Genetic Proof of Chromatin Diminution under Mitotic Agamospermy

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Evgenii V. Levites
Evgenii V. Levites
α Russian Academy of Sciences Russian Academy of Sciences

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Genetic Proof of Chromatin Diminution under Mitotic Agamospermy

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Abstract

The previously published data are examined on the base of the hypothesis about the existence of chromosomes differential polyteny and excessive chromatin diminution during the first stages of sugar beet plant embryogenesis. It has been concluded that available data provide the genetic proof of that chromatin diminution is one of the mechanisms underlying the origin of polymorphism in sugar beet agamospermous progenies.

References

16 Cites in Article
  1. Gianna Carvalheira (2000). Plant polytene chromosomes.
  2. W Feller (1950). An introduction to probability theory and its applications.
  3. A Gustafsson (1946). Apomixis in higher plants // I-III.
  4. E Levites (2002). New classification of the reproduction modes in sugar beet // Sugar Tech.
  5. E Levites (2005). Sugarbeet Plants Produced by Agamospermy as a Model for Studying Genome Structure and Function in Higher Plants.
  6. Evgenii Levites,Svetlana Kirikovich (2007). Autosegregation of enzyme loci Me1 and Gpi2 in agamospermous progenies of triploid sugarbeet plants.
  7. Evgenii Levites,Svetlana Kirikovich (2003). Epigenetic variability of unlinked enzyme genes in agamospermous progeny of sugar beet.
  8. Evgenii Levites,Svetlana Kirikovich (2012). Post-meiotic apozygotic combinatory process in sugar beet (<i>Beta vulgaris</i> L.).
  9. Evgenii Levites,Svetlana Kirikovich (2013). Zygotic combinatorial process in plants.
  10. Evgenii Levites,Svetlana Kirikovich (2013). Influence of external conditions on the combinatorial processes at agamospermy.
  11. E Levites,T Shkutnik,O Ovechkina,S Maletskii (1999). Pseudosegregation in the agamospermic progeny of male sterile plants of the sugar beet (Beta vulgaris L.).
  12. S Maletskii,E Levites,E Maletskaya,O Ovechkina (1998). Autosegregation and linked inheritance in agamospermic pedigrees of sugar beet (Beta vulgaris L.) // Russ.
  13. Ekaterina Maletskaya,Sophia Maletskaya (1999). The nuclear DNA mass variability in embryo root cells of sugarbeet.
  14. S Maletskii,E Maletskaya (1996). Selffertility and agamospermy in sugar beet Beta vulgaris L.
  15. J Scandalios (1969). Genetic control of multiple forms of enzymes in plants: A review.
  16. D Schwartz (1966). The genetic control of alcohol dehydrogenase in maize: Gene duplication and.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Evgenii V. Levites. 2014. \u201cGenetic Proof of Chromatin Diminution under Mitotic Agamospermy\u201d. Global Journal of Science Frontier Research - C: Biological Science GJSFR-C Volume 14 (GJSFR Volume 14 Issue C1): .

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Issue Cover
GJSFR Volume 14 Issue C1
Pg. 37- 40
Journal Specifications

Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

Version of record

v1.2

Issue date

March 3, 2014

Language
en
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Published Article

The previously published data are examined on the base of the hypothesis about the existence of chromosomes differential polyteny and excessive chromatin diminution during the first stages of sugar beet plant embryogenesis. It has been concluded that available data provide the genetic proof of that chromatin diminution is one of the mechanisms underlying the origin of polymorphism in sugar beet agamospermous progenies.

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Genetic Proof of Chromatin Diminution under Mitotic Agamospermy

Evgenii V. Levites
Evgenii V. Levites Russian Academy of Sciences

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