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Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı

Yıl 2011, Cilt: 27 Sayı: 1, 1 - 18, 01.02.2011

Öz

Bu çalışmada çeşitli eksplantlar (kotiledon nodları ve embriyo eksenleri), çeşitli büyüme düzenleyicileri ve bu düzenleyicilerin farklı konsantrasyonları gibi parametrelerin rejenerasyon ve transformasyona etkileri araştırılmıştır. Kotiledon nodlarının Agro-vakum infiltrasyonu, çimlendirilmiş nohut tohumlarının Agroinokülasyonu, embriyonun Agroenjeksiyonu ve yüzey sterilizasyonu yapılmış kuru nohut tohumlarının Agrobacterium solusyonu ile imbibisyonu (şişirme, emdirme) olmak üzere dört farklı transformasyon stratejisinin etkinliği denenmiştir. Transformasyon etkinliğine Agrobacterium suşları, kokültüvasyon süresi, eksplantın gelişme evresi, yaralama, infiltrasyon ve kültüvarlar gibi çeşitli parametrelerin etkisi araştırılmıştır. Transformasyon etkinliği geçici GUS aktivitesine bakarak veya selektif ortamda yaşayan eksplantlara dayanarak belirlenmiştir. Transgenlerin varlığı, ayda bir alt kültüre alınan selektif ortamda 3-4 ay seleksiyona tabi tutulmuş bitkilerde PCR analizleri ile belirlenmiştir. Test edilen Agrobacterium tumefaciens suşları arasında (KYRT1, C58C1 ve EHA 101) en iyi yanıt EHA 101 suşundan elde edilmiştir. Selektif ortamda elde edilen sonuca göre transformasyona ise en iyi cevabı Er çeşidi vermiştir.

