Original Article

Evaluating Early Generation Maize Lines for Resistance to Maize Streak Virus Under Artificial Infection Using Molecular Markers

Year: 2025 | Month: June | Volume 18 | Issue 2

References (45)

1.Abebe, D. 2024. Affected, Dispersal, Impacts and Evaluation of Resistance Reaction of maize streak virus. A Mini Review. Journal of Food and Nutrition. https://doi.org/10.58489/2836- 2276/024

View at Google Scholar

2.Aboul-Maaty, N.A.-F. and Oraby, H.A.-S. 2019. Extraction of high-quality genomic DNA from different plant orders applying a modified CTAB-based method. Bulletin of the National Research Centre 2019, 43(1): 1–10.

View at Google Scholar

3.Adu, G.B., Badu-Apraku, B., Akromah, R., Garcia-Oliveira, A.L., Awuku, F.J. and Gedil, M. 2019. Genetic diversity and population structure of early-maturing tropical maize inbred lines using SNP markers. PLoS ONE, 14(4).

View at Google Scholar

4.Afram, Y., Amenorpe, G., Bediako, E.A., Darkwa, A.A., Shandu, S.F., Labuschagne, M.T. and Amegbor, I.K. 2024b. Induction of genetic variability of maize genotypes through radiation revealed mutants resistant to maize streak disease. Applied Radiation and Isotopes, 207: 111279.

View at Google Scholar

5.Awata, L.A.O., Ifie, B.E., Danquah, E., Jumbo, M.B., Suresh, L.M., Gowda, M., Marchelo-Dragga, P.W., Olsen, M.S., Shorinola, O., Yao, N.K., Boddupalli, P.M. and Tongoona, P.B. 2021a. Introgression of Maize Lethal Necrosis Resistance Quantitative Trait Loci Into Susceptible Maize Populations and Validation of the Resistance Under Field Conditions in Naivasha, Kenya. Frontiers in Plant Science, 12: 649308.

View at Google Scholar

6.Bansal, M., Adamski, N.M., Toor, P.I., Kaur, S., Sharma, A., Srivastava, P., Bansal, U., Uauy, C. and Chhuneja, P. 2021. A robust KASP marker for selection of four pairs of linked leaf rust and stripe rust resistance genes introgressed on chromosome arm 5DS from different wheat genomes. Molecular Biology Reports.

View at Google Scholar

7.Cairns, J.E., Chamberlin, J., Rutsaert, P., Voss, R.C., Ndhlela, T. and Magorokosho, C. 2021. Challenges for sustainable maize production of smallholder farmers in sub-Saharan Africa. Journal of Cereal Science, 101: 103274.

View at Google Scholar

8.Cheptoek, R.P., Mochoge, B., Kisaka, O.M., Otieno, E., Maitra, S., Nasar, J. and Seleiman, M.F. 2021. Maize productivity, economic returns and phosphorus use efficiency as influenced by lime, Minjingu Rock Phosphate and NPK inorganic fertilizer. International Journal of Bioresource Science, 8: 47–60.

View at Google Scholar

9.Chivasa, W., Mutanga, O. and Burgueño, J. 2021. UAV-based high-throughput phenotyping to increase prediction and selection accuracy in maize varieties under artificial MSV inoculation. Computers and Electronics in Agriculture, 184: 106128.

View at Google Scholar

10.Cruz, V.P., Vera, M., Pardo, B.G., Taggart, J., Martinez, P., Oliveira, C. and Foresti, F. 2017. Identification and validation of single nucleotide polymorphisms as tools to detect hybridization and population structure in freshwater stingrays. Molecular Ecology Resources, 17(3): 550–556.

View at Google Scholar

11.Garcia-Oliveira, A.L., Menkir, A., Kumar, P.L., Azuh, V., Jacob, O.O. and Gedil, M. 2020. Quantitative trait loci mapping for resistance to maize streak virus in F2:3 population of tropical maize. Cereal Research Communications, 48(2): 195–202.

View at Google Scholar

12.Ghosh, D., Brahmachari, K, Das, A., Hassan, M.M., Mukherjee, P.K., Sarkar, S., Dinda, N.K., Pramanick, B., Moulick, D., Maitra, S. and Hossain, A. 2021 Assessment of energy budgeting and its indicator for sustainable nutrient and weed management in a rice-maize-green gram cropping system. Agronomy, 11(1): 166.

View at Google Scholar

13.Hickey, L.T., N. Hafeez, A., Robinson, H., Jackson, S.A., Leal- Bertioli, S.C.M., Tester, M., Gao, C., Godwin, I.D., Hayes, B.J. and Wulff, B.B.H. 2019. Breeding crops to feed 10 billion. Nature Biotechnology, 37(7): 744–754.

