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    المساهمون: Berzuini, Sara, Zanetti, Federica, Alberghini, Barbara, Leon, Paloma, Prieto, Javier, Herreras Yambanis, Yuri, Trabelsi, Imen, Hannachi, Abderrahmane, Udupa, Sripada, Monti, Andrea

    وصف الملف: ELETTRONICO

    Relation: volume:219; firstpage:1; lastpage:10; numberofpages:10; journal:INDUSTRIAL CROPS AND PRODUCTS; https://hdl.handle.net/11585/973156

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    المصدر: Revista Facultad Nacional de Agronomía Medellín; Vol. 73 No. 2 (2020); 9131-9141 ; Revista Facultad Nacional de Agronomía Medellín; v. 73 n. 2 (2020); 9131-9141 ; Revista Facultad Nacional de Agronomía Medellín; Vol. 73 Núm. 2 (2020); 9131-9141 ; 2248-7026 ; 0304-2847

    وصف الملف: application/pdf; application/xml

    Relation: https://revistas.unal.edu.co/index.php/refame/article/view/77806/74747; https://revistas.unal.edu.co/index.php/refame/article/view/77806/75087; Acquaah G. 2007. Principles of plant genetics and breeding. Second Edition. Blackwell publishing, Oxford. 569 p.; Annicchiarico P, Bellah F and Chiari T. 2005. Defining sub regions and estimating benefits for a specific-adaptation strategy by breeding programs. Crop Science 45(5): 1741–1749. doi:10.2135/cropsci2004.0524; Bárbaro IM, Da Cruz Centurion MAP, Di Mauro AO, Unêda-Trevisoli SH and Costa MM. 2007. Comparação de estratégias de seleção no melhoramento de populações F5 de soja. Revista Ceres 54(313): 250–261.; Bhering LL, Laviola BG, Sanchez CFB, Salgado CC, Rosado TB and Alves AA. 2012. Genetic gains in physic nut using selection indexes. Pesquisa Agropecuaria Brasileira 47(3): 402–408.; Bizari EH, Val BHP, Pereira EDM, Di Mauro AO and Unêda-Trevisoli SH. 2017. Selection indices for agronomic traits in segregating populations of soybean. Revista Ciência Agronômica 48(1): 110–117. doi:10.5935/1806-6690.20170012; Bouzerzour H. 1998. Sélection pour le rendement, la précocité, la biomasse et l’indice de récolte chez l’orge en zones semi-aride (Doctoral dissertation). Université Constantine, Algeria.; Cargnin A, de Souza MA, Machado CG and Pimentel AJB. 2007. Genetic gain prediction for wheat with different selection criteria. Crop Breeding and Applied Biotechnology 7(4):334–339. doi:10.12702/1984-7033.v07n04a01; Carvalho SPD, Cruz CD and de Carvalho CGPD. 1999. Estimating gain by use of a classic selection index under multicollinearity in wheat (Triticum aestivum). Genetics and Molecular Biology 22(1): 109–113. doi:10.1590/s1415-47571999000100021; Costa MM, Di Mauro AO, Uneda-Trevisoli SH, Arriel NHC, Bárbaro IM, da Silveira GD and Muniz FRS. 2008. Analysis of direct and indirect selection and indices in soybean segregating population. Crop Breeding and Applied Biotechnology 8: 47–55. doi:10.12702/1984-7033.v08n01a07; Cruz CD. 2006. Programa GENES:Biometria (Vol. 1). First Edition. Editora UFV, Viçosa. 382 p.; Cruz CD. 2013. Genes: a software package for analysis in experimental statistics and quantitative genetics. Acta Scientiarum 35(3): 271–276. doi:10.4025/actasciagron.v35i3.21251; de Azeredo AAC, Bhering LL, Brasileiro BP, Cruz CD, Silveira LCI, Oliveira RA, Bespalhok Filho JC and Daros E. 2017. Comparison between different selection indices in energy cane breeding. Genetics and Molecular Research 16(1): gmr16019535. doi:10.4238/gmr16019535; Federer WT. 1955. Experimental design: theory and application. Macmillan Co., New York and London. 