1. bookVolume 65 (2019): Edizione 4 (December 2019)
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Adaptive Abilities of Broad Bean (Vicia faba L.) Accession in Terms of Main Quantitative Traits

Pubblicato online: 16 Dec 2019
Volume & Edizione: Volume 65 (2019) - Edizione 4 (December 2019)
Pagine: 136 - 146
Ricevuto: 30 May 2019
Accettato: 11 Nov 2019
Dettagli della rivista
License
Formato
Rivista
eISSN
1338-4376
Prima pubblicazione
06 Jun 2011
Frequenza di pubblicazione
4 volte all'anno
Lingue
Inglese

ABROSIMOVA, T.N. – FADEEVA, A.N. 2015. Adaptive capacity and breeding value of vegetable varieties of peas collection. In Scientific and Practical Per-reviewed Journal „Vegetable crops of Russia“, vol. 1, no. 26, pp. 27 – 30. УДК 635.656: 631.526.3210.18619/2072-9146-2015-1-27-30Search in Google Scholar

ANOHINA, V.S. – MAZUKA, E.S. 2006. Characteristics of inter-cultivar hybrids in relation to the adaptive potential of the original varieties. In The Bulletin of BGU, vol. 2, no. 2, pp. 44 – 48.Search in Google Scholar

BAROV, V. 1982. Analysis and schemas of the field trial. Sofia: Academic Press, pp. 668.Search in Google Scholar

BEZUGLOVA, E.V. – KAZYDUB, N.G. 2017. Breeding value of source material of vegetable beans (Vicia faba L.) in the conditions of southern forest-steppe of Western Siberia. In Bulletin of Omsk State Agrarian University, vol. 1, no. 25, pp. 11 – 16. УДК 635.651:631.53.01:631. 527(571.1)Search in Google Scholar

BORNHOFEN, E. – BENIN, G. – STORCK, L. – WOYANN, L.G. – DUARTE, T. – STOCO, M.G. – MARCHIORO, S. 2017. Statistical methods to study adaptability and stability of wheat genotypes. In Bragantia, vol. 76, no. 1, pp. 1 – 10. http://dx.DOI.org/10.1590/1678-4499.55710.1590/1678-4499.557Apri DOISearch in Google Scholar

CARGNELUTTI, F.A. – STORCK, L. – RIBOLDI, J. – GUADAGNIN, J.P. 2009. Association between adaptability and stability methods in corn. In Ciência Rural, vol. 39, no. 2, pp. 340 – 347. http://dx.DOI.org/10.1590/S0103-8478200800500008010.1590/S0103-84782008005000080Apri DOISearch in Google Scholar

CRUZ, C.D. 2006. Programa Genes: Biometria. Version 7.0. Viçosa, Brazil: University of Federal Viçosa, pp. 382.Search in Google Scholar

EBERHART, S. – RUSSELL, W.A. 1966. Stability parameters for comparing varieties. In Crop Science, vol. 6, pp. 36 – 40. http://dx.DOI.org/10.2135/cropsci1966.0011183X000600010011x10.2135/cropsci1966.0011183X000600010011xApri DOISearch in Google Scholar

FERNANDEZ, M. – LOPEZ-JURADO, M. – ARANDA, P. – URBANO, G. 1996. Nutritional assessment of raw and processed faba bean (Vicia faba L.) cultivar major in growing rats. In Journal of Agriculture and Food Chemistry, vol. 44, pp. 2766 – 2772. https://pubs.acs.org/DOI/abs/10.1021/jf950548310.1021/jf9505483Apri DOISearch in Google Scholar

FINLAY, K.W. – WILKINSON, G.N. 1963. The analysis of adaptation in plant breeding programmе. In Australian Journal of Agricultural Research, vol. 14, pp. 742 – 754. http://dx.doi.org/10.1071/AR963074210.1071/AR9630742Apri DOISearch in Google Scholar

KILCHEVSKIY, A.V. – HOTYLEVA, L.V. 1985a. Methods of assessments of the adaptive abilities and stability of genotypes differentiating the abilities of environment. Messages 1. Justification of the method. In Genetics, vol. 21, pp. 1481 – 1490.Search in Google Scholar

KILCHEVSKY, A.V. – HOTYLEVA, L.V. 1985b. Methods of assessments of the adaptive abilities and stability of genotypes differentiating the abilities of environment. 2. Numerical example and discussion. In Genetics, vol. 21, pp. 1491 – 1498.Search in Google Scholar

LIN, C.S. – BINNS, M.R. 1988. A superiority measure of cultivar performance for cultivar × location data. In Canadian Journal of Plant Science, vol. 68, pp. 193 – 198. http://dx.doi.org/10.4141/cjps88-01810.4141/cjps88-018Apri DOISearch in Google Scholar

MILIOLI, A.S. – ZDZIARSKI, A.D. – WOYANN, L.G. – SANTOS, R. – ROSA, A.C. – MADUREIRA, A. – BENIN, G. 2018. Yield stability and relationships among stability parameters in soybean genotypes across years. In Chilean Journal of Agricultural Research, vol. 78, pp. 299 – 309. http://dx.doi.org/10.4067/S0718-5839201800020029910.4067/S0718-58392018000200299Apri DOISearch in Google Scholar

MULUSEW, F. – TADELE, T. – TESFAYE, L. 2008. Genotype–environment interaction and stability parameters for grain yield of faba bean (Vicia faba L.) genotypes grown in southeastern Ethiopia. In International Journal of Sustainable Crop Production, vol. 3, pp. 80 – 87.Search in Google Scholar

