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The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L

Received: 30 August 2022    Accepted: 14 September 2022    Published: 27 June 2023
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Abstract

The biomorphological and genetic diversity of cotton that exists in nature includes about 50 species belonging to the genus Gossypium L. of the family Malvaceae Juss. Many of its representatives, and especially wild ones, are carriers of valuable traits and biological properties, but due to a number of objective reasons, they are little used in practical breeding. Of all the diversity, only some representatives of diploid species - G. herbaceum L., G. arboreum L. and tetraploid - G. hirsutum L., G. barbadense L. are used in culture and have become widespread. In modern breeding programs, much attention is paid to a comprehensive study and selection of source material. A large and valuable contribution, along with others, is made by morphological and anatomical methods for studying the vegetative and generative organs of cotton. The seed coat plays an important biological role during its germination, performs the functions of protecting the embryo, maintaining its viability, and also contains a number of valuable chemicals used in the national economy. The structure of the peel of the mature seed of wild-growing species, varieties and cultivated representatives has been studied quite fully, but its development in the process of seed maturation has been studied very little. The article presents the results of anatomical studies of the structure of the peel of ovules of different ages and mature seeds of wild and cultivated representatives of the cotton plant Gossypium L. A total of 16 diploid subspecies were studied. A comparative analysis of indicators of the structure and rate of formation of the integumentary layers of the seed coat was carried out to identify both distinctive and common features in wild and cultivated representatives of the genus Gossypium L. Diagnostically significant features were also identified. in the structure of the seed coat. In particular, the structural features of the hardness (strength) of the seed coat of the studied representatives were determined, which correlate with precocity and contamination of the fiber, which are of interest for genetic breeding work. And the level of development and systematic position of individual representatives of the genus Gossypium L.

Published in Journal of Plant Sciences (Volume 11, Issue 3)
DOI 10.11648/j.jps.20231103.17
Page(s) 86-92
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), 2023. Published by Science Publishing Group

