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Inheritance of height and maturity in crosses between pearl millet landraces and inbred Tift 85DB

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Summary

Over 300 landraces of pearl millet were collected in Burkina Faso and grown at the Coastal Plain Experiment Station in Tifton/GA. At Tifton, these landraces are predominantly tall and late-maturing. The photoperiod requirements of these landraces hinder evaluation of their performance in the field and their use in breeding programs. A conversion program has been initiated to transfer genes for dwarf stature and early flowering into the tall, late-maturing landraces. The inbred Tift 85DB is being used as a donor of genes for the dwarf and early characteristics, and was crossed to nine randomly selected landraces from Burkina Faso. The parents, F1, F2, and backcrosses to each parent were grown in the field and evaluated for plant height at anthesis and time in days from planting to anthesis. In general, plant height of F1s was taller than the tallest parent, and in all crosses the maturity of F1s was intermediate between the parents. Numbers of loci conferring height varied among crosses, ranging from 0 to 9.6, and averaged 1.6. Estimated numbers of loci conferring maturity ranged from 0 to 12.8 and averaged 3.4. Broad-sense heritability estimates for height and maturity averaged 60.2 and 65.7%, respectively. Corresponding narrow-sense estimates averaged 23.8 and 48.2%. Joint scaling tests revealed that additive-genetic effects were highly significant for both traits, but dominance and epistatic-genetic effects contributed to the inheritance of each trait in some crosses. The low gene numbers, high heritability estimates, and preponderance of additive-genetic effects suggest that selection for these traits should be effective.

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References

  • Bilquez AF (1963) Study of the mode of inheritance of earliness in pearl millet (P. typhoides Stapf et Hubbard). I. Genetic determination of the differences in sensitivity to day length between millets of the sanio group and those of the souna group. Agron Trop 18:1249–1253

    Google Scholar 

  • Burton GW (1951) Quantitative inheritance in pearl millet (Pennisetum glaucum). Agron J 43:409–417

    Google Scholar 

  • Burton GW (1966) Photoperiodism in pearl millet. Pennisetum typhoides, its inheritance and use in forage improvement. Proc 10th Int Grassland Conf, pp 720–723

  • Burton GW (1969) Registration of pearl millet inbreds Tift 23B1, Tift 23A1, Tift 23DB1, and Tift 23DA1. Crop Sci 9:397–398

    Google Scholar 

  • Burton GW (1981) A gene for early maturity and photoperiod insensitivity in pearl millet. Crop Sci 21:317–318

    Google Scholar 

  • Burton GW, Fortson JC (1966) Inheritance of five dwarfs in pearl millet (Pennisetum typhoides) breeding. Crop Sci 6:69–72

    Google Scholar 

  • Burton GW, Wilson JP, Werner BK (1989) Collecting and converting African pearl millet efficiently. Abstr Techn Papers, Southern Branch Am Soc Agron 16:12

    Google Scholar 

  • Falconer DS (1981) Introduction to quantitative genetics, 2nd edn. Longman, New York London

    Google Scholar 

  • Gamble EE (1962) Gene effects in corn (Zea mays L.) I. Separation and relative importance of gene effects for yield. Can J Plant Sci 42:339–348

    Google Scholar 

  • Hanna WW, Wells HD, Burton GW, Monson WG (1983) Longterm pollen storage of pearl millet. Crop Sci 23:174–175

    Google Scholar 

  • Hanna WW, Wells HD, Burton GW (1987) Registration of pearl millet inbred parental lines, Tift 85D2A1 and Tift 85D2B1. Crop Sci 27:1324–1325

    Google Scholar 

  • Hanson WD (1959) Minimum family sizes for the planning of genetic experiments. Agron J 51:711–715

    Google Scholar 

  • Mather K, Jinks JL (1982) Biometrical genetics, the study of continuous variation. Cambridge University Press, Cambridge

    Google Scholar 

  • Rowe KE, Alexander WL (1980) Computations for estimating the genetic parameters in joint-scaling tests. Crop Sci 20:109–110

    Google Scholar 

  • SAS Institute, Inc (1985) SAS user's guide: statistics, version 5. SAS Institute, Cary/NC

    Google Scholar 

  • Stephens JC, Miller FR, Rosenow DT (1967) Conversion of alien sorghums to early combine genotypes. Crop Sci 7:396

    Google Scholar 

  • Van Ginkel M, Scharen AL (1987) Generation mean analysis and heritabilities of resistance to Septoria tritici in durum wheat. Phytopathology 77:1629–1633

    Google Scholar 

  • Warner JN (1952) A method for estimating heritability. Agron J 44:427–430

    Google Scholar 

  • Wright S (1968) Evolution and genetics of populations, vol 1. Genetic and biometric foundations. University of Chicago Press, Chicago

    Google Scholar 

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Communicated by G. S. Khush

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Wilson, J.P., Burton, G.W. & Bondari, K. Inheritance of height and maturity in crosses between pearl millet landraces and inbred Tift 85DB. Theoret. Appl. Genetics 80, 712–718 (1990). https://doi.org/10.1007/BF00224234

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  • DOI: https://doi.org/10.1007/BF00224234

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