Have a personal or library account? Click to login
Combining Ability Analysis of Ear Characteristics of Sweet Corn Hybrids Suitable for Organic Crop Production Cover

Combining Ability Analysis of Ear Characteristics of Sweet Corn Hybrids Suitable for Organic Crop Production

Open Access
|Dec 2019

References

  1. Acquaah G. 2012. Principles of plant genetics and breeding, 2nd ed. John Wiley & Sons, 760 p.10.1002/9781118313718
  2. Ardelean M., Cordea M., Voichiţa H.A.Ş., Bors A. 2012. G × E interaction on yield stability of five sweet corn hybrids grown under different agricultural systems. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 40: 290–292. DOI: 10.15835/nbha4017222.10.15835/nbha4017222
  3. Arsode P., Murali Krishna K., Sunil N., Sree V., Ravi Charan A. 2017. Combining ability and heterosis studies for grain yield and its components in hybrids of quality protein maize (Zea mays L.). International Journal of Current Microbiology and Applied Sciences 6(12): 2538–2545. DOI: 10.20546/ijcmas.2017.612.294.10.20546/ijcmas.2017.612.294
  4. Assunção A., Madureira Brasil E., Pereira de Oliveira J., dos Santos Reis A.J., Ferreira Pereira A., Gomes Bueno L., Ribeiro Ramos M. 2010. Heterosis performance in industrial and yield components of sweet corn. Crop Breeding and Applied Biotechnology 10(3): 183–190. DOI: 10.1590/s1984-70332010000300001.10.1590/S1984-70332010000300001
  5. Baker R.J. 1978. Issues in diallel analysis. Crop Science 18(4): 533–536. DOI: 10.2135/cropsci1978.0011183x001800040001x.10.2135/cropsci1978.0011183X001800040001x
  6. Ceccarelli S. 2015. Efficiency of plant breeding. Crop Science 55: 87–97. DOI: 10.2135/cropsci2014.02.0158.10.2135/cropsci2014.02.0158
  7. Dickert T.E., Tracy W.F. 2002. Heterosis for flowering time and agronomic traits among early open-pollinated sweet corn cultivars. Journal of the American Society for Horticultural Science 127(5): 793–797. DOI: 10.21273/jashs.127.5.793.10.21273/JASHS.127.5.793
  8. Efthimiadou A., Bilalis D., Karkanis A., Froud-Williams B., Eleftherochorinos I. 2009. Effects of cultural system (organic and conventional) on growth, photosynthesis and yield components of sweet corn (Zea mays L.) under semi-arid environment. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 37(2): 104–111. DOI: 10.15835/nbha3723201.
  9. Erdal Ş., Pamukçu M., Savur O., Tezel M. 2011. Evaluation of developed standard sweet corn (Zea mays sacharata L.) hybrids for fresh yield, yield components and quality parameters. Turkish Journal of Field Crops 16: 153–156.
  10. Fahrurrozi, Muktamar Z., Dwatmadji, Setyowati N., Sudjatmiko S., Chozin M. 2016. Growth and yield responses of three sweet corn (Zea mays L. var. Saccharata) varieties to local-based liquid organic fertilizer. International Journal on Advanced Science, Engineering and Information Technology 6(3): 319–323. DOI: 10.18517/ijaseit.6.3.730.10.18517/ijaseit.6.3.730
  11. Gardner C.O., Eberhart S.A. 1966. Analysis and interpretation of the variety cross diallel and related populations. Biometrics 22(3): 439–452. DOI: 10.2307/2528181.10.2307/2528181
  12. Griffing B. 1956a. A generalised treatment of the use of diallel crosses in quantitative inheritance. Heredity 10: 31–50. DOI: 10.1038/hdy.1956.2.10.1038/hdy.1956.2
  13. Griffing B. 1956b. Concept of general and specific combining ability in relation to diallel crossing systems. Australian Journal of Biological Sciences 9: 463–493. DOI: 10.1071/bi9560463.10.1071/BI9560463
  14. Ferreira L.U., Melo P.G.S., Vieira R.F., Lobo Junior M., Pereira H.S., Melo L.C., Oliveira de Souza T.L.P. 2018. Combining ability as a strategy for selecting common bean parents and populations resistant to white mold. Crop Breeding and Applied Biotechnology 18: 276–283. DOI: 10.1590/1984-70332018v18n3a41.10.1590/1984-70332018v18n3a41
  15. Kashiani P., Saleh G., Abdullah N.A.P., Abdullah S.N. 2010. Variation and genetic studies on selected sweet corn inbred lines. Asian Journal of Crop Science 2(2): 78–84. DOI: 10.3923/ajcs.2010.78.84.10.3923/ajcs.2010.78.84
  16. Kashiani P., Saleh G., Abdulla N.A.P., Sin M.A. 2014. Evaluation of genetic variation and relationships among tropical sweet corn inbred lines using agronomic traits. Maydica 59(3): 275–282.
