Selection of common bean parents and segregating populations targeting fusarium wilt resistance and grain yield
Abstract
The present work aimed to select populations for the breeding of common bean targeting fusarium wilt resistance and grain yield. Twelve carioca bean lines, which mainly differ in fusarium wilt resistance and grain yield, were crossed in a 6x6 partial diallel scheme. The parents and their 36 F1’s hybrids were evaluated for fusarium wilt severity caused by FOP isolate UFV 01 (FWS), and grain yield (YIELD). 34 F4’s populations, 12 parents and three other lines were also evaluated for grain yield per plant. The data of F1's parents and hybrids were submitted to diallel analysis. Using the grain yield data per plant, the potential of the 34 F4’s populations was predicted by the Jinks and Pooni method (1976). In the diallel analysis, BRSMG Talismã, CVIII 8511, BRS Pérola, VC 25 and VC 13 stood out in terms of the frequency of favorable alleles for FWS. Except for BRSMG Uai and IAC Formoso, these lines presented the most dominant genes associated in Fusarium wilt resistance. For YIELD, there was a predominance of dominant genes determining higher yield. The 20 F4’s populations with the highest potential included the best 12 of the 20 populations, based on diallel analysis for YIELD. Thus, the 12 populations received the addition of four that were highlighted only by the methodology of Jinks and Pooni (1976), and four based on diallel analysis, which totaled 20 populations. The use of information from more advanced inbreeding generations in complementarity with those of diallel is a promising strategy.
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Abreu, Â. F. B., Ramalho, M. A. P., & Santos, J. B. (2002). Prediction of seed-yield potential of common bean populations. Genetics and Molecular Biology, 25(3), 323–327. https://doi.org/10.1590/s1415-47572002000300013
Barili, L. D., Vale, N. M., Prado, A. L., Carneiro, J. E. S., Silva, F. F., & Nascimento, M. (2015). Genotype-environment interaction in common bean cultivars with carioca grain, recommended for cultivation in Brazil in the last 40 years. Crop Breeding and Applied Biotechnology, 15(4), 244–250. https://doi.org/10.1590/1984-70332015v15n4a41
Batista, R. O., Silva, L. C., Moura, L. M., Souza, M. H., Carneiro, P. C. S., Carvalho Filho, J. L. S., & Carneiro, J. E. S. (2017). Inheritance of resistance to fusarium wilt in common bean. Euphytica, 213(7), 954–958. https://doi.org/10.1007/s10681-017-1925-1
Batista, R. O., Silva, L. C., Moura, L. M., Souza, M. H., Carneiro, P. C. S., Carvalho Filho, J. L. S.., & Carneiro, J. E. S. (2017). Inheritance of resistance to fusarium wilt in common bean. Euphytica, 213(7), 2–12. https://doi.org/10.1007/s10681-017-1925-1
Broughton, W. J., Hern, aacute, Ndez, G., Blair, M., Beebe, S., Gepts, P., & Vanderleyden, J. (2003). Beans (Phaseolus spp.) - model food legumes. Plant and Soil, 252(1), 55–128. http://www.ingentaconnect.com/content/klu/plso/2003/00000252/00000001/05102542
Cândida, D. V., Costa, J. G. C., Rava, C. A., & Carneiro, M. S. (2009). Controle genético da murcha do Fusário (fusarium oxysporum) em feijoeiro comum. Tropical Plant Pathology, 34(6), 379–384.
Carneiro, J. E. S., Ramalho, M. A. P., Abreu, Â. F. B., & Gonçalves, F. M. A. (2002). Breeding potential of single, double and multiple crosses in common bean. Cropp Breeding and Applied Biotechnology, 2(4), 515–524. https://doi.org/10.12702/1984-7033.v02n04a04
Chimenez-Franzon, R., Gonçalves-Vidigal, M. C., Valentini, G., Domingos Moiana, L., Soto, R. I. C., Sousa, L. L., & Vidigal Filho, P. S. (2022). Genetic parameters, yield adaptability and stability of common bean obtained through mixed models analyses. Agronomy Science and Biotechnology, 8, 1–16. https://doi.org/10.33158/asb.r158.v8.2022
Cramer, R. A., Byrne, P. F., Brick, M. A., Panella, L., Wickliffe, E., & Schwartz, H. F. (2003). Characterization of Fusarium oxysporum isolates from common bean and sugar beet using pathogenicity assays and random-amplified polymorphic DNA markers. Journal of Phytopathology, 151(6), 352–360. https://doi.org/10.1046/j.1439-0434.2003.00731.x
Cruz, C. D. (2013). GENES - Software para análise de dados em estatística experimental e em genética quantitativa. Acta Scientiarum - Agronomy, 35(3), 271–276. https://doi.org/10.4025/actasciagron.v35i3.21251
Cruz, C. D., Regazzi, A. J., & Carneiro, P. C. S. (2012). Modelos biométricos aplicados ao melhoramento genético (4th ed.). Viçosa: Editora UFV.
Cruz, C. D., & Vencovsky, R. (1989). Comparação de alguns métodos de análise dialélica. Revista Brasileira de Genética = Brazilian Journal of Genetics, 12(2), 425-38.
