Research Article
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Year 2020, Volume: 1 Issue: 2, 51 - 57, 30.12.2020

Abstract

References

  • Abdul, N. H., Zakaria, N. H., & Ibrahim, M. A. (2019). Plants as potential repellent against Oryzaephilus species. International Journal of Life Sciences and Biotechnology, 2(3), 243-268.
  • Akalin, E. (2020). İlaç, Sağlık Hizmetleri ve Biyoteknoloji. Türkiye Bilimsel ve Teknolojik Araştırma Kurumu, Ek. 12. https://www.tubitak.gov.tr/tubitak_content_files/vizyon2023/si/EK-12.pdf, Last accessed on November, 2020.
  • Akcay, K., & Kaya, Y. (2019). Isolation, characterization and molecular identification of a halotolerant Bacillus megaterium CTBmeg1 able to grow on halogenated compounds. Biotechnology & Biotechnological Equipment, 33(1), 945-953.
  • Arvas, Y. E., & Kaya, Y. (2019). Genetiği değiştirilmiş bitkilerin biyolojik çeşitliliğe potansiyel etkileri. Yüzüncü Yıl Üniversitesi Tarım Bilimleri Dergisi, 29(1), 168-177.
  • Bahaman, A. H., Wahab, R. A., Abdul Hamid, A. A., Abd Halim, K. B., & Kaya, Y. (2020). Molecular docking and molecular dynamics simulations studies on β-glucosidase and xylanase Trichoderma asperellum to predict degradation order of cellulosic components in oil palm leaves for nanocellulose preparation. Journal of Biomolecular Structure and Dynamics, 1-14.
  • Bakholskaya, N. A., Velikanova, S. S., Kozhushkova, N. V., Sunagatullina, I. I., Kashuba, I. V., & Chernykh, O. P. (2020). The Characteristics of Professional Pedagogy Orientation. Propósitos y Representa-ciones, 8(3), 1-8.
  • Carvalho, G., Fouchet, D., Danesh, G., Godeux, A. S., Laaberki, M. H., Pontier, D., ... & Venner, S. (2020). Bacterial transformation buffers environmental fluctuations through the reversible integration of mobile genetic elements. Mbio, 11(2), e02443-19.
  • Cetinkaya, S., Kocabay, S., & Yenidunya, A. (2020). An investigation of the probiotic properties of Lactobacillus fermentum. International Journal of Life Sciences and Biotechnology, 3(2), 180-191.
  • Chowdhury, M. (2018). Emphasizing morals, values, ethics, and character education in science education and science teaching. MOJES: Malaysian Online Journal of Educational Sciences, 4(2), 1-16.
  • Fári, M. G., & Kralovánszky, U. P. (2006). The founding father of biotechnology: Károly (Karl) Ereky. International Journal of Horticultural Science, 12(1), 9-12.
  • Filiz, E., Vatansever, R., & Ozyigit, I. I. (2017). Bioinformatics database resources for plant transcription factors. In: Hakeem, K., Malik, A., Vardar-Sukan, F., Ozturk, M. (eds) Plant Bioinformatics (pp. 161-177). Springer, Cham.
  • Gardner, E. J. (1965). History of Biology. (pp. 1-376). Burgess Publishing Company.
  • Gul, U. D. (2020). Biyoteknolojik tekniklerle mikrobiyal vitamin üretimi. International Journal of Life Sciences and Biotechno-logy, 3(2), 227-240.
  • Gupta, A., Patel, A. K., Gupta, D., Singh, G., & Mishra, V. K. (2020). Rhizospheric remediation of organic pollutants from the soil; a green and sustainable technology for soil clean up. In: Singh, P., Kumar, A., Borthakur, A. (eds) Abatement of Environmental Pollutants (pp. 263-286). Elsevier.
  • Hasan, H., & Manan, F. A. (2020). Total phenolic and flavonoid content of Elaeis guineensis leaves treated with different amount of nitrogen-potassium fertilizer. International Journal of Life Sciences and Biotechnology, 3(2), 156-163.
  • Hocaoglu-Ozyigit, A., & Genc, B. N. (2020). Cadmium in plants, humans and the environment. Frontiers in Life Sciences and Related Technologies, 1(1), 12-21.
  • Jeronen, E., Palmberg, I., & Yli-Panula, E. (2017). Teaching methods in biology education and sustainability education including outdoor education for promoting sustainability-A literature review. Education Sciences, 7(1), 1-19.
  • Johnson, I. S. (1983). Human insulin from recombinant DNA technology. Science, 219(4585), 632-637.
