Evaluation of maize hybrids for agro-morphological traits and grain yield during winter season at Rampur, Chitwan, Nepal

Authors

  • Bijay Mahato Nepal Polytechnic Institute (NPI), Purbanchal University (PU), Gothgaun, Morang, Nepal
  • Priyanka Bhandari Nepal Polytechnic Institute (NPI), Purbanchal University (PU), Gothgaun, Morang, Nepal
  • Bikal Poudel Nepal Polytechnic Institute (NPI), Purbanchal University (PU), Gothgaun, Morang, Nepal
  • Mahendra Prasad Tripathi National Maize Research Program (NMRP), Nepal Agricultural Research Council (NARC), Kathmandu, Nepal

DOI:

https://doi.org/10.26832/24566632.2025.100208

Keywords:

Agro-morphological traits, Correlation, Grain yield, Maize hybrids

Abstract

Maize is a vital cereal crop in Nepal, contributing to food security and livestock feed. Enhancing its productivity through high-yielding maize hybrids is essential to meet the increasing demand. This study aimed to evaluate the performance of maize hybrids based on agro-morphological traits, yield-attributing parameters, and flowering attributes to identify promising hybrids for cultivation in maize growing regions of Nepal. The experiment was conducted during the winter season of the year 2023 at the National Maize Research Program (NMRP), Rampur, Chitwan, Nepal, using a Randomized Complete Block Design (RCBD) with three replications. Data were collected on days to 50% flowering and silking, plant height, cob height, ear number per hectare, kernel rows per cob, kernel count per row, and grain yield. Analysis of variance (ANOVA) and correlation analysis were performed to assess variability and trait relationships with yield. Results showed the significant (p<0.05/p<0.01) differences among hybrids, with the commercial hybrid SULTAN achieving the highest grain yield (11.00 t/ha), followed by CML161/RML96 (10.68 t/ha) and RML36/RML2244 (9.87 t/ha), both statistically on par with SULTAN. These hybrids outperformed the national checks Rampur Hybrid 10 (4.82 t/ha) and Rampur Hybrid 16 (7.11 t/ha). Correlation analysis indicated strong positive associations between grain yield and plant height, cob height, kernel rows per cob, and kernel count per row. Therefore, maize hybrids demonstrating superior yield potential and favorable trait combinations will advance to multi-location trials, holding promise as future recommendations for the inner terai maize-growing zones of Nepal.

Downloads

Download data is not yet available.

References

Adhikari, B. N., Ghimire, S. K., Pandey, M. P., & Dhakal, K. H. (2024). Performance of single cross maize hybrids for summer planting in western Nepal. Agronomy Journal of Nepal, 8, 70-80. https://doi.org/10.3126/ajn.v8i1.70775

Adhikari, K., Bhandari, S., Aryal, K., Mahato, M., & Shrestha, J. (2021). Effect of different levels of nitrogen on growth and yield of hybrid maize (Zea mays L.) varieties. Journal of Agriculture and Natural Resources, 4(2), 48-62

Annor, B., Badu‐Apraku, B., Nyadanu, D., Akromah, R., & Fakorede, M. A. (2020). Identifying heterotic groups and testers for hybrid development in early maturing yellow maize (Zea mays) for sub‐Saharan Africa. Plant Breeding, 139(4), 708-716. https://doi.org/10.1111/pbr.12822

Bastola, A., Subedi, S., & Bastola, M. (2021). Evaluation of maize genotypes for yield and yield attributes in Chitwan, Nepal. Sarhad Journal of Agriculture, 37(3), 735-741. https://doi.org/10.17582/

Bista, K., Gaire, R., & Devkota, K. (2021). Evaluation of open-pollinated and hybrid maize varieties in the spring season at Baitadi district, Nepal. SAARC Journal of Agriculture, 19(2), 123-136.

Dhakal, S., Sah, S. K., Amgain, L. P., & Dhakal, K. H. (2022). Maize cultivation: present status, major constraints and farmer's perception at Madichaur, Rolpa. Journal of Agriculture and Forestry University, 125-131.

Elmyhun, M., Liyew, C., Shita, A., & Andualem, M. (2020). Combining ability performance and heterotic grouping of maize (Zea mays) inbred lines in testcross formation in Western Amhara, North West Ethiopia. Cogent Food & Agriculture, 6(1), 1727625. https://doi.org/10.1080/23311932.2020.1727625

FAO (2023). Data release. Food and Agriculture Organization of the United Nations. https://www.fao.org/statistics/data-releases/en. Accessed: 17 Jan. 2025.

