe) rhizome by shoot-tip culture. Korean Journal of Plant Resources, 22(6), 518-521.

Jolad, S. D., Lantz, R. C., Solyom, A. M., Chen, G. J., Bates, R. B., & Timmermann, B. N. (2004). Fresh organically grown ginger (Zingiber officinale): composition and effects on LPS-induced PGE2 production. Phytochemistry, 65(13), 1937-1954.

Kadambari, S., & Bhawna, M. (2014). Invitro Conservation of Zingiber officinale through rhizome. IOSR Journal of Pharmacy and Biological Sciences, 9(3), 39-40

Kaplan, H. (2014). Zencefilin (zingiber officinale roscoe) bitkisel özellikleri ve yetiştiriciliği. Derim. 22(2):1-9.

Kar, Z., Yazar, K., Doğan, O., & Yazıcı, S. (2023). Sentetik Tohum ve Bağcılıkta Kullanımı. Bahçe, 52(Özel Sayı 1), 418-433.

Kemper, K. J. (1999). Ginger (Zingiber officinale). Longwood Herbal Task Force, 3, 1-18.

Khandouzi, N., Shidfar, F., Rajab, A., Rahideh, T., Hosseini, P., Taheri, M.M. (2015). The effects of ginger on fasting blood sugar, hemoglobin Alc, and lipid profiles in patients with type 2 diabetes. Iranian Journal of Pharmaceutical Research. 14(1):131-140.

Khayat, S., Kheirkhah, M., Behboodi Moghadam, Z., Fanaei, H., Kasaeian, A., & Javadimehr, M. (2014). Effect of treatment with ginger on the severity of premenstrual syndrome symptoms. International scholarly research notices. 2014.

Kılıç, A. (2008). Uçucu yağ elde etme yöntemleri. Bartın Orman Fakültesi Dergisi, 10(13), 37-45.4

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Li, Y., Tran, VH., Duke, CC., Roufogalis, BD. (2012). Preventive and protective properties of Zingiber officinale (ginger) in diabetes mellitus, diabetic complications, and associated lipid and other metabolic disorders: a brief review. Evidence-Based Complementary and Alternative Medicine https://doi.org/10.1155/2012/516870

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Referanslar

Acıbuca, V., & Budak, D. B. (2018). Dünya’da ve Türkiye’de tıbbi ve aromatik bitkilerin yeri ve önemi. Çukurova Tarım ve Gıda Bilimleri Dergisi, 33(1), 37-44.

Ahmad, I., Zahin, M., Aqil, F., Hasan, S., Khan, M. S. A., & Owais, M. (2008). Bioactive compounds from Punica granatum, Curcuma longa and Zingiber officinale and their therapeutic potential. Drugs of the Future. 33(4), 329-346.

Ahmed, K., Shaheen, G., & Asif, H. M. (2011). Zingiber officinale Roscoe (pharmacological activity). Journal of Medicinal Plants Research, 5(3), 344-348.

Ali, B.H., et al. (2008). Some phytochemical, pharmacological and toxicological properties of ginger (Zingiber officinale Roscoe): A review of recent research. Food Chem Toxicol, 46. 409-20.

Al-Taha, H. A., Al-Mayah, A. A., & Abd Al-Behadili, W. A. (2020). Efficient in vitro regeneration of Zingiber officinale Rosc. var. White through shoot tips culture. Plant Archives, 20(1), 434-437.

Anandaraj, M., S. Devasahayam, T. J. Zachariah, S. J. Eapen, B. Sasikumar & C. K. Thankamani. (2001). Ginger. (extension pamphlet) Agricultural Technology Information Centre. Indian Institute of Spices Research, Calicut, Kerala.

Antonietta, G. M., Ahmad, H. I., Maurizio, M. Alvaro, S. (2007). Preliminary research on conversion of encapsulated somatic embryos of Citrus reticulata Blanco, cv. Mandarino Tardivo di Ciaculli. Plant Cell Tissue and Organ Culture, 88(1):117-120.