Kaynakça

  • Karthikeyan, A. S., Sharma, K. S., Veluthambi, K., Agrobacterium tumefaciens-mediated transformation of (Vigna mungo L) Hepper. Plant Cell Rep 15:328-331, (1996).
  • Acharjee S., Sarmah B. K., Kumar P. A., Olsen K., Mahon R., Moar W. J., Moore A., and Higgins T. J. V., Transgenic chickpea (Cicer arietinum L.) expressing a sequence-modified cry2Aa gene. Plant Sci. 178:333-339, (2010).
  • Malik, K. A., and Saxena, P. K., Thidiazuron Induces High-frequency Shoot Regeneration in Intact Seedlings of Pea (Pisum sativum), Chickpea (Cicer arietinum) and Lentil (Lens culinaris). Aust.J. Plant. Physiol. 19:731-740, (1992).
  • Hulse, J. H., Nature, composition and utilization of grain legumes. p. 11-27. In: Uses of tropical Legumes: Proceedings of a Consultants' Meeting, 27-30 March 1989, ICRISAT Center. ICRISAT, Patancheru, A.P. 502 324, India, (1991).
  • Huisman, J., and van der Poel, A. F. B., Aspects of the nutritional quality and use of cool season food legumes in animal feed. p. 53-76. In: F. J. Muehlbauer and W. J. Kaiser (eds.) Expanding the Production and Use of Cool Season Food Legumes. Kluwer Academic Publishers. Dordrecht, The Netherlands, (1994).
  • Murashige, T., and Skoog, F., “A revised medium for rapid growth and bio assays with tobacco tissue cultures”. Physiol. Plant:15: 473-497, (1962).
  • McCabe, D. E., Swain, W. F., Martinell, B. J., Christou, P., Stable transformation of soybean (Glycine max) by particle acceleration. Bio/Technology 6:923– 926, (1988). L., Finer, J., Hinchee, M., Stable transformation via particle bombardment in two different soybean regeneration systems. Plant Cell Rep. 12:408-413, (1993).
  • Yun C. S., High-efficiency Agrobacterium-mediated transformation of soybean. Acta Botanica Sinica. 46 (5):610-617, (2004).
  • Schoreder, H. E., Schotz, A. H., Wardley-Richardson, T., Spencer, D., Higgins, T. J. V., Transformation and regeneration of two cultivars of pea (Pisum Sativum). Plant Physiol 101: 751-757, (1993).
  • Geervani, P., Utilization of chickpea in India and scope for novel and alternative uses. p. 47-54. In: Uses of Tropical Grain Legumes: Proceedings of Consultants' Meeting, 27-30 March, 1989. ICRISAT Center, Patancheru, Andhra Pradesh, India, (1991).
  • Lombari, Ercolano, E., Alooui, H. E., Chiurazzi, M., A new transformation- regeneration procedure in the model legume Lotus japonicus: root explants as a source of large numbers of cells susceptible to Agrobacterium mediated transformation. Plant Cell.Rep:Online Pub.10.1007/s00299-003-0576, (2003).
  • Eapen, S., George, L., Somatic embryogenesis in Cicer arietinum L.- Influence of Genotype and auxins. Biol plantarum : 36(3):343-349, (1994).
  • Jaiwal, K., Ragini, K., Ignacimuthu, S., Potrykus, S., Kumar, I., Potrykus, C., Agrobacterium tumefaciens-mediated genetic transformation of mungbean (Vigna radiata L. Wilczek) a recalcitrant grain legume. Plant-Science: 161: 239- 247, (2001).
  • Gulati, A., Schryer, P., and McHugen, A., Regeneration and Micrografting of lentil shoots. In Vitro Cell Dev Biol- Plant:37:798-802, (2001).
  • Khawar, K. M., and Özcan, S., High frequency shoot regeneration from cotyledonary node explants of different lentil genotypes and in vitro micrografting. Biotech. Biotechnol Eq. 16:12-17, (2002).
  • Mahmoudian, M., “Optimisation of Tissue Culture Conditions and Gene Transfer Studies In Lentil”. Ph.D Thesis, METU, (2000).
  • Wang, K., Herrera-Estrella, M., Van Montagu, M., Zambryski, P., Right 25 bp terminus sequence of the nopaline TDNA is essential fo , and determines the direction of DNA transfer from Agrobacterium to plant genome. Cell: 38:35-41, (1984).
  • Gelvin, S., The introduction and expression of transgenes in Plants. Curr Opin Biotech 9:227-232, (1998).
  • Babaoğlu, M., Davey, M, R., Power, J. B., Genetic engineering of grain legumes:key transformation events. AgbiotechNet, Vol 2, June ABN 050, (2000).
  • Smith, P., Biological fixation of Nitrogen for Ecology and Sustainable Agriculturr. Edited by A. Legocki, H. Bothe , A. pühler. Springer–Verlag, (1997).
  • Fontana, G. S., Santini, L., Caretto, S., Frugis, G., Mariotti, D., Genetic transformation in the grain legume (Cicer arietinum L.). Plant Cell Rep: 12:194-198, (1993).
  • Kar, S., Basu, D., Das, S., Ramakrishnan, N. A., Mukherjee, P., Nayak, P., Sen, S. K., Expression of Cryia(C) Gene of Bacillus-Thuringiensis in Transgenic Chickpea Plants Inhibits Development of Pod-Borer (Heliothis- Armigera) Larvae. Transgenic Res 2: 177-185, (1997).
  • Krishnamurtyhy, K. V., Suhasini, K., Sagare, A. P., Meixner, M., Kathen A., Pickardt, O., Agrobacterium mediated transformation of chickpea (Cicer arietinum L.) embryo axes. Plant Cell Rep 19:235-240, (2000).
