246
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Determining the optimum gamma irradiation dose for developing novel maize genotypes

, , , & ORCID Icon
Pages 568-581 | Received 08 Jul 2020, Accepted 09 Nov 2020, Published online: 18 Jan 2021

References

  • Abrahams, P., M. Bateman, T. Beale, V. Clottey, M. Cock, Y. Colmenarez, N. Corniani, et al. 2017. “Fall Armyworm: Impacts and Implications for Africa. Evidence Note (2), September 2017.” Exeter. doi:10.1564/v28_oct_02.
  • Badu-Apraku, B., and M. A. B. Fakorede. 2017. “Maize in Sub-Saharan Africa: Importance and Production Constraints.” In Advances in Genetic Enhancement of Early and Extra-Early Maize for Sub-Saharan Africa, edited by B. Badu-Apraku and M. A. B. Fakorede, 3–10. Springer International Publishing AG. doi:10.1007/978-3-319-64852-1.
  • Cairns, J. E., J. Hellin, K. Sonder, J. L. Araus, J. F. MacRobert, C. Thierfelder, and B. M. Prasanna. 2013. “Adapting Maize Production to Climate Change in Sub-Saharan Africa.” Food Security 5 (3): 345–360. doi:10.1007/s12571-013-0256-x.
  • CIMMYT. 2019. “Stress Tolerant Maize for Africa.” CIMMYT Web Page. https://www.cimmyt.org/projects/stress-tolerant-maize-for-africa-stma/
  • Edmeades, G. O., W. Trevisan, B. M. Prasanna, and H. Campos. 2017. “Tropical Maize (Zea Mays L.).” In Genetic Improvement of Tropical Crops, edited by H. Campos and P. D. S. Caligari, 57–109. Cham, Switzerland: Springer International Publishing. doi:10.1007/978-3-319-59819-2.
  • Ekpa, O., N. Palacios-Rojas, G. Kruseman, V. Fogliano, and A. R. Linnemann. 2018. “Sub-Saharan African Maize-Based Foods: Technological Perspectives to Increase the Food and Nutrition Security Impacts of Maize Breeding Programmes.” Global Food Security 17 (March): 48–56. doi:10.1016/j.gfs.2018.03.007.
  • Fahad, S., A. A. Bajwa, U. Nazir, S. A. Anjum, A. Farooq, A. Zohaib, S. Sadia, et al. 2017. “Crop Production under Drought and Heat Stress: Plant Responses and Management Options.” Frontiers in Plant Science 8:1–16. doi:10.3389/fpls.2017.01147.
  • Gnankambary, K., T. Bénoît, J. Batieno, N. Sawadogo, M. Sawadogo, D. Yonli, and T. J. Ouédraogo. 2019. “Assessment of Radio-Sensitivity for Three Cowpea Genotypes to Gamma Irradiation.” International Journal of Genetics and Molecular Biology 11: 29–33. doi:10.5897/IJGMB2019.0174.
  • Gowthami, R., C. Vanniarajan, J. Souframanien, and A. M. Pillai. 2017. “Comparison of Radiosensitivity of Two Rice (Oryza Sativa L.) Varieties to Gamma Rays and Electron Beam in M1 Generation.” Electronic Journal of Plant Breeding 8 (3): 732–741. doi:10.5958/0975-928X.2017.00111.9.
  • Gwata, E. T., H. Shimelis, and P. M. Matova. 2016. “Potential of Improving Agronomic Attributes in Tropical Legumes Using Two Mutation Breeding Techniques in Southern Africa.” In Alternative Crops and Cropping Systems, edited by P. Konvalina, 71–85. London, UK: InTech. doi:10.5772/62262.
  • Horn, L., and H. Shimelis. 2013. “Scientific Research and Essays Radio-Sensitivity of Selected Cowpea (Vigna Unguiculata) Genotypes to Varying Gamma Irradiation Doses.” Academic Journals 8 (40): 1991–1997. doi:10.5897/SRE2013.5682.
  • IAEA. 2019. “Mutant Variety Database.” Mutant Variety Database. mvd.iaea.org
  • IITA. 2019. “Maize.” Crops. https://www.iita.org/crops/maize/
  • IITA. 2020. “IITA-BIP Sets Record for Maize Production per Hectare in Nigeria.” News and Events. https://www.iita.org/news-item/iita-bip-sets-record-for-maize-production-per-hectare-in-nigeria/
  • Kasoma, C., H. Shimelis, M. Laing, A. I. T. Shayanowako, and I. Mathew. 2020. “Screening of Inbred Lines of Tropical Maize for Resistance to Fall Armyworm, and for Yield and Yield-related Traits.” Crop Protection 136: 105218. doi:10.1016/j.cropro.2020.105218.
  • Kenzhebayeva, S., A. Abekova, S. Atabayeva, G. Yernazarova, N. Omirbekova, G. Zhang, S. Turasheva, S. Asrandina, F. Sarsu, and Y. Wang. 2019. “Mutant Lines of Spring Wheat with Increased Iron, Zinc, and Micronutrients in Grains and Enhanced Bioavailability for Human Health.” BioMed Research International 2019: 1–7. doi:10.1155/2019/9692053.
  • Kornher, L. 2018. “Maize Markets in Eastern and Southern Africa (ESA) in the Context of Climate Change: Background Paper for the State of Agricultural Commodity Markets (SOCO) 2018.” Rome. http://www.fao.org/3/CA2155EN/ca2155en.pdf