  17. Lazcano C., Revilla P., Malvar R.A., Domínguez J. 2011. Yield and fruit quality of four sweet corn hybrids (Zea mays) under conventional and integrated fertilization with vermicompost. Journal of the Science of Food and Agriculture 91(7): 1244–1253. DOI: 10.1002/jsfa.4306.10.1002/jsfa.430621328364
  18. Muktamar Z., Sudjatmiko S., Chozin M., Setyowati N., Fahrurrozi 2017. Sweet corn performance and its major nutrient uptake following application of vermicompost supplemented with liquid organic fertilizer. International Journal on Advanced Science, Engineering and Information Technology 7(2): 602–608. DOI: 10.18517/ijaseit.7.2.1112.10.18517/ijaseit.7.2.1112
  19. Murmu K., Swain D.K., Ghosh B.C. 2013. Comparative assessment of conventional and organic nutrient management on crop growth and yield and soil fertility in tomato-sweet corn production system. Australian Journal of Crop Science 7(11): 1617–1626.
  20. Myers J., McKenzie L., Mazourek M., Tracy W., Shelton A., Navazio J. 2012. Breeding peas, sweet corn, broccoli, winter squash, and carrots as part of the Northern Organic Vegetable Improvement Collaborative (NOVIC). Proceedings of the 6th Organic Seed Growers Conference: Strengthening Community Seed Systems. USA, pp. 44–45.
  21. O’Sullivan J., Van Acker R., Grohs R., Riddle R. 2015. Improved herbicide efficacy for organically grown vegetables. Organic Agriculture 5(4): 315–322. DOI: 10.1007/s13165-015-0107-5.10.1007/s13165-015-0107-5
  22. Onofri 2010. DSAASTAT a new Excel® VBA macro to perform basic statistical analyses of field trials. Department of Agriculture and Environmental Sciences, University of Perugia, Italy, 10 p.
  23. Ozlem A., Kinaci G., Kinaci E., Kutlu I., Basciftci Z.B., Sonmez K., Evrenosoglu Y. 2013. Genetic variability and association analysis of some quantitative characters in sweet corn. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 41(2): 404–413. DOI: 10.15835/nbha4129175.10.15835/nbha4129175
  24. Saleh G., Yusop M.R., Yap, T.C. 1993. Inbreeding depression and heterosis in sweet corn varieties Manis Madu and Bakti-1. Pertanika Journal of Tropical Agricultural Science 16(3): 209–214.