544 p.; Fellahi ZEA, Hannachi A, Bouzerzour H, Dreisigacker S, Yahyaoui A and Sehgal D. 2017. Genetic analysis of morpho-physiological traits and yield components in F2 partial diallel crosses of bread wheat (Triticum aestivum L.). Revista Facultad Nacional de Agronomía Medellín 70(3): 8237–8250. doi:10.15446/rfna.v70n3.61927; Fellahi ZEA, Hannachi A and Bouzerzour H. 2018. Analysis of Direct and Indirect Selection and Indices in Bread Wheat (Triticum aestivum L.) Segregating Progeny. International Journal of Agronomy 2018: 11. doi:10.1155/2018/8312857; Fleury D, Jefferies S, Kuchel H and Langridge P. 2010. Genetic and genomic tools to improve drought tolerance in wheat. Journal of experimental botany 61(12): 3211–3222. doi:10.1093/jxb/erq152; Ghaed-Rahimi L, Heidari B and Dadkhodaie A. 2017. Construction and Efficiency of Selection Indices in Wheat (Triticum aestivum L.) under Drought Stress and Well-Irrigated Conditions. Plant Breeding and Biotechnology 5(2): 78–87. doi:10.9787/pbb.2017.5.2.078; Gomes ABS, Oliveira TRA, Cruz DP, Gravina GA, Daher RF, Araújo LC and Araújo KC. 2018. Genetic gain via REML/BLUP and selection indices in snap bean. Horticultura Brasileira 36(2): 195–198. doi:10.1590/s0102-053620180208; Hazel LN. 1943. The genetic basis for constructing selection indexes. Genetics 28(6): 476–490.; Kumar J and Bahl PN. 1992. Direct and indirect selection for yield in chickpea. Euphytica 60: 197–199. doi:10.1007/BF00039398; Laala Z, Benmahammed A, Oulmi A, Fellahi ZEA and Bouzerzour H. 2018. Response to F3 Selection for Grain Yield in Durum Wheat [Triticum turgidum (L.) Thell. ssp. turgidum conv. durum (Desf.) Mac Key] under South Mediterranean Conditions. Annual Research & Review in Biology 21(2): 1–11. doi:10.9734/arrb/2017/37923; Langridge P and Reynolds MP. 2015. Genomic tools to assist breeding for drought tolerance. Current Opinion in Biotechnology 32: 130–135. doi:10.1016/j.copbio.2014.11.027; Lima VJ, Junior SPF, Souza YP, Silva CS, Farias JEC, Souza RF, Chaves MM and Feitosa JV. 2018. Genetic gain capitalization in the first cycle of recurrent selection in popcorn at Ceará’s Cariri. Revista Brasileira de Ciências Agrárias 13(3): e5556.V. doi:10.5039/agraria.v13i3a5556; Mahdy EE. 1988. Single and Multiple Traits Selection in a Segregating Population of Wheat, Triticum aestivum L. Plant Breeding 101(3): 245–249.doi:10.1111/j.1439-0523.1988.tb00293.x; Montesinos-López OA, Baenziger PS, Eskridge KM, Little RS, Martínez-Crúz E and Franco-Perez E. 2018. Analysis of genotype-by-environment interaction in winter wheat growth in organic production system. Emirates Journal of Food and Agriculture 30(3): 212–223.doi:10.9755/ejfa.2018.v30.i3.1643; Mulamba NN and Mock JJ. 1978. Improvement of yield potential of the ETO blanco maize (Zea mays L.) population by breeding for plant traits [Mexico]. Egyptian Journal of Genetics and Cytology 7(1): 40–51.; Pask AJD, Pietragalla J, Mullan DM and Reynolds MP. 