  • Kaya, Y., Marakli, S., Gozukirmizi, N., Mohamed, E., Javed, M. A., & Huyop, F. (2013). Herbicide tolerance genes derived from bacteria. The Journal of Animal and Plant Sciences, 23(1), 85-91.
  • Klimenko, A. Y. (2017). Notes on advanced engineering education. European Journal of Engineering Education, 42(6), 1378-1407.
  • Kumandas, B., Ateskan, A., & Lane, J. (2019). Misconceptions in biology: a meta-synthesis study of research, 2000-2014. Journal of Biological Education, 53(4), 350-364.
  • Muslem, W. H., Edbeib, M. F., Aksoy, H. M., Kaya, Y., Hamid, A. A. A., Hood, M. H. M., ... & Huyop, F. (2020). Biodegradation of 3-chloropropionic acid (3-CP) by Bacillus cereus WH2 and its in silico enzyme-substrate docking analysis. Journal of Biomolecular Structure and Dynamics, 38(11), 3432-3441.
  • Oyewusi, H. A., Wahab, R. A., Kaya, Y., Edbeib, M. F., & Huyop, F. (2020). Alternative bioremediation agents against haloacids, haloacetates and chlorpyrifos using novel halogen-degrading bacterial isolates from the hypersaline Lake Tuz. Catalysts, 10(6), 651-670.
  • Ozyigit, I. I. (2012). Agrobacterium tumefaciens and its use in plant biotechnology. In: Ashraf, M., Ozturk, M., Ahmad, M., Aksoy, A. (eds) Crop Production for Agricultural Improvement (pp. 317-361). Springer, Dordrecht.
  • Ozyigit, I. I. (2020a). About life sciences and related technologies. Frontiers in Life Sciences and Related Technologies, 1(1), 1-11.
  • Ozyigit, I. I. (2020b). Gene transfer to plants by electroporation: methods and applications. Molecular Biology Reports, 47, 3195-3210.
  • Ozyigit, I. I., Can, H., & Dogan, I. (2020). Phytoremediation using gene-tically engineered plants to remove metals: a review. Environmental Chemistry Letters, 1-30.
  • Ozyigit, I. I., Dogan, I., Artam Tarhan, E. (2013). Agrobacterium rhizogenes-mediated transformation and its biotechnological applications in crops. In: Hakeem, K., Ahmad, P., Ozturk, M. (eds) Crop Improvement (pp. 1-48). Springer, Boston.
  • Plavec, T. V., & Berlec, A. (2020). Safety aspects of genetically modified lactic acid bacteria. Microorganisms, 8(2), 297.
  • Samsulrizal, N. H., Hazuki, M. D., Azmi, N. S. A., Said, Z. S. A. M., Wahab, N. A., & Ramli, Z. (2020). Orthologous revelation between Elaeis guineensis, Arabidopsis thaliana and Solanum lycopersicum. International Journal of Life Sciences and Biotechnology, 3(2), 164-179.
  • Serafini, A. (2013). The epic history of biology. (pp. 1-395). Springer.
  • Subramaniam, Y., Mazlan, N., Hassan, H., Jaafar, J. N., Anua, S. M., Young, T. T., & Al-Humairi, S. N. S. (2020). Antimicrobial activity of Musa acuminata peel extract against gram-positive bacteria. International Journal of Life Sciences and Biotechnology, 3(2), 191-196.
  • Tomic, N., Hadzic, M., Naida, L. K., Ramic, J., & Pojskic, L. (2021). Delphinidin, luteolin and halogenated boroxine modulate CAT gene expression in cultured lymphocytes. International Journal of Life Sciences and Biotechnology, 4(1-2), 25-32.
  • Turan, O., Ozdemir, H., & Demir, G. (2020). Deposition of heavy metals on coniferous tree leaves and soils near heavy urban traffic. Frontiers in Life Sciences and Related Technologies, 1(1), 35-41.
  • Urry, L. A., Cain, M. L., Wasserman, S. A., Minorsky, P. V., Orr, R. B., & Campbell, N. A. (2020). Campbell biology. 12th ed., (pp. 1-1488). Pearson Education, Incorporated.
  • Wahhab, B. H. A., Anuar, N. F. S. K., Wahab, R. A., Al Nimer, M. S., Samsulrizal, N. H., Hamid, A. A. A., ... & Huyop, F. (2020). Identification and characterization of a 2, 2-dichloropropionic acid (2, 2-DCP) degrading alkalotorelant bacterium strain BHS1 isolated from Blue Lake, Turkey. Journal of Tropical Life Science, 10(3), 245-252.
  • Yalcin, I. E., Ozyigit, I. I., Dogan, I., Demir, G., & Yarci, C. (2020). Determining element accumulations in Turkish red pine used as a bioindicator for estimating of existing pollution on both sides of Bosphorus in Istanbul. Fresenius Environmental Bulletin, 29(7), 4963-4972.

