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2019 | OriginalPaper | Buchkapitel

Hidden Asymmetry in Shape of Biological Patterns

verfasst von : Sergey G. Baranov

Erschienen in: Cybernetics and Algorithms in Intelligent Systems

Verlag: Springer International Publishing

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Abstract

Various bilaterally symmetrical traits have not the same variability in the magnitude of the fluctuating asymmetry. Directional asymmetry (DA) is the second type of asymmetry with a clear predominance of either right or left structures. Since the FA is a considered indicator of instability, traits with DA are not used in the integral environmental monitoring. In presented paper the geometric morphometrics method is considered. This takes into account the labels that are placed on the bilaterally symmetric structures. The centroid points of consensus figure are drawn by the averaging of landmarks in Cartesian coordinates and the value of the FA shape of lamina is evaluated. In present study the MorphoJ1.06d package was used. The sampling procedure resulted in a nested dataset design. The increase in the accuracy of the measurement indicated a large fraction of the directional asymmetry. 90% of population studied possessed this type asymmetry. 10% of samples were characterized by clear fluctuating asymmetry. The results conclude the importance fine compute approach to testing of stability of development in natural biosystem.

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Literatur
1.
Zurück zum Zitat Palmer, A.R., Strobeck, C.: Fluctuating asymmetry analyses revisited. In: Polak, M. (ed.) Developmental Instability: Causes and Consequences, pp. 279–319. Oxford University Press, New York (2003) Palmer, A.R., Strobeck, C.: Fluctuating asymmetry analyses revisited. In: Polak, M. (ed.) Developmental Instability: Causes and Consequences, pp. 279–319. Oxford University Press, New York (2003)
2.
Zurück zum Zitat Graham, J.H., Raz, S., Hel-Or, H., Nevo, E.: Fluctuating asymmetry: methods, theory, and applications. Symmetry 2, 466–540 (2010)MathSciNetCrossRef Graham, J.H., Raz, S., Hel-Or, H., Nevo, E.: Fluctuating asymmetry: methods, theory, and applications. Symmetry 2, 466–540 (2010)MathSciNetCrossRef
5.
Zurück zum Zitat Savriama, Y., Gómez, J.M., Perfectti, F., Klingenberg, C.P.: Geometric morphometrics of corolla shape: dissecting components of symmetric and asymmetric variation in Erysimum mediohispanicum (Brassicaceae). New Phytol. 196, 945–954 (2012)CrossRef Savriama, Y., Gómez, J.M., Perfectti, F., Klingenberg, C.P.: Geometric morphometrics of corolla shape: dissecting components of symmetric and asymmetric variation in Erysimum mediohispanicum (Brassicaceae). New Phytol. 196, 945–954 (2012)CrossRef
6.
Zurück zum Zitat Graham, J.H., Emlen, J.M., Freeman, D.C., Leamy, L.J., Kieser, J.: Directional asymmetry and the measurement of developmental instability. Biol. J. Linn. Soc. 64, 1–16 (1998)CrossRef Graham, J.H., Emlen, J.M., Freeman, D.C., Leamy, L.J., Kieser, J.: Directional asymmetry and the measurement of developmental instability. Biol. J. Linn. Soc. 64, 1–16 (1998)CrossRef
7.
Zurück zum Zitat Van Dongen, S., Lens, L., Molenberghs, G.: Mixture analysis of asymmetry: modelling directional asymmetry, antisymmetry and heterogeneity in fluctuating asymmetry. Ecol. Lett. 2, 387–396 (1999)CrossRef Van Dongen, S., Lens, L., Molenberghs, G.: Mixture analysis of asymmetry: modelling directional asymmetry, antisymmetry and heterogeneity in fluctuating asymmetry. Ecol. Lett. 2, 387–396 (1999)CrossRef
8.
Zurück zum Zitat Savriama, Y., Klingenberg, C.P.: Beyond bilateral symmetry: geometric morphometric methods for any type of symmetry. BMC Evol. Biol. 11, 280 (2011)CrossRef Savriama, Y., Klingenberg, C.P.: Beyond bilateral symmetry: geometric morphometric methods for any type of symmetry. BMC Evol. Biol. 11, 280 (2011)CrossRef
9.
Zurück zum Zitat Rohlf, F.J.: Shape statistics: procrustes superimpositions and tangent spaces. J. Classif. 16, 197–223 (1999)CrossRefMATH Rohlf, F.J.: Shape statistics: procrustes superimpositions and tangent spaces. J. Classif. 16, 197–223 (1999)CrossRefMATH