Duncan, R. W., Gilbertson, R. L., Lema, M., & Singh, S. P. (2014). Inheritance of resistance to the widely distributed race 6 of Pseudomonas syringae pv. phaseolicola in common bean pinto US14HBR6. Canadian Journal of Plant Science, 94(5), 923–928. https://doi.org/10.4141/CJPS2013-320
Faria, L. C., Melo, P. G. S., Pereira, H. S., Peloso, M. J.l, Brás, A. J. B. P., Moreira, J. A. A., Carvalho, H. W. L., & Melo, L. C. (2013). Genetic progress during 22 years of improvement of carioca-type common bean in Brazil. Field Crops Research, 142, 68–74. https://doi.org/10.1016/j.fcr.2012.11.016
Fall, A. L., Byrne, P. F., Jung, G., Coyne, D. P., Brick, M. A., & Schwartz, H. F. (2001). Detection and mapping of a major locus for fusarium wilt resistance in common bean. Crop Science, 41(5), 1494–1498. https://doi.org/10.2135/cropsci2001.4151494x
Griffing, B. (1956). Concept of General and Specific Combining Ability in Relation to Diallel Crossing Systems. Australian Journal of Biological Sciences, 9(4), 463. https://doi.org/10.1071/bi9560463
Hnatuszko-Konka, K., Kowalczyk, T., Gerszberg, A., Wiktorek-Smagur, A., & Kononowicz, A. K. (2014). Phaseolus vulgaris - Recalcitrant potential. Biotechnology Advances, 32(7), 1205–1215. https://doi.org/10.1016/j.biotechadv.2014.06.001
Jinks, J. L., & Pooni, H. S. (1976). Predicting the properties of recombinant inbred lines derived by single seed descent. Heredity, 36(2), 253–266. https://doi.org/10.1038/hdy.1976.30
Kurek, A. J., Carvalho, F. I. F., Assmann, I. C., & Cruz, P. J. (2001). Capacidade combinatória como critério de eficiência na seleção de genitores em feijoeiro. Pesquisa Agropecuária Brasileira, 36(4), 645–651. https://doi.org/10.1590/s0100-204x2001000400007
Machado, C. F., Santos, J. B., Nunes, G. H. S., & Ramalho, M. A. P. (2002). Choice of common bean parents based on combining ability estimates. Genetics and Molecular Biology, 25(2), 179–183. https://doi.org/10.1590/s1415-47572002000200011
Mendonça, H. A., Santos, J. B., & Ramalho, M. A. P. (2002). Selection of common bean segregating populations using genetic and phenotypic parameters and RAPD markers. Cropp Breeding and Applied Biotechnology, 2(2), 219–226. https://doi.org/10.12702/1984-7033.v02n02a08
Pastor-Corrales, M. A. (1987). Reactions of Selected Bean Germ Plasms to Infection by Fusarium oxysporum f. sp. phaseoli. Plant Disease, 71, 990–993.
Paulino, J. F. C., Almeida, C. P., Santos, I. L., Gonçalves, J. G. R., Carbonell, S. A. M., Chiorato, A. F., & Benchimol-Reis, L. L. (2022). Combining disease resistance and postharvest quality traits by early marker-assisted backcrossing in carioca beans. Scientia Agricola, 79(2). https://doi.org/10.1590/1678-992x-2020-0233
Pereira, M. J. Z., Ramalho, M. A. P., & Abreu, Â. D. F. B. (2008). Estratégias para eficiência da seleção de feijoeiro quanto à resistência à murcha-de-fusário. Pesquisa Agropecuaria Brasileira, 43(6), 721–728. https://doi.org/10.1590/S0100-204X2008000600008
Pereira, M. J. Z., Ramalho, M. A. P., & Abreu, Â. de F. B. (2011). Reaction of common bean lines to Fusarium oxysporum f. sp. phaseoli in controlled conditions. Ciencia e Agrotecnologia, 35(5), 940–947. https://doi.org/10.1590/s1413-70542011000500011
Ribeiro, R. L. D. (1979). Inheritance and Nature of Resistance in Beans to Fusarium oxysporum f. sp. phaseoli . Phytopathology, 69(8), 859. https://doi.org/10.1094/phyto-69-859
Rocha, F., Stinghen, J. C., Gemeli, M. S., Coimbra, J. L. M., & Guidolin, A. F. (2014). Diallel analysis as a tool when selecting parents for beans. Revista Ciencia Agronomica, 45(1), 74–81. https://doi.org/10.1590/s1806-66902014000100010
Rocha, G. S., Carneiro, J. E. S., Rezende Júnior, L. S., Silva, V. M. P., Menezes Júnior, J. Â. N., Carneiro, P. C. S., & Cecon, P. R. (2013). Effect of environments on the estimated genetic potential of segregating common bean populations. Crop Breeding and Applied Biotechnology, 13(4), 241–248. https://doi.org/10.1590/s1984-70332013000400004
Santos, J. B., Vencovsky, R., M. A. P. Ramalho (1985). Controle genético da produção de grãos e dos seus componentes primários em feijoeiro. Pesquisa Agropecuaria Brasileira, 20(10), 1203–1211.
Silva, V. M. P., Carneiro, P. C. S., Menezes-Júnior, J. Â. N., Carneiro, V. Q., Carneiro, J. E. S., Cruz, C. D., & Borém, A. (2013). Genetic potential of common bean parents for plant architecture improvement. Scientia Agricola, 70(3), 167–175. https://doi.org/10.1590/S0103-90162013000300005
Simoneti. S, G., Antonio, M. P. R., Fátima, Â., Abreu, B., Airton, J., & Nunes, R. (2010). Brazilian Society of Plant Breeding. Printed in Brazil Estimation of genetic progress after eight cycles of recurrent selection for common bean grain yield. Crop Breeding and Applied Biotechnology, 10, 351–356.
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