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Algorithms for Control of Genetic-Breeding Improvement of Economically Valuable Traits of Self-Pollinated Plants

Published: 2 April 2013
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Abstract

The new approaches to solving problems of selection parent’s pairs (varieties) for crossing and forecast of eco-genetic portrait of the future new variety. Paper supplements the two previous publications on the formalization of the quantitative theory of eco-genetic processes [1,2].

Published in Agriculture, Forestry and Fisheries (Volume 2, Issue 2)
DOI 10.11648/j.aff.20130202.13
Page(s) 72-76
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2013. Published by Science Publishing Group

Keywords

Eco- Genetic Portrait, Genetic- Physiological Systems, Selection, Mathematical Model of "Genotype -Environment Interaction”, Management by Environmental Factors

References
[1] Mikhailenko I.M., Dragavtsev V.A. Basic principles of mathematical modelling of the "genotype-environment" interaction, // Agricultural Biology, 2010, № 3, p. 24-31 (rus).
[2] Mikhailenko I.M., Dragavtsev V.A. Mathematical modelling in plant breeding. I. Theoretical basis of genotypes identification on their phenotypes during selection in segregating generations. //Agricultural biology, 2013, №1, p. 26-34, (rus).
[3] Falconer D.S. Introduction to Quantitative Genetics, 1961, Oliver-Boyd, Edinburg.
[4] Matveev, N.D. On one of the ways to improve the initial stages of breeding process / / Genetica, 1966, № 4, p. 158-165. (rus).
[5] Shrikhande V.J. Some considerations in designing experiments on coconut trees. / / J. Indian Soc. Agric. Stat., 1957, v. 9, p. 82-91.
[6] Sakai K.I., Hatakeyama S., Estimation of genetic parameters in forest trees without raising progeny, / / Silvae Genetica, 1963, v. 12, No 5, p. 152-160.
[7] Sakai K.I., Mukaide H. Estimation of genetic, environmental and competitional variances in standing forests. / / Silvae Genetica, 1967, v. 16, No 5-6, p. 159-168.
[8] Dragavtsev V.A. Philosophical questions of the theory of morphogenesis and theory of the information / / Successes of modern biology, 1961, vol 52, no. 3 (6), p. 347-361 (rus).
[9] Dragavtsev V.A. Phenogenetic analysis of the variability in plant populations, / / Vestnik AN Kaz. SSR, 1963, № 10 (223), p. 33-42 (rus).
[10] Dragavtsev V.A. The method of estimation of the role of heredity and environment in the development traits of woody plants, which does not require the change of generations, / / Botanical Journal, 1966, v. 51, № 7, p. 939-946 (rus).
[11] Dragavtsev V.A. Ostrikova V.M. Search for background characters express evaluation of genetic variation in plant populations / / Genetica, 1972, Vol 8, № 4, p. 33-37 (rus).
[12] Dragavtsev V.A. Pogozhev I.B., Sokolova T.A. Quantitative estimates of the critical values of genotypic features of the plants with the environmental distribution of the deviation from the phenotypes / / Proc. "Models of ecosystems and methods of determining their parameters." Calculate. Center of the Academy of Sciences, Novosibirsk, 1981, p. 190-116 (rus).
[13] Dragavtsev V.A. Foundation for future high-tech of breeding for improving of polygenic economically important characters of plants. / / Journal "Agrarian Russia", 2008, № 4, p. 2-10. (rus).
[14] Gronin V.V. Using quantitative and morphometric characters for distinctness parental lines and hybrids. / / Thesises of diss. candidate. biol. sciences (breeding and seeds production), Krasnodar, Institute of Rice, 2007 (rus).
[15] Mather Wharton B. Principles of Quantitative Genetics, 1964, Burgess Publishing, USA.
[16] Litun P.P. Resolution of the current breeding schemes selections, Report to the 4th All-Union Congress of VOGiS, February 2,1982, Kishinev (rus).
[17] Dragavtsev V.A. Averyanova A.F., On the correlation between the level of the additive variance and the degree of reaction similyarity of quantitative traits of wheat, / / Genetica, 1979, v. 15, № 3, p. 518-526 (rus).
[18] Dragavtsev V.A., Eco-genetic screening of the gene pool and methods of creating varieties of agricultural plants on productivity, resistance and quality. / / Guidelines (new approaches), VIR, St. Petersburg, 1998, 50 p. (pp. 33-35) (rus).
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  • APA Style

    Mikhailenko I. M., Dragavtsev V. A. (2013). Algorithms for Control of Genetic-Breeding Improvement of Economically Valuable Traits of Self-Pollinated Plants. Agriculture, Forestry and Fisheries, 2(2), 72-76. https://doi.org/10.11648/j.aff.20130202.13

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    ACS Style

    Mikhailenko I. M.; Dragavtsev V. A. Algorithms for Control of Genetic-Breeding Improvement of Economically Valuable Traits of Self-Pollinated Plants. Agric. For. Fish. 2013, 2(2), 72-76. doi: 10.11648/j.aff.20130202.13

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    AMA Style

    Mikhailenko I. M., Dragavtsev V. A. Algorithms for Control of Genetic-Breeding Improvement of Economically Valuable Traits of Self-Pollinated Plants. Agric For Fish. 2013;2(2):72-76. doi: 10.11648/j.aff.20130202.13

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  • @article{10.11648/j.aff.20130202.13,
      author = {Mikhailenko I. M. and Dragavtsev V. A.},
      title = {Algorithms for Control of Genetic-Breeding Improvement of Economically Valuable Traits of Self-Pollinated Plants},
      journal = {Agriculture, Forestry and Fisheries},
      volume = {2},
      number = {2},
      pages = {72-76},
      doi = {10.11648/j.aff.20130202.13},
      url = {https://doi.org/10.11648/j.aff.20130202.13},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.aff.20130202.13},
      abstract = {The new approaches to solving problems of selection parent’s pairs (varieties) for crossing and forecast of eco-genetic portrait of the future new variety. Paper supplements the two previous publications on the formalization of the quantitative theory of eco-genetic processes [1,2].},
     year = {2013}
    }
    

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    JF  - Agriculture, Forestry and Fisheries
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Author Information
  • Scientific deputy director, head of lab of infornatic-measuring systems, Agrophysical institute of RAAS, Saint-Petersburg, 195220, Grazhdansky prospect 14, Russia

  • Main scientist of plant ecologic physiology lab, Agrophysical institute of RAAS, Saint-Petersburg, 195220, Grazhdansky prospect 14, Russia

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