2012. Physiological Breeding II: A Field Guide to Wheat Phenotyping. CIMMYT, Mexico, D.F. 132 p.; Pesek J and Baker RJ. 1971. Comparison of predicted and observed responses to selection for yield in wheat. Canadian Journal of Plant Science 51(3): 187–192.doi:10.4141/cjps71-038; Purchase JL, Hatting H and Van Deventer CS. 2000. Genotype×environment interaction of winter wheat (Triticum aestivum L.) in South Africa: II. Stability analysis of yield performance. South African Journal of Plant and Soil 17(3): 101–107. doi:10.1080/02571862.2000.10634878; Reynolds M and Langridge P. 2016. Physiological breeding. Current Opinion in Plant Biology 31: 162–171. doi:10.1016/j.pbi.2016.04.005; Ribeiro LP, Carvalho LPD, Farias FJC, Rodrigues JIDS, Teodoro PE and Bhering LL. 2018. Genetic gains in agronomic and technological traits of elite cotton genotypes. Bragantia 77(3): 466–475. doi:10.1590/1678-4499.2017329; Silva MGM and Viana AP. 2012. Alternativas de seleção em população de maracujazeiro-azedo sob seleção recorrente intrapopulacional. Revista Brasileira de Fruticultura 34(2): 525–531. doi:10.1590/s0100-29452012000200026; Silva GO, Pereira AS, Azevedo FQ, Carvalho ADF and Pinheiro JB. 2018. Selection of potato clones for tuber yield, vine maturity and frying quality. Horticultura Brasileira 36(2): 276–281. doi:10.1590/s0102-053620180222; Silva VBD, Daher RF, Menezes BRDS, Gravina GDA, Araújo MDSBD, Carvalho Júnior ARD, Cruz DP, Almeida DO and Tardin FD. 2018. Selection among and within full-sib families of elephant grass for energy purposes. Crop Breeding and Applied Biotechnology 18: 89–96. doi:10.1590/1984-70332018v18n1a12; Smith HFA. 1936. A discriminant function for plant selection. Annals of Eugenics 7(3): 240–250. doi:10.1111/j.1469-1809.1936.tb02143.x; Spagnoletti-Zeuli PL and Qualset CO. 1990. Flag leaf variation and the analysis of diversity in durum wheat. Plant Breeding 105(3): 189–202. doi:10.1111/j.1439-0523.1990.tb01196.x; Steel RGD and Torrie JH. 1960. Principles and procedures of statistics, McGraw-Hill Books, New York. 481 p.; Subandi W, Compton A and Empig LT. 1973. Comparison of the efficiencies of selection indices for three traits in two variety crosses of corn. Crop Science 13(2): 184–186. doi:10.2135/cropsci1973.0011183X001300020011x; Valério PI, de Carvalho IF, Costa de Oliveira A, Benin G, Silveira GD, Manmann Schmidt DA, Stumpf MT and Woyann LG. 2009. Seleção efetiva para o caráter número de afilhos em populações segregantes de trigo. Bragantia 68(4): 885–899. doi:10.1590/s0006-87052009000400008; Vasconcelos ES, Ferreira RP, Cruz CD, Moreira A, Rassini JB and Freitas AR. 2010. Estimativas de ganho genético por diferentes critérios de seleção em genótipos de alfafa. Revista Ceres 57:205–210.; Vieira SD, de Souza DC, Martins IA, Ribeiro GHMR, Resende LV, Ferraz AKL, Galvão AG and de Resende JTV. 2017. Selection of experimental strawberry (Fragaria x ananassa) hybrids based on selection indices. Genetics and Molecular Research 16(1): gmr16019052. doi:10.4238/gmr16019052; Williams JS. 1962. The evaluation of a selection index. Biometrics 18(3): 375–393. doi:10.2307/2527479; https://revistas.unal.edu.co/index.php/refame/article/view/77806