Standing of biotechnology subjects found in biology courses of higher education and profiling of prospective teachers for their interests on biotechnology

Year 2020, Volume: 1 Issue: 2, 51 - 57, 30.12.2020

Abstract

In this study, profiling of prospective teachers for their interests on biotechnology in higher education institutions has been conducted and in conjunction with this, the extent of biotechnology subjects in the textbooks of higher education institutions has been investigated. A questionnaire has been prepared to reveal the educational level on biotechnology in higher education institutions and the interest whom prospective teachers have in biotechnology. The prepared questionnaire has been applied to 100 prospective teachers receiving education in the Departments of Physics, Chemistry, Biology, and Applied Sciences Education in Kazim Karabekir Faculty of Education at Ataturk University. As a result of the questionnaire applied to prospective teachers, it has been determined that 54% of the prospective teachers are fond of the subjects related to biotechnology. Also, the assessment carried out for showed that most of the prospective teachers (65%) recognize the importance of biotechnology but also they believe that the subjects of biotechnology in higher education are not covered enough and the information given is not sufficient and the necessary explanations are not made about its importance.  

References

  • Abdul, N. H., Zakaria, N. H., & Ibrahim, M. A. (2019). Plants as potential repellent against Oryzaephilus species. International Journal of Life Sciences and Biotechnology, 2(3), 243-268.
  • Akalin, E. (2020). İlaç, Sağlık Hizmetleri ve Biyoteknoloji. Türkiye Bilimsel ve Teknolojik Araştırma Kurumu, Ek. 12. https://www.tubitak.gov.tr/tubitak_content_files/vizyon2023/si/EK-12.pdf, Last accessed on November, 2020.
  • Akcay, K., & Kaya, Y. (2019). Isolation, characterization and molecular identification of a halotolerant Bacillus megaterium CTBmeg1 able to grow on halogenated compounds. Biotechnology & Biotechnological Equipment, 33(1), 945-953.
  • Arvas, Y. E., & Kaya, Y. (2019). Genetiği değiştirilmiş bitkilerin biyolojik çeşitliliğe potansiyel etkileri. Yüzüncü Yıl Üniversitesi Tarım Bilimleri Dergisi, 29(1), 168-177.
  • Bahaman, A. H., Wahab, R. A., Abdul Hamid, A. A., Abd Halim, K. B., & Kaya, Y. (2020). Molecular docking and molecular dynamics simulations studies on β-glucosidase and xylanase Trichoderma asperellum to predict degradation order of cellulosic components in oil palm leaves for nanocellulose preparation. Journal of Biomolecular Structure and Dynamics, 1-14.
  • Bakholskaya, N. A., Velikanova, S. S., Kozhushkova, N. V., Sunagatullina, I. I., Kashuba, I. V., & Chernykh, O. P. (2020). The Characteristics of Professional Pedagogy Orientation. Propósitos y Representa-ciones, 8(3), 1-8.
  • Carvalho, G., Fouchet, D., Danesh, G., Godeux, A. S., Laaberki, M. H., Pontier, D., ... & Venner, S. (2020). Bacterial transformation buffers environmental fluctuations through the reversible integration of mobile genetic elements. Mbio, 11(2), e02443-19.
  • Cetinkaya, S., Kocabay, S., & Yenidunya, A. (2020). An investigation of the probiotic properties of Lactobacillus fermentum. International Journal of Life Sciences and Biotechnology, 3(2), 180-191.
