Analysis of genetic determination of yield components traits in F1 and F2 generations of winter wheat diallel crosses

Jerzy Nawracała

jerzy.nawracala@up.poznan.pl
Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu (Poland)

Tadeusz Łuczkiewicz


Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu (Poland)

Stanisław Dyba


Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu (Poland)

Abstract

Eleven winter wheat varieties, differing in agronomic and quality traits, were chosen for diallel crosses (Griffing’s model II). Two experiments: with F1 and F2 generations (55 hybrids and their parents for each) were carried out at the ARS in Dłoń in 2004. Both experiments were performed in randomised block design with three replications. Heritability and genetic components for morpholohgical and yield components traits were calculated. The additive genes action was significant in determination of all examined traits in F1 and F2 generations. Dominance had a significant effect on plant height, number of spikes per plant in both generations, and on number of spikelets per spike and weight of grain per spike in F2 generation. Nonadditive component (H1) was higher than additive (D) for number of spikes in both generations. Differences were found between generations for heritability in broad sense for number of grains per spike, and for heritability in narrow sense for weight of grains per spike. Similarity between generations F1 and F2 in evaluation of additive, nonadditive genetic components and dominance was higher than evaluation of heritability in broad and narrow sense.


Keywords:

diallel analysis, genetic components, heritability, winter wheat

Bhavasar V. V., Chavan V. W., Panvar B. B. 1996. Phenotypic stability for grain yield in bread wheat. Ann. Agric. Res. 17: 292 — 294.
Google Scholar

Borojevic S. 1990. Principles and methods of plant breeding. Elsevier, Amsterdam – Oxford – New York – Tokyo.
Google Scholar

Bos I., Caligari P. 1995. Selection methods in plant breeding. Chapman & Hall, London.
Google Scholar

Bujak H. 2000. Analiza dziedziczenia cech ilościowych żyta. Biul. IHAR 216:43 — 54.
Google Scholar

Dere S., Yildirim M. B. 2006. Inheritance of plant height, tiller number per plant, spike height and 1000-kernel weight in a 8x8 diallel cross population of bread wheat. Cereal Res. Commun. 34 (2–3): 965 — 972.
Google Scholar

Dobek A., Kaczmarek Z., Kiełczewska H,. Łuczkiewicz T. 1983 a. Podstawy i teoretyczne analizy krzyżówek diallelicznych. Część I. Analiza wariancji pełnej tablicy diallelicznej wyników doświadczenia w blokach kompletnych. Biul. IHAR 151: 9 — 18.
Google Scholar

Dobek A., Kaczmarek Z., Kiełczewska H,. Łuczkiewicz T. 1983 b. Podstawy i teoretyczne analizy krzyżówek diallelicznych. Część II. Analiza genetyczna pełnej tablicy diallelicznej wyników doświadczenia w blokach kompletnych. Biul. IHAR 151: 19 — 29.
Google Scholar

Drozd D. 1993. Określenie stosunku GCA:SCA u pszenicy jarej i jego interpretacja genetyczna. Zeszyty Naukowe AR w Wrocławiu. Rolnictwo LVIII Nr 223: 285 — 290.
Google Scholar

Falconer D. S. 1974. Dziedziczenie cech ilościowych. PWN, Warszawa.
Google Scholar

Gamil K. H., Al-Saheal Y. A. 1983. Estimation of genetic effects for agronomic traits in wheat. Wheat Information Service 57: 36 — 41.
Google Scholar

Goldringer I., Brabant P., Gallais A. 1997. Estimation of additive and epistatic genetic variance for agronomic traits in a population of doubled-haploid lines of wheat. Heredity 79:60 — 71.
Google Scholar

Griffing B. 1956. Concept of general and specific combining ability in relation to diallel crossing systems. Austr. J. Biol. Sci. 9:463 — 493.
Google Scholar

Hussain, F., Sial, R.A., Ashraf, M. 2008. Genetic studies for yield and yield related traits in wheat under leaf rust attack. International Journal of Agriculture and Biology 10 (5): 531 — 535.
Google Scholar

Jedyński S. 1987. Zmienność i odziedziczalność cech użytkowych pszenicy ozimej. Zeszyty Naukowe AR we Wrocławiu Nr 165: 27 — 42.
Google Scholar