  • Kim, J. W., Minamikawa, T., Stable delivery of canavalin promoter beta- glucuronidase gene fusion into French bean by particle bombardment. Plant Cell Physiol 38: 70-75, (1997).
  • Bean, S. J., Gooding, P. M., Mullineaux, P. M., Davies D. R., A simple system for pea transformation. Plant Cell Rep16: 513-519, (1997).
  • Karthikeyan, A. S., Sharma, K. S., Veluthambi, K., Agrobacterium tumefaciens-mediated transformation of (Vigna mungo L) Hepper. Plant Cell Rep 15:328-331, (1996).
  • Trieu, A., Burleigh, S. H., Kardailsky, I. V., Mendoza-Maldonado, I. E., Wersaw, W. K., Blaylock, L. A., Shin, H., Chiou Tzyy., Katagi, H., Dewbre, G. R., Weigel, D., Harrison, M. J., Transformation of Medicago truncatula via infiltration of seedlings or flowering plants with Agrobacterium tumefacience. Plant J 22: 531-541, (2000).
  • Oger, P., Petit, A., Dessaux, Y. A simple technique for direct regeneration of the diploid legume species Lotus Japonicus. Plant sci 116:159-168, (1996).
  • Hinchee, M. A., Connor-Ward, D. V, Newell, C. A, McDonnell, R.E., Sato, S. J, Gasser, C. S., Fischhoff, D. A, Re, D. B., Farley, R. T., Horch, R. B., Atkins, C., Genetic trandformation and Regeneration of Legumes. NATO ASI series Vol G 3, (1988).
  • Siefkes-Boer, H. J., Noonan, M. J., Bullock, D. W., Conner, A. J., Hairy root transformation system in large- seeded grain legumes. Isr J. Plant science 43:1-5, (1995).
  • Singh R., Singh N. P., Datta S., Yodav I. S., and Singh A. P., Agrobacterium- mediated transformation of chickpea using shoot meristem. Ind J. Biot. Vol. 8, pp. 78-84, (2009).
  • Ignacimuthu S., and Prakash S., Agrobacterium- mediated transformation of chickpea with α-amylase inhibitor gene for insect resistance. J. Biosci. 31:339-345, (2006).
  • Oz M. T., Eyidogan F., Yucel M., and Oktem H. A., Optimized selection and regeneration conditions for Agrobacterium-mediated transformation of chickpea cotyledonary nodes. Pak. J. Bot., 41(4): 2043-2054, (2009).
  • Pathak M. R., and Hamzah R. Y., An efficient method of sonication-assisted Agrobacterium-mediated transformation of chickpeas. Plant Cell Tiss. Organ Cult., 93:65-71, (2008).
  • Mohapatra, S. T., Sharma, R. P., Agrobacterium mediated genetic transformation of chickpea, (Cicer arietinum L). Indian J Exp Biol 29:758- 761, (1991).
  • Doyle, J. J. and J. L. Doyle. A Rapid Total DNA Preparation Procedure For Fresh Plant Tissue, Focus, 12, 13-15, 1990.
  • Deblare, R. et all., Efficient octopine Ti plasmid-derived vectors for Agrobacterium-mediated gene transfer to plants. Nucleic Acids Res., Vol. 13, pp. 4777-4788, (1985).
  • Hood, E. E., et all., New Agrobacterium helper plasmids for gene transfer to plants. Transgenic Res: 2:208-218, (1993).
  • Torisky, R, S., Kovacs, L., Avdiushko S., Newman J. D., Hunt A. G., Collins, B., Development of a binary vector system for plant transformation based on the supervirulent Agrobacterium tumefaciens strain Chry5. Plant Cell Rep 17:102−108, (1997).
  • Jefferson, R. A., Plant Mol. Biol. Rep. 5, 387-405, (1987).
  • Singh, K. B., Chickpea (Cicer arietinum L.). Field Crop Res 53:161-170, (1997).
  • Murthy, B. N. S., Murch, S. J., Saxena, P. K., Thidiazuron: A potent regulator of in vitro morphogenesis. In Vitro Cell Dev -Pl 34: 267-275, (1998).
  • Khalafalla, M. M., and Hattori, K., “A combination of thidiazuron and benzyladenine promotes multiple shoot production from cotyledonary node explants of faba bean (Vicia faba L.)”. Plant Growth Regul 27:45-148, (1999).
  • Barna, K. S., and Wakhlu, A. K., Somatic embryogenesis and Plant regeneration from callus cultures of chickpea (Cicer arietinum L.). Plant Cell Rep 12:521-524, (1993).
  • Akbulut, M., Yücel, M., and Oktem, H. A., Analysis and optimization of DNA delivery into chickpea (Cicer arietinum L.) seedlings by Agrobacterium tumefacience. African Journal of Biotechnology, Vol. 7(8), pp. 1011- 1017, (2008).
  • Orczyc, A. M., and Orczyc, W., Study of the factors influencing Agrobacterium mediated transformation of Pea (Pisum Sativum). Mol Breeding 6:185-194, (2000).
  • Warkentin, T. D., and McHughen, A., “Regeneration from lentil cotyledonary nodes and potential of this explant for transformation by Agrobacterium tumefaciens”, LENS Newsletter, Vol. 20, pp. 26-28, (1993).
  • Bechtold, N., Ellis, J., Pelletier, G., In Planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants. C R Acad Sci 316:1194-1199, (1993).
  • Vickers, J. E., Graham, G. C., and Henry, R. J., A protocol for the efficient screening of putatively transformed plants for bar, the selectable marker gene, using the polymerase chain reaction. Plant Molecular Biology Reporter, Vol. 14 (4), pp. 363-368, (1996).