Keywords

Cotton, Species, Anatomy, Seed, Spermoderm, Diploid

References
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[2] Barykina RP, Chubatova NV (2005) Great workshop on botany. Ecological anatomy of flow-ering plants. KMK Scientific press Ltd, Moscow, 77 pp. [In Russian].
[3] Carlos B. Armijo, Kevin D. Baker, Sidney E. Hughs, Edward M. Barnes, and Marvis N. Harvesting and Seed Cotton Cleaning of a Cotton Cultivar with a Fragile Seed Coat. The Journal of Cotton Science. – 2009. – №13. – Р. 158–165 http://journal.cotton.org, The Cotton Foundation 2009.
[4] Clif Boykin, and Sam Ray The Effects of Seed Cotton Cleaning on Seed Coat Fragments. The Journal of Cotton Science. – 2010. – №14. – Р. 91-98. http://journal.cotton.org, © The Cotton Foundation 2010.
[5] Dilovar T Khamraeva, Nina V Grabovec, Rainer W Bussmann, Olim K Khojimatov Leaf morphological and anatomical structure of pregenerative individuals of Ferula tadshikorum in ex situ conditions Acta Biologica Sibirica 7: 193–210 (2021) doi: 10.3897//abs.7.e63714. https://abs.pensoft.net
[6] Frank E. Groves, and Freddie M. Bourland Estimating Seed Surface Area of Cottonseed The Journal of Cotton Science – 2010. – № 14. – Р. 74-81 http://journal.cotton.org, © The Cotton Foundation 2010.
[7] Hernandez-Gomez M. C., Runavot J.-L., Guo X., et al. Heteromannan and heteroxylan cell wall polysaccharides display different dynamics during the elongation and secondary cell wall deposition phases of cotton fiber cell development. Plant and Cell Physiology, 2015, 56, 1786–1797.
[8] Ioelovich M. Cellulose: Structure and property relationships. In: Handbook of Sustainable Polymers: Structure and Chemistry. Edited by Vijay Kumar Thakur and Manju Kumari Thakur. Pan Stanford Publishing, Boca Raton, 2016.
[9] Ioelovich M. Correlation between features of cotton fibers and mechanical properties of cotton threads. Available from: https://www.researchgate.net/publication/351783582_Correlation_between_features_of_cotton_fibers_and_mechanical_properties_of_cotton_threads [accessed Sep 21 2021].
[10] Ioelovich M., Yuha R., Subotzky M. The correlation between cotton fibers parameters and yarn properties. Israel Textile Journal, 1997, 150, 20-23.
[11] Li Y., Tu L., Pettolino F. A., et al. GbEXPATR, a species-specific expansion, enhances cotton fiber elongation through cell wall restructuring. Plant Biotechnology Journal, 2016, 14, 951-963.
[12] Nadira B. Khanhodjaeva, Nina V. Grabovets. Use Of New Ecological Methods To Reduce Pesticide Load As Bioprotection Design Engineering (Toronto), 2021, 9, 3526-3533.
[13] Nina V. Grabovets Air Cavity as a Sign Determining Stoneiness and Intensity of Appearance of Seeds, As Well As Advanced Species of the Genus Gossypium L. Nat. Volatiles & Essent. Oils, 2021; 8 (5): 8019-8024.
[14] Patil, Pravin; Malik, Surendra; Sutar, Shrikant; Yadav, S. R.; John, Joseph; Bhat, K. V Taxonomic importance of seed macro- and micro-morphology in Abelmoschus Medik. (Malvaceae) Nordic Journal of Botany. Exploring the botanical biodiversity on Earth. – 2015. – N 5. – P. 114-123.
[15] Shahbandeh M. Cotton production by country, worldwide. Statista, Sept. 24, 2019.
[16] T. R. Johnson, M. E. Kane, and H. E. Pérez, “Examining the interaction of light, nutrients and carbohydrates on seed germination and early seedling development of Bletia purpurea (Orchidaceae),” Plant Growth Regulation, vol. 63, no. 1, pp. 89–99, 2011.
[17] Zaitsev GN (1990) Mathematics in experimental botany. Nauka, Moscow, 296 pp. [In Rus-sian].
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    Nina Tutushkina, Abdumavlyan Abdullaev, Ziroat Ernazarova. (2023). The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L. Journal of Plant Sciences, 11(3), 86-92. https://doi.org/10.11648/j.jps.20231103.17

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    ACS Style

    Nina Tutushkina; Abdumavlyan Abdullaev; Ziroat Ernazarova. The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L. J. Plant Sci. 2023, 11(3), 86-92. doi: 10.11648/j.jps.20231103.17

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    AMA Style

    Nina Tutushkina, Abdumavlyan Abdullaev, Ziroat Ernazarova. The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L. J Plant Sci. 2023;11(3):86-92. doi: 10.11648/j.jps.20231103.17

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  • @article{10.11648/j.jps.20231103.17,
      author = {Nina Tutushkina and Abdumavlyan Abdullaev and Ziroat Ernazarova},
      title = {The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L},
      journal = {Journal of Plant Sciences},
      volume = {11},
      number = {3},
      pages = {86-92},
      doi = {10.11648/j.jps.20231103.17},
      url = {https://doi.org/10.11648/j.jps.20231103.17},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.jps.20231103.17},
      abstract = {The biomorphological and genetic diversity of cotton that exists in nature includes about 50 species belonging to the genus Gossypium L. of the family Malvaceae Juss. Many of its representatives, and especially wild ones, are carriers of valuable traits and biological properties, but due to a number of objective reasons, they are little used in practical breeding. Of all the diversity, only some representatives of diploid species - G. herbaceum L., G. arboreum L. and tetraploid - G. hirsutum L., G. barbadense L. are used in culture and have become widespread. In modern breeding programs, much attention is paid to a comprehensive study and selection of source material. A large and valuable contribution, along with others, is made by morphological and anatomical methods for studying the vegetative and generative organs of cotton. The seed coat plays an important biological role during its germination, performs the functions of protecting the embryo, maintaining its viability, and also contains a number of valuable chemicals used in the national economy. The structure of the peel of the mature seed of wild-growing species, varieties and cultivated representatives has been studied quite fully, but its development in the process of seed maturation has been studied very little. The article presents the results of anatomical studies of the structure of the peel of ovules of different ages and mature seeds of wild and cultivated representatives of the cotton plant Gossypium L. A total of 16 diploid subspecies were studied. A comparative analysis of indicators of the structure and rate of formation of the integumentary layers of the seed coat was carried out to identify both distinctive and common features in wild and cultivated representatives of the genus Gossypium L. Diagnostically significant features were also identified. in the structure of the seed coat. In particular, the structural features of the hardness (strength) of the seed coat of the studied representatives were determined, which correlate with precocity and contamination of the fiber, which are of interest for genetic breeding work. And the level of development and systematic position of individual representatives of the genus Gossypium L.},
     year = {2023}
    }
    