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    المؤلفون: Hannachi, Abderrahmane

    المصدر: المجلة الاردنية في العلوم الزراعية; Vol 13, No 4 (2017) ; المجلة الأردنية في العلوم الزراعية; Vol 13, No 4 (2017) ; Jordan Journal of Agricultural Sciences; Vol 13, No 4 (2017) ; 2707-6415 ; 1815-8625

    مصطلحات موضوعية: Gene action, genetic components, wheat, yield

    وصف الملف: application/pdf

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    المصدر: Revista Facultad Nacional de Agronomía Medellín; Vol. 70 No. 3 (2017); 8237-8250 ; Revista Facultad Nacional de Agronomía Medellín; v. 70 n. 3 (2017); 8237-8250 ; Revista Facultad Nacional de Agronomía Medellín; Vol. 70 Núm. 3 (2017); 8237-8250 ; 2248-7026 ; 0304-2847

    وصف الملف: application/pdf; application/xml

    Relation: https://revistas.unal.edu.co/index.php/refame/article/view/61927/62061; https://revistas.unal.edu.co/index.php/refame/article/view/61927/64837; Afridi K, Khan NU, Mohammad F, Shah SJA, Gul S, Khalil IA, Sajjad M, Ali S, Ali I and Khan SM. 2017. Inheritance pattern of earliness and yield traits in half diallel crosses of spring wheat. Canadian Journal of Plant Science (In press). doi:10.1139/cjps-2016-0309; Akram Z, Ajmal SU, Munir M and Shabir G. 2008. Genetic determination of yield related attributes in bread wheat. Sarhad Journal of Agriculture 24(3): 431–438.; Ali MA, Khan IA, Awan SI, Ali S and Niaz S. 2008. Genetics of fibre quality traits in cotton (Gossypium hirsutum L.). Australian Journal of Crop Science 2(1): 10–17.; Ali MA and Awan SI. 2009. Inheritance pattern of seed and lint traits in cotton (Gossypium hirsutum). International Journal of Agriculture and Biology 11(1): 44–48.; Cruz CD, Regazzi AJ and Carneiro PCS. 2004. Modelos Biométricos Aplicados ao Melhoramento Genético, Thirth edition. Universidade Federal de Viçosa, Viçosa. 480 p.; Cruz CD. 2013. Genes: a software package for analysis in experimental statistics. Acta Scientiarum Agronomy 35(3): 271–276. doi:10.4025/actasciagron.v35i3.21251; Falconer DS and Mackay TFC. 1996. Introduction to Quantitative Genetics, Fourth edition, Longman, Essex, UK. 464 p. Food and Agriculture Organization. 2016. FAOSTAT database. http://faostat.fao.org/beta/en/; Farooq J, Khaliq I, Kashif M, Ali Q and Mahpara S. 2011. Genetic analysis of relative cell injury percentage and some yield contributing traits in wheat under normal and heat stress conditions. Chilean Journal of Agricultural Research 71(4): 511–520. doi:10.4067/s0718-58392011000400003; Fellahi Z, Hannachi A, Bouzerzour H and Boutekrabt A. 2013. Line × Tester Mating Design Analysis for Grain Yield and Yield Related Traits in Bread Wheat (Triticum aestivum L.). International Journal of Agronomy, 2013, Article ID 201851, 9 p. doi:10.1155/2013/201851; Fikre G, Alamerew S and Tadesse Z. 2015. Genetic Variability Studies in Bread Wheat (Triticum Aestivum L.) Genotypes at Kulumsa Agricultural Research Center, South East Ethiopia. Journal of Biology, Agriculture and Healthcare 5(7): 89–98.; Fronza V, Vello NA and Camargo LEA. 2004. Genetic analysis of soybean resistance to Fusarium solani f. sp. glycines. Genetics and Molecular Biology 27(3): 400–408. doi:10.1590/s1415-47572004000300016; Gardner CO and Eberhart SA. 1966. Analysis and interpretation of the variety cross diallel and related populations. Biometrics 22(3): 439–452. doi:10.2307/2528181; Griffing B. 1956. Concept of general and specific combining ability in relation to diallel crossing systems. Australian Journal of Biological Sciences 9(4): 463–493. doi:10.1071/bi9560463; Hannachi A, Fellahi Z, Bouzerzour H and Boutekrabt A. 2013. Diallel-cross analysis of grain yield and stress tolerance-related traits under semi-arid conditions in Durum wheat (Triticum durum Desf.). Electronic Journal of Plant Breeding 4(1): 1027–1033.; Hassan MS, El-Said RAR and Abd-El-Haleem