Agrobacterium tumefaciens mediated transformation in chickpea (Cicer arietinum L.)

Yıl 2011, Cilt: 27 Sayı: 1, 1 - 18, 01.02.2011

Öz

In this study, the effect of various parameters such as different explants (cotyledonary nodes and embryo axes), different growth regulators (Benzylaminopurine and thidiazuron) and their various concentrations have been investigated. Four different transformation strategies namely; Agro-vacuum infiltration of cotyledonary nodes, Agroinoculation of germinating chickpea seedlings, Agro-injection of seedlings and imbibitions of surface sterilized dry chickpea seeds were also investigated. The effect of various parameters such as, Agrobacterium strains, infection durations, explant developmental stage, injury, infiltration and cultivars, on transformation efficiency were investigated. Transformation efficiency was determined based on transient GUS activity or survival on selective media. The presence of transgene was determined by PCR analysis on green plants subcultured monthly on selective media for 3-4 times. The best response were obtained from EHA 101 among the tested strains of Agrobacterium tumefaciens (KYRT1, C58C1 and EHA 101). Er was determined to be best responding cultivar according to the results obtained in selective medium.

Kaynakça

  • Karthikeyan, A. S., Sharma, K. S., Veluthambi, K., Agrobacterium tumefaciens-mediated transformation of (Vigna mungo L) Hepper. Plant Cell Rep 15:328-331, (1996).
  • Acharjee S., Sarmah B. K., Kumar P. A., Olsen K., Mahon R., Moar W. J., Moore A., and Higgins T. J. V., Transgenic chickpea (Cicer arietinum L.) expressing a sequence-modified cry2Aa gene. Plant Sci. 178:333-339, (2010).
  • Malik, K. A., and Saxena, P. K., Thidiazuron Induces High-frequency Shoot Regeneration in Intact Seedlings of Pea (Pisum sativum), Chickpea (Cicer arietinum) and Lentil (Lens culinaris). Aust.J. Plant. Physiol. 19:731-740, (1992).
  • Hulse, J. H., Nature, composition and utilization of grain legumes. p. 11-27. In: Uses of tropical Legumes: Proceedings of a Consultants' Meeting, 27-30 March 1989, ICRISAT Center. ICRISAT, Patancheru, A.P. 502 324, India, (1991).
  • Huisman, J., and van der Poel, A. F. B., Aspects of the nutritional quality and use of cool season food legumes in animal feed. p. 53-76. In: F. J. Muehlbauer and W. J. Kaiser (eds.) Expanding the Production and Use of Cool Season Food Legumes. Kluwer Academic Publishers. Dordrecht, The Netherlands, (1994).
  • Murashige, T., and Skoog, F., “A revised medium for rapid growth and bio assays with tobacco tissue cultures”. Physiol. Plant:15: 473-497, (1962).
  • McCabe, D. E., Swain, W. F., Martinell, B. J., Christou, P., Stable transformation of soybean (Glycine max) by particle acceleration. Bio/Technology 6:923– 926, (1988). L., Finer, J., Hinchee, M., Stable transformation via particle bombardment in two different soybean regeneration systems. Plant Cell Rep. 12:408-413, (1993).
  • Yun C. S., High-efficiency Agrobacterium-mediated transformation of soybean. Acta Botanica Sinica. 46 (5):610-617, (2004).
  • Schoreder, H. E., Schotz, A. H., Wardley-Richardson, T., Spencer, D., Higgins, T. J. V., Transformation and regeneration of two cultivars of pea (Pisum Sativum). Plant Physiol 101: 751-757, (1993).
  • Geervani, P., Utilization of chickpea in India and scope for novel and alternative uses. p. 47-54. In: Uses of Tropical Grain Legumes: Proceedings of Consultants' Meeting, 27-30 March, 1989. ICRISAT Center, Patancheru, Andhra Pradesh, India, (1991).