Gairhe, S., Timsina, K. P., Ghimire, Y. N., Lamichhane, J., Subedi, S., & Shrestha, J. (2021). Production and distribution system of maize seed in Nepal. Heliyon, 7(4), e06775. https://doi.org/10.1016/j.heliyon.2021.e06775

Gautam, J., Adhikari, A., Ale, P., Dhungana, B., Adhikari, A., & Dhakal, K. H. (2022). Analysis of heritability and correlation for yield and yield attributing traits in single cross hybrids of maize. International Journal of Agriculture Environment and Biotechnology, 7(2), 100-110. https://doi.org/10.22161/ijeab

Islam, S., Ferdausi, A., Sweety, A. Y., Das, A., Ferdoush, A., & Haque, M. A. (2020). Morphological characterization and genetic diversity analyses of plant traits contributed to grain yield in maize (Zea mays L.). Journal of Bioscience and Agriculture Research, 25(1), 2047-2059. https://doi.org/10.18801/jbar.250120.251

Jaiswal, P., Banshidhar, S. R. A., & Singh, R. (2019). Estimation of genetic parameters for yield related traits and grain zinc concentration in biofortified inbred lines of maize (Zea mays L.). The Pharma Innovation Journal, 8(3), 87-91. https://doi.org/10.13140/RG.2.2.30550.70727

Joshi, P., & Gautam, D. (2021). Genetic insights on single cross maize hybrid and its importance on maize self-sufficiency in Nepal. Archives of Agriculture and Environmental Science, 6(2), 218-226.

Kafle, S., Adhikari, N. R., Sharma, S., & Shrestha, J. (2020). Performance evaluation of single-cross maize hybrids for flowering and yield traits. Fundamental and Applied Agriculture, 5(4), 590-597. https://doi.org/10.5455/faa.130574

Kandel, B. P., & Shrestha, K. (2020). Performance evaluation of maize hybrids in inner-plains of Nepal. Heliyon, 6(12). https://doi.org/10.1016/j.heliyon.2020.e05542

Kandel, M., Ghimire, S. K., & Shrestha, J. (2018). Mechanisms of heat stress tolerance in maize. Azarian Journal of Agriculture, 5(1), 20-27.

Khanal, K., Acharya, P., Mehta, A., Dabargaiyyan, B., & Kandel, B. P. (2024). Performance evaluation of hybrid maize in Deukhuri, Dang. Vietnam Journal of Agricultural Sciences, 7(4), 2270-2279.

Koirala, K. B., Rijal, T. R., Kc, G., Khan, S., Mahato, D. N., Manandhar, S., & Tripathi, M. P. (2020). Evaluation of maize hybrids in Terai and inner Terai ecological belt of Nepal. Journal of Agriculture and Forestry University, 109-116.

Kulkarni, A. P., Tripathi, M. P., Gautam, D., Koirala, K. B., Kandel, M., Regmi, D., & Zaidi, P. H. (2023a). Impact of adoption of heat-stress tolerant maize hybrid on yield and profitability: Evidence from Terai region of Nepal. Frontiers in Sustainable Food Systems, 7, 1101717.

Kulkarni, A. P., Tripathi, M. P., Gautam, D., Koirala, K. B., Kandel, M., Regmi, D., & Zaidi, P. H. (2023b). Willingness to pay (WTP) for heat-tolerant maize hybrids in the mid-western Terai region of Nepal. Sustainability, 15(4), 3068. https://doi.org/10.3390/su15043068

Kumar, R., Kaur, Y., Das, A. K., Singh, S. B., Patel, M. B., Shahi, J. P., & Zaidi, P. H. (2023). Stability of maize hybrids under drought, rainfed and optimum field conditions revealed through GGE analysis. Indian Journal of Genetics and Plant Breeding, 83(4), 499-507.

Kunwar, C. B., & Shrestha, J. (2014). Evaluating performance of maize hybrids in terai region of Nepal. World Journal of Agricultural Research, 2(1), 22-25.