View at Google Scholar

14.Jagtap, A.B., Vikal, Y. and Johal, G.S. 2020. Genome-Wide Development and Validation of Cost-Effective KASP Marker Assays for Genetic Dissection of Heat Stress Tolerance in Maize. International Journal of Molecular Sciences 2020, 21(19): 7386.

View at Google Scholar

15.Jeger, M.J. 2023. Tolerance of plant virus disease: Its genetic, physiological, and epidemiological significance. Food and Energy Security, 12(6): e440.

View at Google Scholar

16.Jiang, T. and Zhou, T. 2023. Unraveling the Mechanisms of Virus-Induced Symptom Development in Plants. Plants 2023, 12(15): 2830.

View at Google Scholar

17.Kadirvel, P., Veerraju, C., Senthilvel, S., Yadav, P., Usha Kiran, B., Shaik, M., Shaw, R., Selvaraj, V.M., Reddy, Y.R., Mohanrao, M.D. and Mukta, N. 2020. Marker-assisted selection for fast-track breeding of high oleic lines in safflower (Carthamus tinctorious L.). Industrial Crops and Products.

View at Google Scholar

18.Karavina, C. 2014. Maize streak virus : A review of pathogen occurrence, biology and management options for smallholder farmers, 9(36): 2736–2742.

View at Google Scholar

19.Kaur, P., Kaila, T., Dhkal, M. and Gaikwad, K. 2022. Chloroplast genome and plant–virus interaction. Bioinformatics in Agriculture: Next Generation Sequencing Era, pp. 419–436.

View at Google Scholar

20.Ladejobi, O., Salaudeen, M.T., Lava Kumar, P., Menkir, A., Adesoye, A., Atiri, G. and Gedil, M. 2018. Mapping of QTLs associated with recovery resistance to streak virus disease in maize. Annals of Agricultural Sciences, 63(1): 115–121.

View at Google Scholar

21.Majeed, Y., Fiaz, S., Teng, W., Rasheed, A., Gillani, S.F.A., Zhu, X., Seleiman, M.F. and Diatt A.A. 2023. Evaluation of twenty genotypes of wheat (Triticum aestivum L.) grown under heat stress during germination stage. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 51(2): 13207.

View at Google Scholar

22.Manasa, P., Sairam, M. and Maitra, S. 2021. Influence of maize-legume intercropping system on growth and productivity of crops, International Journal of Bioresource Science, 8(1): 47-60.

View at Google Scholar

23.Martin, D.P. and Monjane, A. 2020. Maize Streak Virus (Geminiviridae). January.

View at Google Scholar

24.Mohapatra, P.P., Seleiman, M.F., Mandal, R., Pramanik, K., Maity, T.K., Tarafdar, J., Das, S.P., Raj, A.C., Jena, C., Alenazi, M.M., Sow, S., Ranjan, S., Ahmad, A. and Khan, N. 2023. Efficiency of RAPD and SSR markers in assessing genetic diversity in summer onion (Allium cepa L.) genotypes. Notulae Botanicae Horti Agrobotanici Cluj- Napoca, 51(3): 13369.

View at Google Scholar

25.Monjane, A.L., Dellicour, S., Hartnady, P., Oyeniran, K.A., Owor, B.E., Bezeidenhout, M., Linderme, D., Syed, R.A., Donaldson, L., Murray, S., Rybicki, E.P., Kvarnheden, A., Yazdkhasti, E., Lefeuvre, P., Froissart, R., Roumagnac, P., Shepherd, D.N., Harkins, G.W., Suchard, M.A., … Martin, D.P. 2020b. Symptom evolution following the emergence of maize streak virus. ELife, 9.

View at Google Scholar

26.Monjane, L., Harkins, G.W., Martin, D.P., Lemey, P., Lefeuvre, P., Shepherd, D.N., Oluwafemi, S., Simuyandi, M., Zinga, I., Komba, E.K., Lakoutene, D.P., Mandakombo, N., Mboukoulida, J., Semballa, S., Tagne, A., Flett, B., Ramusi, M., Windram, O.P., Syed, R., … Varsani, A. 2011. Reconstructing the History of Maize Streak Virus Strain A Dispersal to Reveal Diversification Hot Spots and its Origin in Southern Africa, 85(18): 9623–9636.

View at Google Scholar

27.Nair, S.K., Babu, R., Magorokosho, C., Mahuku, G., Semagn, K., Beyene, Y., Das, B., Makumbi, D., Lava Kumar, P., Olsen, M. and Boddupalli, P.M. 2015. Fine mapping of Msv1, a major QTL for resistance to Maize Streak Virus leads to development of production markers for breeding pipelines. Theoretical and Applied Genetics, 128(9): 1839–1854.

View at Google Scholar

28.Nasar, J., Wang, G.Y., Zhou, F.J., Zhou, X.B. and Tabl, K.M. 2022. Nitrogen fertilization coupled with foliar application of iron and molybdenum improves shade tolerance of soybean under maize-soybean intercropping. Frontiers in Plant Science, 13: 1014640.