  • Lombari, Ercolano, E., Alooui, H. E., Chiurazzi, M., A new transformation- regeneration procedure in the model legume Lotus japonicus: root explants as a source of large numbers of cells susceptible to Agrobacterium mediated transformation. Plant Cell.Rep:Online Pub.10.1007/s00299-003-0576, (2003).
  • Eapen, S., George, L., Somatic embryogenesis in Cicer arietinum L.- Influence of Genotype and auxins. Biol plantarum : 36(3):343-349, (1994).
  • Jaiwal, K., Ragini, K., Ignacimuthu, S., Potrykus, S., Kumar, I., Potrykus, C., Agrobacterium tumefaciens-mediated genetic transformation of mungbean (Vigna radiata L. Wilczek) a recalcitrant grain legume. Plant-Science: 161: 239- 247, (2001).
  • Gulati, A., Schryer, P., and McHugen, A., Regeneration and Micrografting of lentil shoots. In Vitro Cell Dev Biol- Plant:37:798-802, (2001).
  • Khawar, K. M., and Özcan, S., High frequency shoot regeneration from cotyledonary node explants of different lentil genotypes and in vitro micrografting. Biotech. Biotechnol Eq. 16:12-17, (2002).
  • Mahmoudian, M., “Optimisation of Tissue Culture Conditions and Gene Transfer Studies In Lentil”. Ph.D Thesis, METU, (2000).
  • Wang, K., Herrera-Estrella, M., Van Montagu, M., Zambryski, P., Right 25 bp terminus sequence of the nopaline TDNA is essential fo , and determines the direction of DNA transfer from Agrobacterium to plant genome. Cell: 38:35-41, (1984).
  • Gelvin, S., The introduction and expression of transgenes in Plants. Curr Opin Biotech 9:227-232, (1998).
  • Babaoğlu, M., Davey, M, R., Power, J. B., Genetic engineering of grain legumes:key transformation events. AgbiotechNet, Vol 2, June ABN 050, (2000).
  • Smith, P., Biological fixation of Nitrogen for Ecology and Sustainable Agriculturr. Edited by A. Legocki, H. Bothe , A. pühler. Springer–Verlag, (1997).
  • Fontana, G. S., Santini, L., Caretto, S., Frugis, G., Mariotti, D., Genetic transformation in the grain legume (Cicer arietinum L.). Plant Cell Rep: 12:194-198, (1993).
  • Kar, S., Basu, D., Das, S., Ramakrishnan, N. A., Mukherjee, P., Nayak, P., Sen, S. K., Expression of Cryia(C) Gene of Bacillus-Thuringiensis in Transgenic Chickpea Plants Inhibits Development of Pod-Borer (Heliothis- Armigera) Larvae. Transgenic Res 2: 177-185, (1997).
  • Krishnamurtyhy, K. V., Suhasini, K., Sagare, A. P., Meixner, M., Kathen A., Pickardt, O., Agrobacterium mediated transformation of chickpea (Cicer arietinum L.) embryo axes. Plant Cell Rep 19:235-240, (2000).
  • Kim, J. W., Minamikawa, T., Stable delivery of canavalin promoter beta- glucuronidase gene fusion into French bean by particle bombardment. Plant Cell Physiol 38: 70-75, (1997).
  • Bean, S. J., Gooding, P. M., Mullineaux, P. M., Davies D. R., A simple system for pea transformation. Plant Cell Rep16: 513-519, (1997).
  • Karthikeyan, A. S., Sharma, K. S., Veluthambi, K., Agrobacterium tumefaciens-mediated transformation of (Vigna mungo L) Hepper. Plant Cell Rep 15:328-331, (1996).
  • Trieu, A., Burleigh, S. H., Kardailsky, I. V., Mendoza-Maldonado, I. E., Wersaw, W. K., Blaylock, L. A., Shin, H., Chiou Tzyy., Katagi, H., Dewbre, G. R., Weigel, D., Harrison, M. J., Transformation of Medicago truncatula via infiltration of seedlings or flowering plants with Agrobacterium tumefacience. Plant J 22: 531-541, (2000).
  • Oger, P., Petit, A., Dessaux, Y. A simple technique for direct regeneration of the diploid legume species Lotus Japonicus. Plant sci 116:159-168, (1996).
  • Hinchee, M. A., Connor-Ward, D. V, Newell, C. A, McDonnell, R.E., Sato, S. J, Gasser, C. S., Fischhoff, D. A, Re, D. B., Farley, R. T., Horch, R. B., Atkins, C., Genetic trandformation and Regeneration of Legumes. NATO ASI series Vol G 3, (1988).
