Group Variability of Morphological Features in the Leaves of Betula pendula Roth (Betulaceae, Magnoliópsida) in the Gradient of Weather Conditions and Technogenic Soil Transformation
The group variability of morphological features of the leaves of Betula pendula Roth was studied in the gradients of adverse weather conditions and technogenic soil transformation. The studies were carried out on the territory of the Tagil zone of the Middle Urals in the years 2016–2019. It has been...
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Published in: | Biology bulletin of the Russian Academy of Sciences Vol. 50; no. 10; pp. 2698 - 2709 |
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Abstract | The group variability of morphological features of the leaves of
Betula pendula
Roth was studied in the gradients of adverse weather conditions and technogenic soil transformation. The studies were carried out on the territory of the Tagil zone of the Middle Urals in the years 2016–2019. It has been shown that the majority of the leaf features studied have an average level of variation, while a high one is typical for the shape index, and a low one is typical for the leaf blade index and the angles between the main and lateral vein of the first order, located in the middle and upper parts of the leaf. The variability of the features increases in the gradient of deterioration of weather conditions and decreases in the gradient of technogenic soil transformation. The morphological features making the greatest contribution to the variability of the size and shape of the leaf were identified by principal component analysis. Leaf variability is mainly determined by dimensional features. Allometric features are more stable. To assess the resistance of an organism to adverse factors, it is proposed to use the stability coefficient, which reflects the number of feature transitions from one level of variability to another one. This indicator increases both in the gradient of technogenic soil transformation and in the gradient of unfavorable weather. |
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AbstractList | The group variability of morphological features of the leaves of Betula pendula Roth was studied in the gradients of adverse weather conditions and technogenic soil transformation. The studies were carried out on the territory of the Tagil zone of the Middle Urals in the years 2016–2019. It has been shown that the majority of the leaf features studied have an average level of variation, while a high one is typical for the shape index, and a low one is typical for the leaf blade index and the angles between the main and lateral vein of the first order, located in the middle and upper parts of the leaf. The variability of the features increases in the gradient of deterioration of weather conditions and decreases in the gradient of technogenic soil transformation. The morphological features making the greatest contribution to the variability of the size and shape of the leaf were identified by principal component analysis. Leaf variability is mainly determined by dimensional features. Allometric features are more stable. To assess the resistance of an organism to adverse factors, it is proposed to use the stability coefficient, which reflects the number of feature transitions from one level of variability to another one. This indicator increases both in the gradient of technogenic soil transformation and in the gradient of unfavorable weather. The group variability of morphological features of the leaves of Betula pendula Roth was studied in the gradients of adverse weather conditions and technogenic soil transformation. The studies were carried out on the territory of the Tagil zone of the Middle Urals in the years 2016–2019. It has been shown that the majority of the leaf features studied have an average level of variation, while a high one is typical for the shape index, and a low one is typical for the leaf blade index and the angles between the main and lateral vein of the first order, located in the middle and upper parts of the leaf. The variability of the features increases in the gradient of deterioration of weather conditions and decreases in the gradient of technogenic soil transformation. The morphological features making the greatest contribution to the variability of the size and shape of the leaf were identified by principal component analysis. Leaf variability is mainly determined by dimensional features. Allometric features are more stable. To assess the resistance of an organism to adverse factors, it is proposed to use the stability coefficient, which reflects the number of feature transitions from one level of variability to another one. This indicator increases both in the gradient of technogenic soil transformation and in the gradient of unfavorable weather. |
Author | Meling, E. V. Zhuikova, T. V. Popova, A. S. |
Author_xml | – sequence: 1 givenname: T. V. orcidid: 0000-0001-8658-7372 surname: Zhuikova fullname: Zhuikova, T. V. email: hbfnt@rambler.ru organization: Nizhny Tagil State Social Pedagogical Institute, Russian State Vocational Pedagogical University – sequence: 2 givenname: E. V. surname: Meling fullname: Meling, E. V. email: meling-e@mail.ru organization: Nizhny Tagil State Social Pedagogical Institute, Russian State Vocational Pedagogical University – sequence: 3 givenname: A. S. surname: Popova fullname: Popova, A. S. email: stassy.popova@yandex.ru organization: Nizhny Tagil State Social Pedagogical Institute, Russian State Vocational Pedagogical University |
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Cites_doi | 10.1134/S0024114819020050 10.18413/2712-7443-2020-44-4-432-445 10.1111/j.1365-2435.2006.01198.x 10.1023/a:1012534201258 10.1134/s1067413615030133 10.1134/s1067413609060046 10.1134/s1995425521050061 10.1007/978-94-009-7299-5_6 10.51318/FRET.2022.27.36.005 10.1134/s1067413617010106 10.24411/2072-8816-2018-10013 10.1134/s1067413614020039 10.55355/snv2022112106 10.1134/s102144370906017x 10.35885/1684-7318-2022-2-173-192 10.17816/snv202094109 |
ContentType | Journal Article |
Copyright | Pleiades Publishing, Inc. 2023. ISSN 1062-3590, Biology Bulletin, 2023, Vol. 50, No. 10, pp. 2698–2709. © Pleiades Publishing, Inc., 2023. Russian Text © The Author(s), 2023, published in Povolzhskii Ekologicheskii Zhurnal, 2023, No. 1, pp. 37–57. |
Copyright_xml | – notice: Pleiades Publishing, Inc. 2023. ISSN 1062-3590, Biology Bulletin, 2023, Vol. 50, No. 10, pp. 2698–2709. © Pleiades Publishing, Inc., 2023. Russian Text © The Author(s), 2023, published in Povolzhskii Ekologicheskii Zhurnal, 2023, No. 1, pp. 37–57. |
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Keywords | technogenic soil transformation weather conditions group variability leaf morphological features |
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Betula pendula
Roth was studied in the gradients of adverse weather conditions and technogenic... The group variability of morphological features of the leaves of Betula pendula Roth was studied in the gradients of adverse weather conditions and technogenic... |
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SubjectTerms | Betula pendula Biochemistry Biomedical and Life Sciences Cell Biology Ecology Leaves Life Sciences Morphology Principal components analysis Variability Weather Zoology |
Title | Group Variability of Morphological Features in the Leaves of Betula pendula Roth (Betulaceae, Magnoliópsida) in the Gradient of Weather Conditions and Technogenic Soil Transformation |
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