Combining ability analyses of grain yield and kernel micronutrient content in maize (Zea mays)
356 / 290
Keywords:
Combining ability, Kernel microutrient, Line × TesterAbstract
The present study was aimed to assess the general combining ability of parents and specific combining ability of their crosses for yield and yield related traits. Nine inbred lines were crossed with two testers using line × tester mating design. Nine lines, two testers and 18 experimental hybrids were evaluated along with two checks in this study for grain yield and protein content, besides kernel micronutrients (phosphorous, caicium and iron) during kharif 2019 in a randomized block design at experimental farm of BAC, Sabour. The line CLQRCY44 and HKI1532 were found as good general combiner for grain yield and quality traits followed by DHOLI inbred 55 and CLO2450. Lines DHOLI inbred 55 and CML451 were found as good general combiner for earliness, lines CLQRCY44, CLO2450 and DHOLI 55 for quality traits like protein content, calcium content, phosphorous and iron content. Among the crosses, HKI1532 × 95IOWA (67.43 q/ha), LM13 × SUWAN (65.87 q/ha) and CML425 × SUWAN (63.30 q/ha) were the promising crosses for grain yield. CLO2450 × SUWAN and LM13 × SUWAN exhibited highly significant and desirable SCA effects for grain yield. CLO2450 × 95IOWA exhibited highly significant and desirable SCA effects for protein content. HKI1532 × 95IOWA (67.43 q/ha) was the promising hybrid for grain yield and micronutrient content. Therefore, these crosses can be utilized for developing high yielding micronutrient enriched hybrid varieties in maize (Zea mays L).
Downloads
References
Abuali A I, Abdelmulla A A, Khalafalla M M, Idris A E and Osman A M. 2012. Combining ability and heterosis for yield and yield components in maize (Zea mays L.). Australian Journal of Basic and Applied Sciences 6(10): 36–41.
Alamerew S and Warsi M. 2015. Heterosis and combining ability of sub tropical maize inbred lines. African Crop Science Journal 23: 123–33.
Amiruzzaman M, Islam M, Pixley K and Rohman M. 2011. Heterosis and combining ability of CIMMYT's, tropical x subtropical quality protein maize germplasm. Journal of Sustainable Agriculture 3(3):76-81.
Dar Z A, Lone A A, Elahi B A, Dar S A, Ali G, Abidi I, Lone R A, Gulzar S and Yousuf N. 2017. Genetic variation in maize inbred lines under temperate conditions. Journal of Experimental Biology and Agriculture Sciences 5(2): 215–19. DOI: https://doi.org/10.18006/2017.5(2).215.219
Gamechu G and Abu N E. 2020. Combining ability of maize inbred lines (Zea mays L.) for yields in mid altitude sub-humid Agroecology of Ethiopia. African Journal of Plant Science 14(6): 231–42. DOI: https://doi.org/10.5897/AJPS2019.1908
Girma C, Sentayehu A, Berhanu T and Temesgen M. 2015. Test cross performance and combining ability of maize (Zea mays L.) inbred lines at Bako, Western Ethiopia. Global Journal of Science Frontier Research 15(4):1–24.
Kanagarasu S, Nallathambi G and Ganesan K N. 2010. Combining ability analysis for yield and its component traits in maize (Zea mays L.). Electronic Journal of Plant Breeding 1(4): 915–20.
Khan SU, Hidayat R, Iqbal M, Ullah G, Khalil IA, Ali M, Zaid IU and Monsif R. 2014. Combining ability studies in maize (Zea mays L.) using populations diallel. International Journal of Basic and Applied Sciences 14(1): 17–23.
Krupakar A, Kumar B and Marker S. 2014. Combining ability for yield and quality traits in single cross hybrids of maize (Zea mays L.). Bioscan 8 (4): 1347–55.
Mohammad Q, Islam M, Golam M D, Rasul A M, Aminul I, Khaleque M A, Mian N I and Jalal U A. 2016. Combining ability and heterosis in maize (Zea mays L.). American Journal of Agricultural and Biological Sciences 4(6): 84–90.
Pavan R, Lohithaswa H C, Prakash G, Wali M C and Shekara B G. 2011. Combining ability analysis of newer inbred lines derived from national yellow pool for grain yield and other quantitative traits in maize (Zea mays L.). Electronic Journal of Plant Breeding 2(3): 310–19.
Pfeiffer W H and McClafferty B. 2007. HarvestPlus: Breeding crops for better nutrition. Crop Science 47(S3): S88-S105. DOI: https://doi.org/10.2135/cropsci2007.09.0020IPBS
Premlatha M, Kalamani A and Nirmalakumari A. 2011. Heterosis and combining ability for grain yield and quality in maize (Zea mays L.). Advances in Environmental Biology 5(6): 1264–66.
Ram L, Singh R, Singh S and Srivastava R. 2015. Heterosis and combining ability studies for quality protein maize. Journal of Crop Breeding and Genetics 3: 1–12. DOI: https://doi.org/10.1007/BF00277702
Tulu D, Tesso B and Girum A. 2018. Heterosis and combining ability analysis of quality protein maize (Zea mays L.) inbred lines adapted to mid-altitude sub-humid agro-ecology of Ethiopia. African Journal of Plant Science 12(3): 47–57.
Downloads
Submitted
Published
Issue
Section
License
Copyright (c) 2021 The Indian Journal of Agricultural Sciences

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
The copyright of the articles published in The Indian Journal of Agricultural Sciences is vested with the Indian Council of Agricultural Research, which reserves the right to enter into any agreement with any organization in India or abroad, for reprography, photocopying, storage and dissemination of information. The Council has no objection to using the material, provided the information is not being utilized for commercial purposes and wherever the information is being used, proper credit is given to ICAR.