Genetic Variability Studies in F2 Generations of Determinate High Yield Fresh Bean Lines for Seed Yield and Yield Components

Şemsi Tamüksek, Ercan Ceyhan

Abstract


Fresh bean is the most important pulse crop which are sold fresh, canned, and frozen. The genetic variability and association studies help in selection which would increase the yield potential of fresh bean. The experiment was conducted using randomized block design in 2021 at Konya with 25 genotypes (5 parents and 20 F2 Population). General and special combination abilities, heterosis and heterobeltiosis values, broad and narrow sense heritability, as well as the relationships between the investigated traits, were determined in the parent and F2 hybrids suitable for the diallel analysis method. It was found that there is an additive gene effect in the inheritance of the seed yield trait, and non-additive gene effect in the inheritance of the protein ratio trait. It was determined that the heritability in the narrow sense was low for the seed yield and protein ratio traits. It was also determined that non-additive gene effects were effective in the inheritance of seed yield and protein ratio traits. In F2 generation, the mean heterosis value determined in terms of seed yield was positive and the mean heterobeltiosis value was negative. As a result of this research, a sufficient level of genetic variation was determined in the population, considering the agronomic characteristics examined. Determination of suitable parents and hybrids for green bean breeding in terms of sustainability of calcareous soils, agronomic characteristics and inheritance of these parents and hybrids were determined.

Keywords


Fresh Bean; Diallel analysis; GCA, Heterosis, SCA

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References


Al-Mukhtar FA, Coyne DP (1981). Inheritance and association of flower ovule, seed, pod and maturity characters in dry edible beans (Phaseolus vulgaris L.). Journal of the Ameri-can Society for Horticultural Science 106(6): 713-719.

Arunga EE, Van Rheenen HA, Owuoche JO (2010). Diallel analysis of snap bean (Phaseolus Vulgaris L.), varieties for important traits. African Journal of Agricultural Research 5(15): 1951-1957.

Barelli MAA, Goncalves Vidigal MC, Amaral Junior ATD, Vidigal Filho PS, Scapim CA, Sagrilo E (2000). Diallel analysis for grain yield and yield components in Phaseolus vulgaris L.. Acta Scientiarum 22(4): 883-887.

Bozoğlu H (1995). Kuru fasulyede (Phaseolus vulgaris L.) bazı tarımsal özelliklerin genotip x çevre interaksiyonu ve kalıtım derecelerinin belirlenmesi üzerine bir araştırma. Doktora Tezi, Ondokuz Mayıs Üniversitesi Fen Bilimleri Enstitüsü, Samsun.

Ceyhan E (2004a). Bezelye ebeveyn ve melezlerinde bazı ta-rımsal özelliklerin ve kalıtımlarının çoklu dizi analiz meto-duyla belirlenmesi. Doktora Tezi, Selçuk Üniversitesi Fen Bilimleri Enstitüsü, Konya.

Ceyhan E (2004b). Effects of sowing dates on some yield components and yield of dry bean (Phaseolus Vulgaris L.) cultivars. Turkish Journal of Field Crops 9(2): 87-95.

Ceyhan E (2006). Varitaions in grain properties of dry bean (Phaseolus vulgaris L.). International Journal of Agricul-tural Research 1(2): 116-121.

Ceyhan E, Harmankaya M, Kahraman A (2014a). Combining ability and heterosis for concentration of mineral elements and protein in common bean (Phaseolus vulgaris L.). Tur-kish Journal of Agriculture and Forestry 38(5): 581-590.

Ceyhan E, Kahraman A, Avcı MA, Dalgıç H (2014b). Combin-ing ability of bean genotypes estimated by line x tester analysis under highly-calcareous soils. The Journal of Ani-mal and Plant Sciences 24(29): 579-584.

Ceyhan E, Şimşek D (2021). Fasulyede tarımsal özelliklerin kalıtımlarının çoklu dizi analiz metoduyla belirlenmesi. Türk Tarım ve Doğa Bilimleri Dergisi 8(1): 215-225.