Ayenew, B., Tefera, W., & Kassahun, B. (2012). In vitro propagation of Ethiopian ginger (Zingiber officinale Rosc.) cultivars: Evaluation of explant types and hormone combinations. African Journal of Biotechnology, 11(16), 3911-3918.

Babu, K. N., Samsudeen, K., & Ratnambal, M. J. (1992). In vitro plant regeneration from leaf-derived callus in ginger (Zingiber officinale Rosc.). Plant Cell, Tissue and Organ Culture, 29, 71-74.

Baliga, M. S., Haniadka, R., Pereira, M. M., D’Souza, J. J., Pallaty, P. L., Bhat, H. P., & Popuri, S. (2011). Update on the chemopreventive effects of ginger and its phytochemicals. Critical Reviews in Food Science and Nutrition, 51(6), 499-523.

Basile, A., & Rigano, D. (2017). Plants of the genus Zingiber as a source of bioactive phytochemicals: From tradition to pharmacy. Molecules, 22(12), 1-20.

Bayar, F. U. (2020). Doğadan gelen mucize: Zencefil (Zingiber officinale). Bahçe, 49(2), 99-110.

Bayraktar, D. Z. (2021). Zencefil’in (Zingiber officinale Roscoe) insan sağlığı üzerine çeşitli terapötik etkileri. Karya Journal of Health Science, 2(2), 55-60.

Bertila, S., Ariina, M. S., Maiti, C. S., Gadi, Y., & Daiho, L. (2020). Effect of planting time and harvest on yield and quality of ginger (Zingiber officinale Rosc.) cv. Nadia. International Journal of Chemical Studies, 8(5), 1922-1925.

Bhattacharya, M., & Sen, A. (2006). Rapid in vitro multiplication of disease-free Zingiber officinale Rosc. Indian Journal of Plant Physiology, 11(4), 379.

Bilgin Göçmen, G., Arslantunalı Tağtekin, D., Yanıkoğlu, F. (2020). Bitkisel diş macunları. Arslantunalı Tağtekin D, editör. Diş Macun ve Kremleri. Türkiye Klinikleri. 1.97-106.

Black, C. D., Herring, M. P., Hurley, D. J., & O'Connor, P. J. (2010). Ginger (Zingiber officinale) reduces muscle pain caused by eccentric exercise. The Journal of Pain, 11(9), 894-903.

Buckle, J. (2003). Clinical Aromatherapy. 2nd Edition, New York: Churchill Livingstone.

Bürün, B. (2001). Bitki Biyoteknolojisi I Doku Kültür ve Uygulamaları, Hastalıksız Bitki Üretimi, (Eds. Sebahattin Özcan, Ekrem Gürel ve Mehmet Babaoğlu), Konya: S.Ü. Vakfı Yayınları, s.211-261.

Carpenter, S., Rigaud, M., Barile, M., Priest, T. J., Perez, L., & Ferguson, J. B. (2006). The Ebers Papyrus. Bard College, 3.

CITES (2023) The Convention on International Trade In Endangered Species of Wild Fauna and Flora. Accessed on 2.11.2023, https://cites.org/eng/prog/medplants from the address.

David, D., Ji, T. Y., & Gansau, J. A. (2016). In Vitro Propagation of Zingiber officinale Rosc.'Tambunan'. Transactions on Science and Technology, 3(1-2), 162-167.

Demirçivi, B. M., & Altaş, A. (2016). Üniversite Öğrencilerinin Baharatlara İlişkin Bilgileri ve Tüketim Tercihleri: Aksaray Üniversitesinde Bir Uygulama, Journal of Tourism and Gastronomy Studies, 4(4), 88-112.

Demirezer, L.Ö. (2010). Bitkilerin tıpta kullanılması konusundaki sorumluluklarımız. Bitkilerle Tedavi Sempozyumu 5-6 Haziran 2010 Zeytinburnu/İstanbul Bildiri Kitabı, s: 87- 88.

