Startseite Magnitude and Nature of Gene Effects Controlling Oil Content and Quality Components in Sunflower (Helianthus Annuus L.)
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Magnitude and Nature of Gene Effects Controlling Oil Content and Quality Components in Sunflower (Helianthus Annuus L.)

  • Ravneet Kaur Chahal , S. K. Dhillon , S. S. Kandhola , Gurpreet Kaur , Vineeta Kaila und Vikrant Tyagi EMAIL logo
Veröffentlicht/Copyright: 9. November 2018
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Helia
Aus der Zeitschrift Helia Band 42 Heft 70

Abstract

The present research aimed to study gene effects for oil content and fatty acid composition in sunflower. It involved a set of 92 hybrids developed by crossing four CMS lines with 23 perfect restorers. Experiment was conducted at experimental field area of Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana, Punjab, India. The data was recorded on oil content and quality traits. The analysis of variance revealed significant differences among the traits studied. Among the lines; CMS 42A was observed to have higher significant positive gca effects for oil content, linoleic acid & linolenic acid and higher significant negative gca effects for palmitic acid and stearic acid, whereas, for oleic acid line, CMS 40A had higher positive gca effects. Among the testers, TSG 275 had higher significant positive gca effects for linolenic acid and significant negative gca effects for stearic acid. High positive gca effects for oleic acid and oil content were observed for TSG 331. The tester OPH 91 was good combiner with high positive gca effects for oleic acid and negative gca effects for palmitic acid, whereas, tester TSG 288 exhibited highest positive gca effects for linoleic acid. The best cross combinations; CMS 40A×TSG 259, CMS 607A×TSG 271 and CMS 40A×OPH 73 showed significant specific combining ability effects for oil content and cross CMS 40A×TSG 289 had significant specific combining ability for oleic acid and linoleic acid. The cross combination CMS 40A×TSG 259 is giving a significant jump of over 12 % against the current commercial check for oil percentage and for other quality traits more than 50 % over the standard check, which is significant for undertaking improvement of hybrid for oil quality.

References

Appelqvist, L.A., 1968. Rapid methods of lipid extraction and fatty acid ester preparation for seed and leaf tissue with special remarks on preventing the accumulation of lipid contaminants. Ark kenci 28: 351–370.Suche in Google Scholar

Arshad, M., Khan, M.A., Jadoon, S.A., Mohamad, A.S., 2010. Factor analysis in sunflower (Helianthus annus L.) to investigate desirable hybrids. Pakistan Journal of Botany 42: 4393–4402.Suche in Google Scholar

Aslam, S., Khan, S.K., Saleem, M., Qureshi, A.S., Khan, A., Islam, M., Khan, S.M., 2010. Heterosis for the improvement of oil quality in sunflower (Helianthus annuus L.). Pakistan Journal of Botany 4: 1003–1008.Suche in Google Scholar

Carvalho, C.G.P., 2003. Informes de avaliação de genótipos de girassol, 2002/2003, Embrapa Soja, Londrina, 97p (Embrapa Soja. Documentos, 226).Suche in Google Scholar

Dhillon, S.K., Tyagi, V., 2016. Combining ability studies for development of new sunflower hybrids based on diverse cytoplasmic sources. Helia 39: 71–80.10.1515/helia-2015-0005Suche in Google Scholar

Doty, H.O., 1978. Future of sunflower. In: Carter, J.F. (ed.) Sunflower Science and Technology, Agron, Honogr, 19 ASA CSSA and SSCA, Madison, WI, pp. 441–448.Suche in Google Scholar

Dudhe, M.Y., Moon, M.K., Lande, S.S., 2009. Evaluation of restorer lines for heterosis studies on sunflower (Helianthus annuus L.). Journal of Oilseeds Research 26: 140–141.Suche in Google Scholar

Friedt, W., Ganssmann, M., Korell, M., 1994. Improvement of sunflower oil quality. In: Proc EUCARPIA – Symposium on Breeding of Oil and Protein Crops, September 22–24. Albena, Bulgaria, pp. 1–30.Suche in Google Scholar

Grundy, S.M., 1986. Comparison of mono- unsaturated fatty acids and carbohydrates of lowering plasma cholesterol. North England Journal of Medicine 314: 745748.10.1056/NEJM198603203141204Suche in Google Scholar

Hladni, N., Skoric, D., Jocic, S., Kraljevic-Balalic, M., Dusanic, N., 2011. Line x tester analysis for yield components in sunflower and their correlations with seed yield (Helianthus annuus L.). Genetika 43: 297–306.10.2298/GENSR1102297HSuche in Google Scholar

ISO 10565: 1998. Oilseeds- Simultaneous determination of oil and water contents- Method using pulsed nuclear magnetic resonance spectrometry.Suche in Google Scholar

Jabrino, E., Tarquis, A.M., Diaz, M.C., 2003. Modelling the oleic acid content in sunflower oil. Agronomy Journal 95: 329–334.10.2134/agronj2003.3290Suche in Google Scholar

Joksimović, J., Atlagić, J., Marinković, R., Jovanović, D., 2006. Genetic control of oleic and linoleic acid contents in sunflower. Helia 29: 33–40.10.2298/HEL0644033JSuche in Google Scholar

Kadkol, G.P., Anand, I.J., Sharma, R.P., 1984. Combining ability and heterosis in sunflower. Indian Journal of Genetics and Plant Breeding 44: 447–451.Suche in Google Scholar