Chung JH, Stevenson E (1973). Diallel analysis of the genetic variation in some quantitative traits in dry beans. New Zealand Journal of Agricultural Research 16 (2): 223-231.

Falconer DS (1980). Introduction to Quantitative Genetics. London. Oliver and Boyd Ltd, 365.

FAO (2022). Production and trade statistics. https://www.fao.org/faostat/en/#home(02.06.2022).

Genchev D (1995). Assessment of tolerance to stress factors in breeding material of kidney beans (Phaseolus vulgaris L.). Bulgarian Journal of Agricultural Science 1(4): 415-422.

Griffing B (1956). Concept of general and specific combining ability relation to diallel crossing systems. Australian Jour-nal of Biological Sciences 9: 463-493.

Iqbal AM, Nehvi F, Wani SA, Qadri H, Dar Z, Lone AA (2010). Combining ability studies over environments in Rajmash (Phaseolus vulgaris L.) in Jammu and Kashmir, India. Journal of Plant Breeding and Crop Science 2 (11): 333-338.

Kepildek R, Ceyhan E (2021). Determination of some agronomic traits of fresh bean parents and hybrids and their heritability with diallel analysis method. Selcuk Journal of Agriculture and Food Sciences 35 (2): 71-82.

Kwaye R, Hussein S, Mashela WP (2008). Combining ability analysis and association of yield and yield components among selected cowpea lines. Euphytica 162 (2): 205-210.

Mutari B, Sibiya J, Gasura E, Matova PM, Simango K, Kondwakwenda A (2022). Genetic analysis of grain yield and yield-attributing traits in navy bean (Phaseolus vulgaris L.) under drought stress. Euphytica 218 (5): 1-20.

Oliveira Junior A, Miranda GV, Cruz CD (1997). Evaluation of the combining ability of dry bean cultivars based on unbal-anced circulating and partial diallel crossing systems. Re-vista Ceres 44(252): 215-229.

Açıkgöz N, Özcan K (1999). TARPOPGEN: Populasyon Gene-tiği için bir istatistik paket programı. 3. Ulusal Tarımda Bil-gisayar Uygulamaları Simpozyum bildirisi, 28-30.

Rodrigues R, Leal NR, Pereira MG (1998). Diallel analysis of six agronomic traits in Phaseolus vulgaris L. Bragantia 57(2): 241-250.

Senbetay T, Tesfaye A, Jimma E (2015). Diallel analysis of white pea bean (Phaseolus vulgaris L.) varieties for yield and yield components. Journal of Biology, Agriculture and Healthcare 5(5): 75-81.

Singh SP, Urrea CA (1994). Selection for seed yield and other traits among early generations of intra- and interracial populations of the common bean, Brasileira de Genetica 17(3): 299-303.

Turhan Ş (2005). Tarnmda sürdürülebilirlik ve organik tarım. Tarım Ekonomisi Dergisi 11 (1 ve 2): 13-24.

Ülker M, Ceyhan E (2008a). Orta Anadolu ekolojik şartlarında yetiştirilen fasulye (Phaseolus vulgaris L.) genotiplerinin bazı tarımsal özelliklerinin belirlenmesi. Selçuk Üniversitesi Ziraat Fakültesi Dergisi 22(46): 77-89.

Ülker M, Ceyhan E (2008b). Orta Anadolu ekolojik şartlarında yetiştirilen fasulye (Phaseolus vulgaris L.) genotiplerinin protein ve bazı mineral oranlarının belirlenmesi. Selcuk Journal of Agriculture and Food Sciences 22 (46): 90-97.

Varankaya S, Ceyhan E (2012). Yozgat ekolojik şartlarında yetiştirilen fasulye (Phaseolus vulgaris L.) genotiplerinin bazı tarımsal özelliklerinin belirlenmesi. Selçuk Tarım ve Gıda Bilimleri Dergisi 26(1): 27-33.

Zimmerman MJO, Rosielle AA, Foster KW, Waines JG (1985). Gene action for grain yield and harvest index of common bean grown as sole crop and in intercrop with maize. Field Crops Research 12: 319-329.




DOI: https://doi.org/10.15316/SJAFS.2022.042

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