11.
Zurück zum Zitat Klingenberg, C.P., Barluenga, M., Meyer, A.: Shape analysis of symmetric structures: quantifying variation among individuals and asymmetry. Evolution 56, 1909–1920 (2002)CrossRef Klingenberg, C.P., Barluenga, M., Meyer, A.: Shape analysis of symmetric structures: quantifying variation among individuals and asymmetry. Evolution 56, 1909–1920 (2002)CrossRef
12.
Zurück zum Zitat Leamy, L.J., Routman, E.J., Cheverud, J.M.: An epistatic genetic basis for fluctuating asymmetry of mandible size in mice. Evolution 56(3), 642–653 (2002)CrossRef Leamy, L.J., Routman, E.J., Cheverud, J.M.: An epistatic genetic basis for fluctuating asymmetry of mandible size in mice. Evolution 56(3), 642–653 (2002)CrossRef
13.
Zurück zum Zitat Hochwender, C.G., Robert, S.: Fritz. Fluctuating asymmetry in a Salix hybrid system: the importance of genetic versus environmental causes. Evolution 53(2), 408–416 (1999)CrossRef Hochwender, C.G., Robert, S.: Fritz. Fluctuating asymmetry in a Salix hybrid system: the importance of genetic versus environmental causes. Evolution 53(2), 408–416 (1999)CrossRef
14.
Zurück zum Zitat Leamy, L.J., Klingenberg, C.P.: The genetics and evolution of fluctuating asymmetry. Annu. Rev. Ecol. Evol. Syst. 36, 1–21 (2005)CrossRef Leamy, L.J., Klingenberg, C.P.: The genetics and evolution of fluctuating asymmetry. Annu. Rev. Ecol. Evol. Syst. 36, 1–21 (2005)CrossRef
15.
Zurück zum Zitat Zorina, A.A., Korosov, A.V.: Variability of asymmetry measures and indexes of leaf characters in the crown of Betula pendula (Betulaceae). Botanicheskiĭ Zhurnal 94(8), 1172–1192 (2009) Zorina, A.A., Korosov, A.V.: Variability of asymmetry measures and indexes of leaf characters in the crown of Betula pendula (Betulaceae). Botanicheskiĭ Zhurnal 94(8), 1172–1192 (2009)
16.
Zurück zum Zitat Baranov, S.G.: Geometric morphometric methods for Testing Developmental Stability of Betula pendula Roth. Biol. Bull. 5, 567–572 (2017) Baranov, S.G.: Geometric morphometric methods for Testing Developmental Stability of Betula pendula Roth. Biol. Bull. 5, 567–572 (2017)
17.
Zurück zum Zitat Baranov, S.G.: Fenogenetic aspect of asymmetry of leaf blade Betula pendula Roth. Nauchnye vedomosti BelGU. Seriya: Estestvennye nauki 11(232), 10–17 (2016) Baranov, S.G.: Fenogenetic aspect of asymmetry of leaf blade Betula pendula Roth. Nauchnye vedomosti BelGU. Seriya: Estestvennye nauki 11(232), 10–17 (2016)
18.
Zurück zum Zitat Vasilyev, A.G., Vasilyeva, I.A., Bol’shakov, V.N.: Evolutionary-ecological analysis of trends in phenogenetic variation of homologous morphological structures: from populations to ecological series of species. Russ. J. Ecol. 41(5), 365–371 (2010)CrossRef Vasilyev, A.G., Vasilyeva, I.A., Bol’shakov, V.N.: Evolutionary-ecological analysis of trends in phenogenetic variation of homologous morphological structures: from populations to ecological series of species. Russ. J. Ecol. 41(5), 365–371 (2010)CrossRef
20.
Zurück zum Zitat Fair, J.M., Breshears, D.D.: Drought stress and fluctuating asymmetry in Quercus undulata leaves: confounding effects of absolute and relative amounts of stress? J. Arid. Enviro. 62(2), 235–249 (2005)CrossRef Fair, J.M., Breshears, D.D.: Drought stress and fluctuating asymmetry in Quercus undulata leaves: confounding effects of absolute and relative amounts of stress? J. Arid. Enviro. 62(2), 235–249 (2005)CrossRef
21.
Zurück zum Zitat Fei, X., Weihua, G., Weihong, X., Renqing, W.: Habitat effects on leaf morphological plasticity in Quercus acutissima. Acta Biologica Cracoviensia Series Botanica 50(2), 19–26 (2008) Fei, X., Weihua, G., Weihong, X., Renqing, W.: Habitat effects on leaf morphological plasticity in Quercus acutissima. Acta Biologica Cracoviensia Series Botanica 50(2), 19–26 (2008)
23.