SHM. 2013. Estimation of heritability and variance components for some quantitative traits in bread wheat (Triticum aestivum L.). World Applied Sciences Journal 27(8): 944–949. doi:10.5829/idosi.wasj.2013.27.08.13710; Hayman BI. 1954. The theory and analysis of diallel crosses. Genetics 39(6): 789–809.; Kaukab S, Saeed MS and ur Rehman A. 2014. Genetic analysis for yield and some yield traits in spring wheat. Universal Journal of Agricultural Research 2(7): 272–277. doi:10.13189/ujar.2014.020707; Ketata H, Edwards LH and Smith EL. 1976. Inheritance of eight agronomic characters in a winter wheat cross. Crop Science 16(1): 19–22. doi:10.2135/cropsci1976.0011183x001600010005x; Kribaa M, Hallaire V, Curmi P and Lahmar R. 2001. Effect of various cultivation methods on the structure and hydraulic properties of a soil in semi-arid climate. Soil and Tillage Research 60(1-2): 43–53. doi.org/10.1016/s0167-1987(01)00171-4; Mahmood T, Turner M, Stoddard FL and Javed MA. 2004. Genetic analysis of quantitative traits in rice (Oryza sativa L.) exposed to salinity. Crop and Pasture Science 55(11): 1173–1181. doi:10.1071/ar03200; Mather K and Jinks JL. 2013. Introduction to biometrical genetics, Chapman and Hall Ltd., London. doi:10.1002/bimj.4710260111; Mumtaz A, Zafar F, Saifulmalook and Shehzad A. 2015. A Review on Mating Designs. Nature and Science 13(2): 98–105. doi:10.7537/marsnsj130215.15; Nazir A, khaliq I, Farooq J, Mahmood K, Mahmood A, Hussain M and Shahid M. 2014. Pattern of inheritance in some yield related parameters in spring wheat (Triticum aestivum L.). American Journal of Biology and Life Sciences 2(6): 180–186.; Ojaghi J, Salayeva S and Eshghi R. 2010. Inheritance pattern of important quantitative traits in bread wheat (Triticum aestivum L.). World applied Science Journal 11(6): 711–717.; Rashid MAR, Khan AS and Iftikhar R. 2012. Genetic studies for yield and yield related parameters in bread wheat. American-Eurasian Journal of Agricultural & Environmental Sciences 12: 1579–1583.; Saad FF, Abo-Hegazy SRE, EL-Sayed EAM and Suleiman HS. 2010. Heterosis and combining ability for yield and its components in diallel crosses among seven bread wheat genotypes. Egyptian Journal of Plant Breeding 14(3): 7–22.; Scott AJ and Knott MA. 1974. A cluster analysis method for grouping means in the analysis of variance. Biometric 30(3): 507–512. doi:10.2307/2529204; Shehzad M, Hussain SB, Qureshi MK, Akbar M, Javed M, Imran HM and Manzoor SA. 2015. Diallel cross analysis of plesiomorphic traits in Triticum aestivum L. genotypes. Genetics and Molecular Research 14(4): 13485–13495. doi:10.4238/2015.october.28.9; Viana JMS, Cruz CD and Cardoso AA. 1999. Theory and analysis of partial diallel crosses. Genetics and Molecular Biology 22(4): 591–599. doi:10.1590/s1415-47571999000400021; Viana JMS, Cruz CD, Cardoso AA. and Regazzi AJ. 2000. Analysis of variance of partial diallel tables. Genetics and Molecular Biology 23(1): 229–234. doi:10.1590/s1415-47572000000100040; Viana JMS, Cruz CD and Cardoso AA. 2001. Theory and analysis of partial diallel crosses. Parents and F2 generations. Acta Scientiarum 23(2): 627–634.; Wilson ND, Weibel DE and McNew RW. 1978. Diallel analyses of grain yield, percent protein, and protein yield in grain sorghum. Crop Science 18(3): 491–495. doi:10.2135/cropsci1978.0011183x001800030035x; Yao JB, Ma HX, Ren LJ, Zhang PP, Yang XM, Yao GC, Zhang P and Zhou MP. 2011. Genetic analysis of plant height and its components in diallel crosses of bread wheat (Triticum aestivum L.). Australian Journal of Crop Science 5(11): 1408–1418.; Yao J, Yang X, Zhou M, Yang D and Ma H. 2014. Inheritance of grain yield and its correlation with yield components in bread wheat (Triticum aestivum L.). Turkish Journal of Field Crops 19(2): 169–174. doi:10.17557/tjfc.30098; https://revistas.unal.edu.co/index.php/refame/article/view/61927