  • Chowdhury, M. (2018). Emphasizing morals, values, ethics, and character education in science education and science teaching. MOJES: Malaysian Online Journal of Educational Sciences, 4(2), 1-16.
  • Fári, M. G., & Kralovánszky, U. P. (2006). The founding father of biotechnology: Károly (Karl) Ereky. International Journal of Horticultural Science, 12(1), 9-12.
  • Filiz, E., Vatansever, R., & Ozyigit, I. I. (2017). Bioinformatics database resources for plant transcription factors. In: Hakeem, K., Malik, A., Vardar-Sukan, F., Ozturk, M. (eds) Plant Bioinformatics (pp. 161-177). Springer, Cham.
  • Gardner, E. J. (1965). History of Biology. (pp. 1-376). Burgess Publishing Company.
  • Gul, U. D. (2020). Biyoteknolojik tekniklerle mikrobiyal vitamin üretimi. International Journal of Life Sciences and Biotechno-logy, 3(2), 227-240.
  • Gupta, A., Patel, A. K., Gupta, D., Singh, G., & Mishra, V. K. (2020). Rhizospheric remediation of organic pollutants from the soil; a green and sustainable technology for soil clean up. In: Singh, P., Kumar, A., Borthakur, A. (eds) Abatement of Environmental Pollutants (pp. 263-286). Elsevier.
  • Hasan, H., & Manan, F. A. (2020). Total phenolic and flavonoid content of Elaeis guineensis leaves treated with different amount of nitrogen-potassium fertilizer. International Journal of Life Sciences and Biotechnology, 3(2), 156-163.
  • Hocaoglu-Ozyigit, A., & Genc, B. N. (2020). Cadmium in plants, humans and the environment. Frontiers in Life Sciences and Related Technologies, 1(1), 12-21.
  • Jeronen, E., Palmberg, I., & Yli-Panula, E. (2017). Teaching methods in biology education and sustainability education including outdoor education for promoting sustainability-A literature review. Education Sciences, 7(1), 1-19.
  • Johnson, I. S. (1983). Human insulin from recombinant DNA technology. Science, 219(4585), 632-637.
  • Kaya, Y., Marakli, S., Gozukirmizi, N., Mohamed, E., Javed, M. A., & Huyop, F. (2013). Herbicide tolerance genes derived from bacteria. The Journal of Animal and Plant Sciences, 23(1), 85-91.
  • Klimenko, A. Y. (2017). Notes on advanced engineering education. European Journal of Engineering Education, 42(6), 1378-1407.
  • Kumandas, B., Ateskan, A., & Lane, J. (2019). Misconceptions in biology: a meta-synthesis study of research, 2000-2014. Journal of Biological Education, 53(4), 350-364.
  • Muslem, W. H., Edbeib, M. F., Aksoy, H. M., Kaya, Y., Hamid, A. A. A., Hood, M. H. M., ... & Huyop, F. (2020). Biodegradation of 3-chloropropionic acid (3-CP) by Bacillus cereus WH2 and its in silico enzyme-substrate docking analysis. Journal of Biomolecular Structure and Dynamics, 38(11), 3432-3441.
  • Oyewusi, H. A., Wahab, R. A., Kaya, Y., Edbeib, M. F., & Huyop, F. (2020). Alternative bioremediation agents against haloacids, haloacetates and chlorpyrifos using novel halogen-degrading bacterial isolates from the hypersaline Lake Tuz. Catalysts, 10(6), 651-670.
  • Ozyigit, I. I. (2012). Agrobacterium tumefaciens and its use in plant biotechnology. In: Ashraf, M., Ozturk, M., Ahmad, M., Aksoy, A. (eds) Crop Production for Agricultural Improvement (pp. 317-361). Springer, Dordrecht.
  • Ozyigit, I. I. (2020a). About life sciences and related technologies. Frontiers in Life Sciences and Related Technologies, 1(1), 1-11.