Jedyński S., Lonc W. 1983. Odziedziczalność i efekty genowe cech użytkowych mieszańców pszenicy ozimej. Zeszyty Problemowe Postępów Nauk Rolniczych Z. 290: 193 — 200.
Google Scholar

Joshi S. K., Sharma S. N., Singhania D. L., Sain R. S. 2004. Combining ability in the F1 and F2 generations of diallel cross in hexaploid wheat (Triticum aestivum L. em. Thell). Hereditas 141: 115 — 121.
Google Scholar

Kaczyński L. 2001. Pszenica ozima. Lista Opisowa Odmian 2001. COBORU: 19 — 36.
Google Scholar

Kadłubiec W. 1993. Zmienność i genetyczne zróżnicowanie cech użytkowych linii pszenicy ozimej w siewie punktowym i zwartym. Zeszyty Naukowe Akademii Rolniczej we Wrocławiu Nr 223: 273 — 278.
Google Scholar

Kala R., Chudzik H., Dobek A., Kiełczewska H. 1996. DGH2 — system analiz statystycznych dla potrzeb Doświadczeń Genetyczno-Hodowlanych wersja 2.0.
Google Scholar

Kumbhar M. B., Larik A. S. 1989. Genetic analysis of some yield parameters in Triticum aestivum L. Wheat Information Service 68: 29 — 32.
Google Scholar

Lonc W., Malawko-Murawska Z., Strugała J. 1983. Odziedziczalność i postęp genetyczny cech ilościowych mieszańców F2 pszenicy ozimej. Zeszyty Problemowe Postępów Nauk Rolniczych Z. 290: 159 — 166.
Google Scholar

Lonc W., Białowąs S., Chema K., Krupa F. 1989. Zastosowanie taksonomii wrocławskiej do oceny wartości hodowlanej kilku odmian pszenicy ozimej. Zeszyty Problemowe Postępów Nauk Rolniczych Z. 382: 119 — 125.
Google Scholar

Menon U., Sharma S. N. 1995. Inheritance studies for yield and yield components traits in bread wheat over the environment. Wheat Information Servis 80: 1 — 5.
Google Scholar

Pokhrel P. R., Burden A. M., Dragautsev V. A. 1993. Harvest index and grain size in wheat. Indian J. Genet. 57: 361 — 365.
Google Scholar

Sheikh S., Singh I., Singh J. 2000. Inheritance of some quantitative traits in bread wheat (Triticum aestivum L. em. Thell). Ann. Agric. Res. 21: 51 — 54.
Google Scholar

Singh K. N. 1988. Combining ability in wheat in normal and sodic soils. Indian J. Genet. 48:99 — 102.
Google Scholar

Singh K. N., Rana R. S. 1987. Influence of soil alkalinity and salinity on estimates of heterosis and gene effects governing some quantitative traits in bread wheat. Indian J. Genet. 47: 76 — 78.
Google Scholar

Singh I., Chowdhury R. K., Pawar I. S., Singh S. 1987. A comparative study of three selection procedures in bread wheat. Wheat Information Service 65: 16 — 18.
Google Scholar

Węgrzyn S., Góral H., Spiss L. 2000. Oszacowanie genetycznych wariancji cech plonowania pszenżyta jarego na podstawie mieszańców F1 i F2. Biul. IHAR 216: 137 — 144.
Google Scholar


Published
2008-12-31

Cited by

Nawracała, J., Łuczkiewicz, T. and Dyba, S. (2008) “Analysis of genetic determination of yield components traits in F1 and F2 generations of winter wheat diallel crosses”, Bulletin of Plant Breeding and Acclimatization Institute, (250), pp. 59–65. doi: 10.37317/biul-2008-0005.

Authors

Jerzy Nawracała 
jerzy.nawracala@up.poznan.pl
Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu Poland

Authors

Tadeusz Łuczkiewicz 

Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu Poland

Authors

Stanisław Dyba 

Katedra Genetyki i Hodowli Roślin, Uniwersytet Przyrodniczy w Poznaniu Poland

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Copyright (c) 2008 Jerzy Nawracała, Tadeusz Łuczkiewicz, Stanisław Dyba

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