  • Siefkes-Boer, H. J., Noonan, M. J., Bullock, D. W., Conner, A. J., Hairy root transformation system in large- seeded grain legumes. Isr J. Plant science 43:1-5, (1995).
  • Singh R., Singh N. P., Datta S., Yodav I. S., and Singh A. P., Agrobacterium- mediated transformation of chickpea using shoot meristem. Ind J. Biot. Vol. 8, pp. 78-84, (2009).
  • Ignacimuthu S., and Prakash S., Agrobacterium- mediated transformation of chickpea with α-amylase inhibitor gene for insect resistance. J. Biosci. 31:339-345, (2006).
  • Oz M. T., Eyidogan F., Yucel M., and Oktem H. A., Optimized selection and regeneration conditions for Agrobacterium-mediated transformation of chickpea cotyledonary nodes. Pak. J. Bot., 41(4): 2043-2054, (2009).
  • Pathak M. R., and Hamzah R. Y., An efficient method of sonication-assisted Agrobacterium-mediated transformation of chickpeas. Plant Cell Tiss. Organ Cult., 93:65-71, (2008).
  • Mohapatra, S. T., Sharma, R. P., Agrobacterium mediated genetic transformation of chickpea, (Cicer arietinum L). Indian J Exp Biol 29:758- 761, (1991).
  • Doyle, J. J. and J. L. Doyle. A Rapid Total DNA Preparation Procedure For Fresh Plant Tissue, Focus, 12, 13-15, 1990.
  • Deblare, R. et all., Efficient octopine Ti plasmid-derived vectors for Agrobacterium-mediated gene transfer to plants. Nucleic Acids Res., Vol. 13, pp. 4777-4788, (1985).
  • Hood, E. E., et all., New Agrobacterium helper plasmids for gene transfer to plants. Transgenic Res: 2:208-218, (1993).
  • Torisky, R, S., Kovacs, L., Avdiushko S., Newman J. D., Hunt A. G., Collins, B., Development of a binary vector system for plant transformation based on the supervirulent Agrobacterium tumefaciens strain Chry5. Plant Cell Rep 17:102−108, (1997).
  • Jefferson, R. A., Plant Mol. Biol. Rep. 5, 387-405, (1987).
  • Singh, K. B., Chickpea (Cicer arietinum L.). Field Crop Res 53:161-170, (1997).
  • Murthy, B. N. S., Murch, S. J., Saxena, P. K., Thidiazuron: A potent regulator of in vitro morphogenesis. In Vitro Cell Dev -Pl 34: 267-275, (1998).
  • Khalafalla, M. M., and Hattori, K., “A combination of thidiazuron and benzyladenine promotes multiple shoot production from cotyledonary node explants of faba bean (Vicia faba L.)”. Plant Growth Regul 27:45-148, (1999).
  • Barna, K. S., and Wakhlu, A. K., Somatic embryogenesis and Plant regeneration from callus cultures of chickpea (Cicer arietinum L.). Plant Cell Rep 12:521-524, (1993).
  • Akbulut, M., Yücel, M., and Oktem, H. A., Analysis and optimization of DNA delivery into chickpea (Cicer arietinum L.) seedlings by Agrobacterium tumefacience. African Journal of Biotechnology, Vol. 7(8), pp. 1011- 1017, (2008).
  • Orczyc, A. M., and Orczyc, W., Study of the factors influencing Agrobacterium mediated transformation of Pea (Pisum Sativum). Mol Breeding 6:185-194, (2000).
  • Warkentin, T. D., and McHughen, A., “Regeneration from lentil cotyledonary nodes and potential of this explant for transformation by Agrobacterium tumefaciens”, LENS Newsletter, Vol. 20, pp. 26-28, (1993).
  • Bechtold, N., Ellis, J., Pelletier, G., In Planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants. C R Acad Sci 316:1194-1199, (1993).
  • Vickers, J. E., Graham, G. C., and Henry, R. J., A protocol for the efficient screening of putatively transformed plants for bar, the selectable marker gene, using the polymerase chain reaction. Plant Molecular Biology Reporter, Vol. 14 (4), pp. 363-368, (1996).
Toplam 49 adet kaynakça vardır.