Karasu, A., Oz, M., Sincik, M., Goksoy, A.T., Turan, M.Z., 2010. Combining ability and heterosis for yield and yield components in sunflower. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 38: 260–264.Suche in Google Scholar

Kaya, Y., Atakisi, I.K., 2004. Combining ability analysis of some yield characters of sunflower (Helianthus annuus L.). Helia 27: 75–84.10.2298/HEL0441075YSuche in Google Scholar

Khalil, I.A., Shah, H., Yasmeen, F., Mumtaz, M.A., 2000. Seed yield and fatty acid profile of sunflower hybrids. Sarhad Journal of Agriculture 16: 601–604.Suche in Google Scholar

Khan, H., Rahaman, H.U., Ahmad, H., Alli, H., Alam, M., 2008. Magnitude of combining ability of sunflower genotypes in different environments. Pakistan Journal of Botany 40: 151–160.Suche in Google Scholar

Lopez, P.M., Trapani, N., Sadras, V., 2000. Genetic improvement of sunflower in Argentina between 1930 and 1995. III. Dry matter partitioning and achene composition. Field Crops Research 67: 215–221.10.1016/S0378-4290(00)00096-4Suche in Google Scholar

Madhavilatha, K., Reddy, A.V.V., Reddy, G.L., 2004. Studies on genetic nature of yield and its components in sunflower, (Helianthus annuus L.). Journal of Oilseeds Research 21: 252–256.Suche in Google Scholar

Mijić, A., Kozumplik, V., Kovačević, J., Liović, I., Krizmanić, M., Duvnjak, T., Gunjača, J., 2008. Combining abilities and gene effects on sunflower grain yield, oil content and oil yield. Periodicum biologorum 110: 277–284.Suche in Google Scholar

Nasreen, S., Ishaque, M., Khan, M.A., Saleem-Ud-Din, Gilani, S.M., 2014. Combining ability analysis for seed proteins, oil content and fatty acids composition in sunflower (Helianthus annuus L.). Pakistan Journal of Agricultural Research 27: 174–187.Suche in Google Scholar

Ortegon-Morales, A.S., Escobedo-Mendoza, A., Quilantan-Villarreal, L., 1992. Combining ability of sunflower (Helianthus annuus L.) lines and comparison among parent lines and hybrids. In: Proc. of the 13th Inter. Sunf. Conf. Pisa. Italy, pp. 1178–1193.Suche in Google Scholar

Ortis, L., Nestures, G., Frutos, E., Machado, N., 2005. Combining ability analysis for agronomic traits in sunflower (Helianthus annuus L.). Helia 28: 125–134.10.2298/HEL0543125OSuche in Google Scholar

Rojas, P., Fernández-Martínez, J.M., 1998. Combining ability of oil and protein among six sunflower lines. In: Proc. of the EUCARPIA-International Symposium on Breeding of Protein and Oil Crops. Pontevedra, Spain, pp. 1–4.Suche in Google Scholar

Sakthivel, K., 2003. Line x tester analysis for combining ability in kharif sunflower (Helianthus annuus L.). Journal of Ecobiology 15: 299–303.Suche in Google Scholar

Salem, A.H., Ali, M.A., 2012. Combining ability for sunflower yield contributing characters and oil content over different water supply environments. Journal of American Science 8: 227–233.Suche in Google Scholar

Sawargaonkar, S.L., Ghodke, M.K., 2008. Heterosis in relation to combining ability in restorer lines of sunflower. Helia 31: 95–100.10.2298/HEL0848095SSuche in Google Scholar

Shamshad, M., Dhillon, S.K., Kaur, G., 2016. Heterosis for oil content and oil quality in sunflower (Helianthus annuus L.). Current Advances in Agricultural Sciences 8: 44–48.10.5958/2394-4471.2016.00010.1Suche in Google Scholar

Singh, R.K., Choudhary, B.D., 1976. Biometrical Techniques in Genetics and Breeding, Int. Bioscience Publishers, Hisar.Suche in Google Scholar

Škorić, D., Jocić, S., Molnar, I., 2000. General (GCA) and specific (SCA) combining abilities in sunflower. Proc. of 15th Inter. Sunf. Conf.. Toulouse, France, pp. 23–30.Suche in Google Scholar

Sujatha, M., Reddy, A.V., 2009. Heterosis and combining ability for seed yield and other yield contributing characters in sunflower (Helianthus annuus L.). Journal of Oilseeds Research 26: 21–31.Suche in Google Scholar

Tyagi, V., Dhillon, S.K., 2016. Cytoplasmic effects on combining ability for agronomic traits in sunflower under different irrigation regimes. Subrao Journal of Breeding and Genetics 48: 295–308.Suche in Google Scholar

Tyagi, V., Dhillon, S.K., Bajaj, R.K., Kaur, G., 2012. Combining ability for oil content and its association with other yields components in sunflower (Helianthus annuus L.). Int conference on sustainable agric for food and livelihood security, pp. 27–29.Suche in Google Scholar

Tyagi, V., Dhillon, S.K., Kaushik, P., Kaur, G., 2018. Characterization for drought tolerance and physiological efficiency in novel cytoplasmic male sterile sources of sunflower (Helianthus annuus L.). Agronomy 8: 232.10.3390/agronomy8100232Suche in Google Scholar

Received: 2018-04-22
Accepted: 2018-10-31
Published Online: 2018-11-09
Published in Print: 2019-07-26

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