View at Google Scholar

29.Ngeno, V. 2024. Profit efficiency among kenyan maize farmers. Heliyon, 10(2).

View at Google Scholar

30.Offornedo, Q., Menkir, A., Babalola, D. and Gedil, M. 2022. Developing and deploying an efficient genotyping workflow for accelerating maize improvement in developing countries. Gates Open Research, 6.

View at Google Scholar

31.Oliveira, K.M., Laborda, P.R., Garcia, A.A.F., Zagatto Paterniani, M.E.A.G. and De Souza, A.P. 2004. Evaluating genetic relationships between tropical maize inbred lines by means of AFLP profiling. Hereditas.

View at Google Scholar

32.Orebo, D., Shanka, D. and Hadaro, M. 2021. Maize (Zea mays L.) yield response to the effect of blended fertilizer and varieties under supplemental irrigation at Hadero Zuria Kebele, southern Ethiopia. Heliyon, 7(8).

View at Google Scholar

33.Patterson, E.L., Flemin, M.B., Kessler, K.C., Nissen, S.J. and Gaines, T.A. 2017. A KASP genotyping method to identify northern watermilfoil, Eurasian watermilfoil, and their interspecific hybrids. Frontiers in Plant Science, 8.

View at Google Scholar

34.Redinbaugh, M.G., Lübberstedt, T., Leng, P. and Xu, M. 2018. The Genetics and Genomics of Virus Resistance in Maize. The Maize Genome. Compendium of Plant Genomes, 185–200.

View at Google Scholar

35.Sairam, M., Maitra, S., Sagar, L., Biswas, T., Bárek, V., Brestic, M. and Hossain, A. 2025. Application of precision nutrient tools for the optimization of fertilizer requirements and assessment of the growth and productivity of maize (Zea mays L.) in the northeastern Ghat of India. Journal of Agriculture and Food Research, 21: 101958.

View at Google Scholar

36.Sairam, M., Maitra, S., Sain, S., Gaikwad, D.J. and Sagar, L. 2024. Dry matter accumulation and physiological growth parameters of maize as influenced by different nutrient management practices. Agric. Sci. Dig., 44: 219-25.

View at Google Scholar

37.Sarwar, M. 2020. Insects as transport devices of plant viruses. Applied Plant Virology: Advances, Detection, and Antiviral Strategies, pp. 381–402.

View at Google Scholar

38.Shahane, A.A. and Shivay, Y.S. 2024. Cereal crops: A valid option for bio-fortification and development of nutrientdense food in developing and developed countries in Asia and Africa. Advances in Agronomy, 186: 205–276.

View at Google Scholar

39.Sharma, S.K., Gupta, O.P., Pathaw, N., Sharma, D., Maibam, A., Sharma, P., Sanasam, J., Karkute, S.G., Kumar, S. and Bhattacharjee, B. 2021. CRISPR-Cas-Led Revolution in Diagnosis and Management of Emerging Plant Viruses: New Avenues Toward Food and Nutritional Security. Frontiers in Nutrition, 8: 751512.

View at Google Scholar

40.Sime, S.S., Menkir, A., Adetimirin, V.O., Gedil, M. and Kumar, P.L. 2021. Validation of diagnostic markers for streak virus disease resistance in Maize. Agriculture (Switzerland), 11(2): 1–11.

View at Google Scholar

41.Simko, I. and Piepho, H. 2012. Analytical and Theoretical Plant Pathology e - X tra. The Area Under the Disease Progress Stairs: Calculation, Advantage, and Application, 102(4): 381–389.

View at Google Scholar

42.Tatineni, S. and Hein, G.L. 2023. Plant Viruses of Agricultural Importance: Current and Future Perspectives of Virus Disease Management Strategies. Phytopathology, 113(2): 117–141.

View at Google Scholar

43.Welz, H.G., Schechert, A., Pernet, A., Pixley, K.V. and Geiger, H.H. 1998. A gene for resistance to the maize streak virus in the African CIMMYT maize inbred line CML202. Molecular Breeding, 4(2): 147–154.

View at Google Scholar

44.Wosula, E.N., McMechan, A.J., Knoell, E., Tatineni, S., Wegulo, S.N. and Hein, G.L. 2018. Impact of timing and method of virus inoculation on the severity of wheat streak mosaic disease. Plant Disease, 102(3): 645–650.

View at Google Scholar

45.Ying, X., Bera, S., Liu, J., Toscano-Morales, R., Jang, C., Yang, S., Ho, J. and Simon, A.E. 2024. Umbravirus-like RNA viruses are capable of independent systemic plant infection in the absence of encoded movement proteins. PLOS Biology, 22(4): e3002600.

View at Google Scholar

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