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    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/refame/article/view/61927; Universidad Nacional de Colombia Revistas electrónicas UN Revista Facultad Nacional de Agronomía Medellín; Revista Facultad Nacional de Agronomía Medellín; Fellahi, Zine El Abidine and Hannachi, Abderrahmane and Bouzerzour, Hamenna (2017) Genetic analysis of morpho-physiological traits and yield components in F2 partial diallel crosses of bread wheat (Triticum aestivum L.). Revista Facultad Nacional de Agronomía Medellín, 70 (3). pp. 8237-8250. ISSN 2248-7026; https://repositorio.unal.edu.co/handle/unal/65973; http://bdigital.unal.edu.co/66996/

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    Academic Journal

    Alternate Title: GENETIČKI EFEKTI Rht-B1b I Rht-D1b PATULJASTIH ALELA NA VISINU BILJKE I AGRONOMSKA SVOJSTVA OPLEMENJIVAČKIH LINIJA HLEBNE PŠENICE (Triticum aestivum L.).

    المصدر: Genetika (0534-0012). 2023, Vol. 55 Issue 2, p565-581. 17p.

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    المصدر: Agricultural Reviews. Sep2022, Vol. 43 Issue 3, p278-287. 10p.

    مصطلحات جغرافية: CENTRAL Asia

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    Alternate Title: Triticum turgidum (L.) Tell.[ توصيف الأصناف القديمة والحديثة للقمح الصلب تحت الظروف البيئية لجنوب البحر الأبيض ]convar. durum (Desf.) Mackey المتوسط (Arabic)

    المصدر: Egyptian Journal of Agronomy; Autumn2020, Vol. 42 Issue 3, p307-320, 14p

    مصطلحات جغرافية: ALGERIA

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    Alternate Title: Ganancia genética esperada en la selección basada en rasgos únicos e índices en una población avanzada de trigo pan (Triticum aestivum L.).

    المؤلفون: Fellahi, Zine El Abidine1 zinou.agro@gmail.com, Hannachi, Abderrahmane2, Bouzerzour, Hamenna3

    المصدر: Revista Facultad Nacional de Agronomía Medellín. 2020, Vol. 73 Issue 2, p9131-9141. 11p.

    مصطلحات موضوعية: *EXPECTED returns, *WHEAT, *GRAIN yields, *RAPID tooling, *BREAD, *BLOCK designs

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