Magar, B. T., Acharya, S., Gyawali, B., Timilsena, K., Upadhayaya, J., & Shrestha, J. (2021). Genetic variability and trait association in maize (Zea mays L.) varieties for growth and yield traits. Heliyon, 7(9), e07939. https://doi.org/10.1016/j.heliyon.2021.e07939

MoALD (2023). Statistical-Information-on-Nepalese-Agriculture-2079-80-2022-23. Ministry of Agriculture and Livestock Development (2023). Retrieved March 19, 2025.

NARC, Nepal Agricultural Research Council (NARC). (2023, December 13). CIMMYT. https://www.cimmyt.org/funder_partner/nepals-ministry-of-agriculture-and livestock-development/nepal-agricultural-research-council-narc

Neupane, B., Poudel, A., & Wagle, P. (2020). Varietal evaluation of promising maize genotypes in mid hills of Nepal. Journal of Agriculture and Natural Resources, 3(2), 127-139. https://doi.org/10.3126/janr.v3i2.32491

Poudel, R., Kandel, B.P., & Poudel, A. (2024). Performance evaluation and multivariate analysis of maize accessions against drought stress in Lamjung district, Nepal. Discover Agriculture 2, 30. https://doi.org/10.1007/s44279-024-00046-x

Rai, K., Kulung, O., Bhandari, S., Singh, H. G., & Tripathi, M. (2019). Evaluation of single cross maize hybrids during the spring season in Khairahani, Chitwan, Nepal. Journal of Agriculture and Applied Biology, 3(2), 146–158. https://doi.org/10.11594/jaab.03.02.08

Shrestha, S., Niraula, D., Regmi, S., Basnet, S., Chhetri, S. T., & Kandel, B. P. (2023). Performance evaluation and genetic parameters estimation of multi-companies maize hybrids in Lamahi Dang, Nepal. Heliyon, 9(3), e14552. https://doi.org/10.1016/j.heliyon.2023.e14552

Subedi, S., Neupane, S., Koirala, K. B., & Oli, L. (2021). Evaluation of maize genotypes against post flowering stalk rot under terai region of Nepal. Journal of Agriculture and Natural Resources, 4(1), 239-247.

Thapa, S., Rawal, S., & Adhikari, S. (2022). Varietal evaluation of hybrid maize in the summer and winter seasons in terai region of Nepal. Heliyon, 8(11), e11619. https://doi.org/10.1016/j.heliyon.2022.e11619

Tripathi, M. P., & Shrestha, J. (2016). Performance evaluation of commercial maize hybrids across diverse Terai environments during the winter season in Nepal. Journal of Maize Research and Development, 2(1), 1-12. https://doi.org/10.3126/jmrd.v2i1.16210

Tripathi, M. P., Gautam, D., Koirala, K. B., Shrestha, H. K., & Issa, A. B. (2022). Evaluation of pro-vitamin A enriched maize hybrid for fighting hidden hunger in Nepal. Journal of Agriculture and Applied Biology, 3(1), 19 - 27.

Verma, V., Yadav, M. S., Kumar, A., & Gathiye, G. S. 2020). Correlation and path analysis for seed yield and components traits in maize (Zea mays L.). Journal of Pharmacognosy and Phytochemistry, 9(1), 2278–2280.

Wang, X., Li, Y., Han, W., Song, Z., Wang, S., & Yang, J. (2022). Evaluation of root lodging resistance during whole growth stage at the plant level in maize. Scientific Reports, 12(1), 10375. https://doi.org/10.1038/s41598-022-14159-0

Yadav, P., Mehata, D. K., Yadav, B., Adhikari, R., & Lahutiya, V. (2024). Varietal trial of maize (Zea mays L.) for evaluation of growth and yield parameters in Terai region of Nepal. Journal of Agriculture, 7(2), 221-232.

Zhang, J., Dai, L., & Cheng, F. (2021). Identification of corn seeds with different freezing damage degree based on hyperspectral reflectance imaging and deep learning method. Food Analytical Methods, 14, 389-400.

Downloads

Published

2025-06-25

How to Cite

Mahato, B., Bhandari, P., Poudel, B., & Tripathi, M. P. (2025). Evaluation of maize hybrids for agro-morphological traits and grain yield during winter season at Rampur, Chitwan, Nepal. Archives of Agriculture and Environmental Science, 10(2), 242–248. https://doi.org/10.26832/24566632.2025.100208

Issue

Section

Research Articles

Similar Articles

<< < 3 4 5 6 7 8 9 10 11 12 > >> 

You may also start an advanced similarity search for this article.