NASCIMENTO, M. – CRUZ, C.D. – CAMPANA, A.C.M. – TOMAZ, R.S. – SALGADO, C.C. – FERREIRA, R. 2009. Alteration of the centroid method to evaluate genotypic adaptability. In Pesquisa Agropecuária Brasileira, vol. 44, pp. 263 – 269. DOI.Org/10.1590/S0100-204x2009 00030000710.1590/S0100-204x2009000300007Apri DOISearch in Google Scholar

NETTEVICH, E.D. 2001. Potential productivity recommended for spring wheat and barley cultivation in the central district of the Russian federation and its realization in conditions of production. In Reports of Russian Academy of Agrarian Sciences, vol. 3, pp. 50 – 55.Search in Google Scholar

NIKIFOROVA, I.Y.U. 2015. Evaluation of adaptive potential of samples of common millet from various groups of ripeness on the statistical parameters calculated by sign “Productivity of grain”. In Legumes and Cereals, vol. 1, no. 13, pp. 79 – 83. УДК 633.171:631.52Search in Google Scholar

OUJI, A. – SUSO, M.J. – ROUAISSI, M. – ABDELLAOUI, R. – GAZZAH, M. 2011. Genetic diversity of nine faba bean (Vicia faba L.) populations revealed by isozyme markers. In Genes & Genomics, vol. 33, no. 1, pp. 31 – 38. DOI 10.1007/s13258-010-0070-110.1007/s13258-010-0070-1Apri DOISearch in Google Scholar

PANDEY, P. – IRULAPPAN, V. – BAGAVATHIANNAN, M. V. – KUMAR, M.S. 2017. Impact of combined abiotic and biotic stresses on plant growth and avenues for crop improvement by exploiting physio-morphological traits. In Fronties in Plant Science, vol. 8, pp. 1 – 15. DOI:10.3389/fpls.2017.0053710.3389/fpls.2017.00537539411528458674Search in Google Scholar

PEREIRA, H.S. – MELO, L.C. – PELOSO, M.J. – FARIA, L.C. – COSTA, J.G.C. – RAVA, C.A. – WENDLAND, M.J. 2009. Comparação de métodos de análise de adaptabilidade e estabilidade fenotípica em feijoeiro-comum. In Pesquisa Agropecuária Brasileira, vol. 44, no. 4, pp. 374 – 383. DOI. org/10.1590/S0100-204X200900040000710.1590/S0100-204X2009000400007Apri DOISearch in Google Scholar

POTANIN, W.G. – ALEINIKOV, A.F. – STEPOCHKIN, P.I. 2014. A new approach to estimation of the ecological plasticity of plant varieties. In Vavilov Journal of Genetics and Breeding, vol. 18, no. 3, pp. 548 – 552. УДК 633.111.1Search in Google Scholar

RESENDE, M.D.V. 2006. O software selegen reml/blup. Embrapa gado de corte (embrapa gado de corte documentos), Campo Grande, Mato Grosso do Sul, Brasil. ISSN 1517-536XSearch in Google Scholar

SHARIFI, P. 2018. Biplot analysis of seed yield of faba bean genotypes at different planting dates. In Agriculture & Forestry, vol. 64, no. 4, pp. 243 – 250. DOI: 10.17707/AgricultForest.64.4.2410.17707/AgricultForest.64.4.24Search in Google Scholar

SINGH, A.K. – BHATT, B.P. – UPADHYAYA, A. – KUMAR, S. – SUNDARAM, P.K. – SINGH, B.K. – CHANDR, N. – BHARATI, R.C. 2012. Improvement of faba bean (Vicia faba L.) yield and quality through biotechnological approach: A Review. In African Journal of Biotechnology, vol. 11, pp. 15264 – 15271. DOI: 10.5897/AJB12.192610.5897/AJB12.1926Apri DOISearch in Google Scholar

STRIZHKOVA, F.M. 2003. Plasticity of spring wheat varieties. In Agricultural Science, vol. 4, pp. 30 – 31.Search in Google Scholar

TEMESGEN, T. – KENEN, I.G. – SEFERA, T. – JARSO, M. 2015. Yield stability and relationships among stability parameters in faba bean (Vicia faba L.) genotypes. In The Crop Journal, vol. 3, pp. 258 – 268. DOI.ORG/10.1016/J.CJ.2015.03.00410.1016/J.CJ.2015.03.004Apri DOISearch in Google Scholar

TORRES, F.E. – TEODORO, P.E. – FILHO, A.C. – SANTOS, A. – ROCHA, M.M. – SAGRILO, E. 2016. Adaptability and phenotypic stability of semi-prostate cowpea genotypes in Mato Grosso Do Sul. In Bioscience Journal, vol. 32, no. 6, pp. 1435 – 1441. DOI: https://doi.org/10.14393/BJ-v32n6a2016-3281310.14393/BJ-v32n6a2016-32813Search in Google Scholar

YAN, W. 2001. GGE Biplot a windows application for graphical analysis of multienvironmental trial data and other types of two-way data. In Agronomy Journal, vol. 93, no. 3, pp. 1111 – 1118. DOI:10.2134/agronj2001.9351111x10.2134/agronj2001.9351111xApri DOISearch in Google Scholar

ZOBEL, R.W. – WRIGHT, M.J. – GAUCH, H.G. 1988. Statistical analysis of a yield trial. In Agronomy Journal, vol. 80, pp. 388 – 393. DOI:10.2134/agronj1988.00021962 008000030002x10.2134/agronj1988.00021962008000030002xApri DOISearch in Google Scholar

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