Elbir, Z. G. (2000). Gayetü’l-Beyan Fi Tedbiri Bedeni’l-İnsan. Yayınlanmamış Doktora Tezi, Fırat Üniversitesi, Sosyal Bilimler Enstitüsü, Elâzığ.

El-Nabarawy, M. A., El-Kafafi, S. H., Hamza, M. A., & Omar, M. A. (2015). The effect of some factors on stimulating the growth and production of active substances in Zingiber officinale callus cultures. Annals of Agricultural Sciences, 60(1), 1-9.

Gezahegn, G., Feyissa, T., & Rezene, Y. (2023). Replacement of ammonium nitrate by alternative nitrogen sources in MS medium to enhance ginger (Zingiber officinale Rosc.) in vitro regeneration. Plant Cell, Tissue and Organ Culture, 1-7.

Ghosh, A.K., (2011). Zingiber officinale: a natural gold. International Journal of Pharma and Bio Sciences, 2(1).

Göktaş, Ö., & Gıdık, B. (2019). Tıbbi ve aromatik bitkilerin kullanım alanları. Bayburt Üniversitesi Fen Bilimleri Dergisi, 2(1), 145-151.

Guo, Y., & Zhang, Z. (2005). Establishment and plant regeneration of somatic embryogenic cell suspension cultures of the Zingiber officinale Rosc. Scientia Horticulturae, 107(1), 90-96.

Hartmann, H. T., & Kester, D. E. (2002). Plant propagation: principles and practices. 7th Edition, USA Pearson Education.

Higgins, S., Rose, K., Wilson, R., Francis, R. D., Watson, C. T., & Riley, C. K. (2020). In Vitro Propagation of Zingiber Officinale Rosc. Biotechnological Research, 6(1), 1-6

İzer, M. (1988). Baharatın İzleri. İstanbul: Sev Matbaacılık ve Yayıncılık A.Ş.

Jenkins, M., Timoshyna, A., Cornthwaite, M. (2018) Wild at home. Exploring the global harvest, trade and use of wild plant ingredients. TRAFFIC, Cambridge, UK. https://www.traffic.org/site/assets/files/7339/wild-at-home.pdf Accessed on 2.11.2023, from the address.

Jo, M. H., Ham, I. K., Lee, M., Park, S. K., Kwon, K. H., & Lee, E. M. (2009). Efficient production of ginger (Zingiber officinale Roscoe) rhizome by shoot-tip culture. Korean Journal of Plant Resources, 22(6), 518-521.

Jolad, S. D., Lantz, R. C., Solyom, A. M., Chen, G. J., Bates, R. B., & Timmermann, B. N. (2004). Fresh organically grown ginger (Zingiber officinale): composition and effects on LPS-induced PGE2 production. Phytochemistry, 65(13), 1937-1954.

Kadambari, S., & Bhawna, M. (2014). Invitro Conservation of Zingiber officinale through rhizome. IOSR Journal of Pharmacy and Biological Sciences, 9(3), 39-40

Kaplan, H. (2014). Zencefilin (zingiber officinale roscoe) bitkisel özellikleri ve yetiştiriciliği. Derim. 22(2):1-9.

Kar, Z., Yazar, K., Doğan, O., & Yazıcı, S. (2023). Sentetik Tohum ve Bağcılıkta Kullanımı. Bahçe, 52(Özel Sayı 1), 418-433.

Kemper, K. J. (1999). Ginger (Zingiber officinale). Longwood Herbal Task Force, 3, 1-18.

Khandouzi, N., Shidfar, F., Rajab, A., Rahideh, T., Hosseini, P., Taheri, M.M. (2015). The effects of ginger on fasting blood sugar, hemoglobin Alc, and lipid profiles in patients with type 2 diabetes. Iranian Journal of Pharmaceutical Research. 14(1):131-140.

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