  • Lamaoui, M., M. Jemo, R. Datla, and F. Bekkaoui. 2018. “Heat and Drought Stresses in Crops and Approaches for Their Mitigation.” Frontiers in Chemistry 6: 1–14. doi:10.3389/fchem.2018.00026.
  • Lyddon, C. 2018. “Sub-Saharan Africa Falling Short in Grain Production.” World-Grain Newsletter https://www.world-grain.com/articles/10887-sub-saharan-africa-falling-short-in-grain-production
  • Magorokosho, C., K. V. Pixley, and P. Tongoona. 2003. “Selection for Drought Tolerance in Two Tropical Maize Populations.” African Crop Science Journal 11 (3): 151–161.
  • Matova, P. M., C. N. Kamutando, C. Magorokosho, D. Kutywayo, F. Gutsa, and M. Labuschagne. 2020. “Fall‐armyworm Invasion, Control Practices and Prospects of Breeding Fall‐armyworm‐resistant Maize in Sub‐Saharan Africa: A Review.” Crop Science. Accepted manuscript. doi:10.1002/csc2.20317.
  • Mba, C., R. Afza, S. Bado, and S. M. Jain. 2010. “Induced Mutagenesis in Plants Using Physical and Chemical Agents.” In Plant Cell Culture: Essential Methods, edited by M. R. Davey and P. Anthony, 111–130. Toronto, Canada: John Wiley & Sons.
  • Mulungu, K., and J. N. Ng’ombe. 2019. “Climate Change Impacts on Sustainable Maize Production in Sub-Saharan Africa: A Review.” In Maize - Production and Use, edited by A. Hossain, 3–11. London, UK: IntechOpen. doi:10.5772/intechopen.90033.
  • Nyaga, C., M. Gowda, Y. Beyene, W. T. Muriithi, D. Makumbi, M. S. Olsen, L. M. Suresh, J. M. Bright, B. Das, and B. M. Prasanna. 2020. “Genome-Wide Analyses and Prediction of Resistance to Mln in Large Tropical Maize Germplasm.” Genes 11 (1): 16. doi:10.3390/genes11010016.
  • Oladosu, Y., M. Y. Rafii, N. Abdullah, G. Hussin, H. A. Rahim, G. Miah, and M. Usman. 2016. “Principle and Application of Plant Mutagenesis in Crop Improvement : A Review.” Biotechnology & Biotechnological Equipment 30 (1): 1–16. doi:10.1080/13102818.2015.1087333.
  • Ousmane, S. D., W. Elegba, and K. Danso. 2013. “Radio-Sensibility of Pearl Millet (Pennisetum Glaucum (L.) R. BR.) And Cowpea (Vigna Unguiculata (L.) Walp.) Seeds Germination and Seedling Growth.” International Journal of Innovation and Applied Studies 4 (4): 665–671. http://www.issr-journals.org/ijias/abstract.php?article=IJIAS-13-204-23
  • Santpoort, R. 2020. “The Drivers of Maize Area Expansion in Sub-Saharan Africa. How Policies to Boost Maize Production Overlook the Interests of Smallholder Farmers.” Land 9 (3): 68. doi:10.3390/land9030068.
  • Setimela, P. S., C. Magorokosho, R. Lunduka, E. Gasura, D. Makumbi, A. Tarekegne, J. E. Cairns, T. Ndhlela, O. Erenstein, and W. Mwangi. 2017. “On-Farm Yield Gains with Stress-Tolerant Maize in Eastern and Southern Africa.” Agronomy Journal 109 (2): 406–417. doi:10.2134/agronj2015.0540.
  • Shu, Q. Y. 2009. “Induced Plant Mutations in the Genomic Era.” In: Q. Shu (ed.). Proceeding of the International Atomic Energy Agency (IAEA) International Symposium on Mutation Breeding. Vienna: FAO/IAEA. 2008 August 25-29. www.iaea.org
  • Shu, Q. Y., B. P. Forster, and H. Nakagawa. 2012. Plant Mutation Breeding and Biotechnology. Vienna: FAO/IAEA. doi:10.1079/9781780640853.0000.
  • Spencer-Lopes, M. M., B. P. Forster, and L. Jankuloski. 2018. Manual on Mutation Breeding. 3rd ed. Vienna: Food and Agriculture Organization of the United Nations (FAO).
  • Tomlekova, N. B., P. J. White, J. A. Thompson, E. A. Penchev, and S. Nielen. 2017. “Mutation Increasing β - Carotene Concentrations Does Not Adversely Affect Concentrations of Essential Mineral Elements in Pepper Fruit.” PlosOne 12 (2): e0172180. doi:10.1371/journal.pone.0172180.
  • Van Harten, A. M. 1998. Mutation Breeding: Theory and Practical Applications. Cambridge: Cambridge University Press.
  • VIB. 2017. “Maize in Africa” Ghent: International Plant Biotechnology Outreach. http://www.vib.be/en/about-vib/plant-biotech-news/Documents/VIB_MaizeInAfrica_EN_2017.pdf
  • Wanga, M. A., H. Shimelis, L. N. Horn, and F. Sarsu. 2020. “The Effect of Single and Combined Use of Gamma Radiation and Ethylmethane Sulfonate on Early Growth Parameters in Sorghum.” Plants 9 (7): 1–15. doi:10.3390/plants9070827.
  • Wickham, H. 2016. Ggplot2: Elegant Graphics for Data Analysis. 2nd ed. Cham, Switzerland: Springer. doi:10.1007/978-3-319-24277-4.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.