Ayrıntılar

Diğer ID JA82BP98NK
Bölüm Makale
Yazarlar

Rıdvan Temizgül Bu kişi benim

Mikail Akbulut Bu kişi benim

Yayımlanma Tarihi 1 Şubat 2011
Yayımlandığı Sayı Yıl 2011 Cilt: 27 Sayı: 1

Kaynak Göster

APA Temizgül, R., & Akbulut, M. (2011). Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, 27(1), 1-18.
AMA Temizgül R, Akbulut M. Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. Şubat 2011;27(1):1-18.
Chicago Temizgül, Rıdvan, ve Mikail Akbulut. “Agrobacterium Tumafaciens aracılığıyla Nohut Bitkisi (Cicer Arietinum L.)’ne Gen aktarımı”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 27, sy. 1 (Şubat 2011): 1-18.
EndNote Temizgül R, Akbulut M (01 Şubat 2011) Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 27 1 1–18.
IEEE R. Temizgül ve M. Akbulut, “Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı”, Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, c. 27, sy. 1, ss. 1–18, 2011.
ISNAD Temizgül, Rıdvan - Akbulut, Mikail. “Agrobacterium Tumafaciens aracılığıyla Nohut Bitkisi (Cicer Arietinum L.)’ne Gen aktarımı”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi 27/1 (Şubat 2011), 1-18.
JAMA Temizgül R, Akbulut M. Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. 2011;27:1–18.
MLA Temizgül, Rıdvan ve Mikail Akbulut. “Agrobacterium Tumafaciens aracılığıyla Nohut Bitkisi (Cicer Arietinum L.)’ne Gen aktarımı”. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi, c. 27, sy. 1, 2011, ss. 1-18.
Vancouver Temizgül R, Akbulut M. Agrobacterium tumafaciens aracılığıyla nohut bitkisi (Cicer arietinum L.)’ne gen aktarımı. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Fen Bilimleri Dergisi. 2011;27(1):1-18.

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