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  • TY  - JOUR
    T1  - The Characterization of Anatomical Indices of Seed Coat Formation of Diploid and Tetraploid Representatives of the Genus Gossypium L
    AU  - Nina Tutushkina
    AU  - Abdumavlyan Abdullaev
    AU  - Ziroat Ernazarova
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    N1  - https://doi.org/10.11648/j.jps.20231103.17
    DO  - 10.11648/j.jps.20231103.17
    T2  - Journal of Plant Sciences
    JF  - Journal of Plant Sciences
    JO  - Journal of Plant Sciences
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    EP  - 92
    PB  - Science Publishing Group
    SN  - 2331-0731
    UR  - https://doi.org/10.11648/j.jps.20231103.17
    AB  - The biomorphological and genetic diversity of cotton that exists in nature includes about 50 species belonging to the genus Gossypium L. of the family Malvaceae Juss. Many of its representatives, and especially wild ones, are carriers of valuable traits and biological properties, but due to a number of objective reasons, they are little used in practical breeding. Of all the diversity, only some representatives of diploid species - G. herbaceum L., G. arboreum L. and tetraploid - G. hirsutum L., G. barbadense L. are used in culture and have become widespread. In modern breeding programs, much attention is paid to a comprehensive study and selection of source material. A large and valuable contribution, along with others, is made by morphological and anatomical methods for studying the vegetative and generative organs of cotton. The seed coat plays an important biological role during its germination, performs the functions of protecting the embryo, maintaining its viability, and also contains a number of valuable chemicals used in the national economy. The structure of the peel of the mature seed of wild-growing species, varieties and cultivated representatives has been studied quite fully, but its development in the process of seed maturation has been studied very little. The article presents the results of anatomical studies of the structure of the peel of ovules of different ages and mature seeds of wild and cultivated representatives of the cotton plant Gossypium L. A total of 16 diploid subspecies were studied. A comparative analysis of indicators of the structure and rate of formation of the integumentary layers of the seed coat was carried out to identify both distinctive and common features in wild and cultivated representatives of the genus Gossypium L. Diagnostically significant features were also identified. in the structure of the seed coat. In particular, the structural features of the hardness (strength) of the seed coat of the studied representatives were determined, which correlate with precocity and contamination of the fiber, which are of interest for genetic breeding work. And the level of development and systematic position of individual representatives of the genus Gossypium L.
    VL  - 11
    IS  - 3
    ER  - 

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Author Information
  • Institute of Genetics and Plant Experimental Biology, Academy of Sciences of the Republic of Uzbekistan, Tashkent, Uzbekistan

  • Institute of Genetics and Plant Experimental Biology, Academy of Sciences of the Republic of Uzbekistan, Tashkent, Uzbekistan

  • Institute of Genetics and Plant Experimental Biology, Academy of Sciences of the Republic of Uzbekistan, Tashkent, Uzbekistan

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