  25. Samad M.A., Fautrier A.G., McNeil D.L., Sedcole J.R. 1989. General and specific combining ability of reproductive characters, yield, and yield components for yield improvement in pea. New Zealand Journal of Crop and Horticultural Science 17(4): 307–313. DOI: 10.1080/01140671.1989.10428050.10.1080/01140671.1989.10428050
  26. Santos P.H.A.D., Pereira M.G., dos Santos Trindade R., da Cunha K.S., Entringer G.C., Vettorazzi J.C.F. 2014. Agronomic performance of super-sweet corn genotypes in the north of Rio de Janeiro. Crop Breeding and Applied Biotechnology 14(1): 8–14. DOI: 10.1590/s1984-70332014000100002.10.1590/S1984-70332014000100002
  27. Scott A.J., Knott M. 1974. A cluster analysis method for grouping means in the analysis of variance. Biometrics 30: 507–512. DOI: 10.2307/2529204.10.2307/2529204
  28. Shelton A.C., Tracy W.F. 2013. Genetic variation and phenotypic response of 15 sweet corn (Zea mays L.) hybrids to population density. Sustainability 5(6): 2442–2456. DOI: 10.3390/su5062442.10.3390/su5062442
  29. Sprague G.F., Tatum L.A. 1942. General vs. specific combining ability in single crosses of corn. Agronomy Journal 34(10): 923–932. DOI: 10.2134/agronj1942.00021962003400100008x.10.2134/agronj1942.00021962003400100008x
  30. Solomon K.F., Martin I., Zeppa A. 2012. Genetic effects and genetic relationships among shrunken (sh2) sweet corn lines and F1 hybrids. Euphytica 185(3): 385–394. DOI: 10.1007/s10681-011-0555-2.10.1007/s10681-011-0555-2
  31. Srdić J., Pajić Z., Filipović M., Babić M., Sečanski M. 2011. Inheritance of ear yield and its components in sweet corn (Zea mays L. saccharat). Genetika 43(2): 341–348. DOI: 10.2298/gensr1102341s.10.2298/GENSR1102341S
  32. Srdić J., Pajić Z., Filipović M. 2016. Sweet corn (Zea mays L.) fresh ear yield in dependence of genotype and the environment. Selekcija i Semenarstvo 22: 27–33. DOI: 10.5937/selsem1601027s.10.5937/SelSem1601027S
  33. Suzukawa A.K., Pereira C.B., Garcia M.M., Contreras-Soto R.I., Zeffa D.M., Coan M.M.D., Scapim C.A. 2018 Diallel analysis of tropical and temperate sweet and supersweet corn inbred lines. Revista Ciência Agronômica 49: 607–615. DOI: 10.5935/1806-6690.20180069.10.5935/1806-6690.20180069
  34. Teixeira F.F., Paes M.C.D., Gomes e Gama E.E., Filho I.A.P., de Miranda R.A., de Oliveira Guimarães P.E. et al. 2014. BRS Vivi: single-cross super sweet corn hybrid. Crop Breeding and Applied Biotechnology 14: 124–127. DOI: 10.1590/1984-70332014v14n2c21.10.1590/1984-70332014v14n2c21
  35. Waghmode B.R., Sonawane S.V., Tajane D.S. 2015. Differential responses of yield and quality to organic manures in sweet corn [Zea mays (L.) saccharata]. International Journal of Agricultural Sciences 11(2): 229–237. DOI: 10.15740/has/ijas/11.2/229-237.10.15740/HAS/IJAS/11.2/229-237
  36. West J.R., Ruark M.D., Bussan A.J., Colquhoun J.B., Silva E.M. 2016. Nitrogen and weed management for organic sweet corn production on loamy sand. Agronomy Journal 108: 758–769. DOI: 10.2134/agronj2015.0393.10.2134/agronj2015.0393
  37. Zhang Y., Kang M.S., Lamkey K.R. 2005. DIALLELSAS05: A comprehensive program for Griffing’s and Gardner–Eberhart analyses. Agronomy Journal 97(4): 1097–1106. DOI: 10.2134/agronj2004.0260.10.2134/agronj2004.0260
DOI: https://doi.org/10.2478/johr-2019-0013 | Journal eISSN: 2353-3978 | Journal ISSN: 2300-5009
Language: English
Page range: 81 - 90
Submitted on: Mar 1, 2019
|
Accepted on: Aug 1, 2019
|
Published on: Dec 31, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Mohammad Chozin, Sigit Sudjatmiko, published by National Institute of Horticultural Research
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.