  • Ozyigit, I. I. (2020b). Gene transfer to plants by electroporation: methods and applications. Molecular Biology Reports, 47, 3195-3210.
  • Ozyigit, I. I., Can, H., & Dogan, I. (2020). Phytoremediation using gene-tically engineered plants to remove metals: a review. Environmental Chemistry Letters, 1-30.
  • Ozyigit, I. I., Dogan, I., Artam Tarhan, E. (2013). Agrobacterium rhizogenes-mediated transformation and its biotechnological applications in crops. In: Hakeem, K., Ahmad, P., Ozturk, M. (eds) Crop Improvement (pp. 1-48). Springer, Boston.
  • Plavec, T. V., & Berlec, A. (2020). Safety aspects of genetically modified lactic acid bacteria. Microorganisms, 8(2), 297.
  • Samsulrizal, N. H., Hazuki, M. D., Azmi, N. S. A., Said, Z. S. A. M., Wahab, N. A., & Ramli, Z. (2020). Orthologous revelation between Elaeis guineensis, Arabidopsis thaliana and Solanum lycopersicum. International Journal of Life Sciences and Biotechnology, 3(2), 164-179.
  • Serafini, A. (2013). The epic history of biology. (pp. 1-395). Springer.
  • Subramaniam, Y., Mazlan, N., Hassan, H., Jaafar, J. N., Anua, S. M., Young, T. T., & Al-Humairi, S. N. S. (2020). Antimicrobial activity of Musa acuminata peel extract against gram-positive bacteria. International Journal of Life Sciences and Biotechnology, 3(2), 191-196.
  • Tomic, N., Hadzic, M., Naida, L. K., Ramic, J., & Pojskic, L. (2021). Delphinidin, luteolin and halogenated boroxine modulate CAT gene expression in cultured lymphocytes. International Journal of Life Sciences and Biotechnology, 4(1-2), 25-32.
  • Turan, O., Ozdemir, H., & Demir, G. (2020). Deposition of heavy metals on coniferous tree leaves and soils near heavy urban traffic. Frontiers in Life Sciences and Related Technologies, 1(1), 35-41.
  • Urry, L. A., Cain, M. L., Wasserman, S. A., Minorsky, P. V., Orr, R. B., & Campbell, N. A. (2020). Campbell biology. 12th ed., (pp. 1-1488). Pearson Education, Incorporated.
  • Wahhab, B. H. A., Anuar, N. F. S. K., Wahab, R. A., Al Nimer, M. S., Samsulrizal, N. H., Hamid, A. A. A., ... & Huyop, F. (2020). Identification and characterization of a 2, 2-dichloropropionic acid (2, 2-DCP) degrading alkalotorelant bacterium strain BHS1 isolated from Blue Lake, Turkey. Journal of Tropical Life Science, 10(3), 245-252.
  • Yalcin, I. E., Ozyigit, I. I., Dogan, I., Demir, G., & Yarci, C. (2020). Determining element accumulations in Turkish red pine used as a bioindicator for estimating of existing pollution on both sides of Bosphorus in Istanbul. Fresenius Environmental Bulletin, 29(7), 4963-4972.
There are 37 citations in total.

Details

Primary Language English
Journal Section Research Articles
Authors

Ali Aslan 0000-0002-5122-6646

Tubanur Aslan Engin This is me 0000-0003-2885-8829

Gülbübü Kurmanbekova 0000-0002-4340-0886

Fethi Kayalar 0000-0001-6142-4243

Filiz Kayalar 0000-0001-7739-5256

Yalçın Karagöz 0000-0002-4835-4508

Adem Engin 0000-0002-1148-1597

Publication Date December 30, 2020
Submission Date November 4, 2020
Published in Issue Year 2020 Volume: 1 Issue: 2

Cite

APA Aslan, A., Aslan Engin, T., Kurmanbekova, G., Kayalar, F., et al. (2020). Standing of biotechnology subjects found in biology courses of higher education and profiling of prospective teachers for their interests on biotechnology. Frontiers in Life Sciences and Related Technologies, 1(2), 51-57.

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