Zurück zum Zitat Bol’shakov, V.N., Vasil’ev, A.G., Vasil’eva, I.A., Gorodilova, Y.V., Chibiryak, M.V.: Coupled biotopic variation in populations of sympatric rodent species in the Southern Urals. Russ. J. Ecol. 46(4), 339–344 (2015)CrossRef Bol’shakov, V.N., Vasil’ev, A.G., Vasil’eva, I.A., Gorodilova, Y.V., Chibiryak, M.V.: Coupled biotopic variation in populations of sympatric rodent species in the Southern Urals. Russ. J. Ecol. 46(4), 339–344 (2015)CrossRef
26.
Zurück zum Zitat Koroteeva, E.V., Veselkin, D.V., Kuyantseva, N.B., Chashchina, O.E.: The size, but not the fluctuating asymmetry of the leaf, of silver birch changes under the gradient influence of emissions of the Karabash Copper Smelter Plant. Dokl. Biol. Sci. 460, 36–39 (2015). SpringerCrossRef Koroteeva, E.V., Veselkin, D.V., Kuyantseva, N.B., Chashchina, O.E.: The size, but not the fluctuating asymmetry of the leaf, of silver birch changes under the gradient influence of emissions of the Karabash Copper Smelter Plant. Dokl. Biol. Sci. 460, 36–39 (2015). SpringerCrossRef
27.
Zurück zum Zitat Kozlov, M.V., Cornelissen, T., Gavrikov, D.E., Kunavin, M.A., Lamma, A.D., Milligan, J.R., Zverev, V., Zvereva, E.L.: Reproducibility of fluctuating asymmetry measurements in plants: sources of variation and implications for study design. Ecol. Indic. 73, 733–740 (2017)CrossRef Kozlov, M.V., Cornelissen, T., Gavrikov, D.E., Kunavin, M.A., Lamma, A.D., Milligan, J.R., Zverev, V., Zvereva, E.L.: Reproducibility of fluctuating asymmetry measurements in plants: sources of variation and implications for study design. Ecol. Indic. 73, 733–740 (2017)CrossRef
28.
Zurück zum Zitat Dongen, V.S.: Variation in measurement error in asymmetry studies: a new model, simulations and application. Symmetry 7(2), 284–293 (2015)CrossRef Dongen, V.S.: Variation in measurement error in asymmetry studies: a new model, simulations and application. Symmetry 7(2), 284–293 (2015)CrossRef
29.
Zurück zum Zitat Kryazheva, N.G., Chistyakova, E.K., Zakharov, V.M.: Analysis of development stability of Betula pendula under conditions of chemical pollution. Russ. J. Ecol. 27(6), 422–424 (1996) Kryazheva, N.G., Chistyakova, E.K., Zakharov, V.M.: Analysis of development stability of Betula pendula under conditions of chemical pollution. Russ. J. Ecol. 27(6), 422–424 (1996)
30.
Zurück zum Zitat Ivanov, V.P., Ivanov, Y.V., Marchenko, S.I., Kuznetsov, V.V.: Application of fluctuating asymmetry indexes of silver birch leaves for diagnostics of plant communities under technogenic pollution. Russ. J. Plant Physiol. 62(3), 340–348 (2015)CrossRef Ivanov, V.P., Ivanov, Y.V., Marchenko, S.I., Kuznetsov, V.V.: Application of fluctuating asymmetry indexes of silver birch leaves for diagnostics of plant communities under technogenic pollution. Russ. J. Plant Physiol. 62(3), 340–348 (2015)CrossRef
31.
Zurück zum Zitat Gelashvili, D.B., Cheprunov, E.V., Iudin, D.I.: Structural and bioindicative aspects of fluctuated asymmetry of bilateral organisms. Zhurnal obshchei biologii 65(5), 433–441 (2003) Gelashvili, D.B., Cheprunov, E.V., Iudin, D.I.: Structural and bioindicative aspects of fluctuated asymmetry of bilateral organisms. Zhurnal obshchei biologii 65(5), 433–441 (2003)
33.
Zurück zum Zitat Rohlf, F.J.: The tps series of software. Hystrix (Ital. J. Mammal.) 26(1), 9–12 (2015) Rohlf, F.J.: The tps series of software. Hystrix (Ital. J. Mammal.) 26(1), 9–12 (2015)
35.
Zurück zum Zitat Pavlinov, L.Y., Mikeshina, N.G.: Principles and methods of geometric morphometrics. Russ. J. Ecol. 3(6), 473–493 (2002) Pavlinov, L.Y., Mikeshina, N.G.: Principles and methods of geometric morphometrics. Russ. J. Ecol. 3(6), 473–493 (2002)
37.
Zurück zum Zitat Breuker, C.J., Patterson, J.S., Klingenberg, C.P.: A single basis for developmental buffering of Drosophila wing shape. PLoS ONE 1(1), e7 (2006)CrossRef Breuker, C.J., Patterson, J.S., Klingenberg, C.P.: A single basis for developmental buffering of Drosophila wing shape. PLoS ONE 1(1), e7 (2006)CrossRef
38.
Zurück zum Zitat Hagen, S.B., Ims, R.A., Yoccoz, N.G., Sørlibråten, O.: Fluctuating asymmetry as an indicator of elevation stress and distribution limits in mountain birch (Betula pubescens). Plant Ecol. 195(2), 157–163 (2008)CrossRef Hagen, S.B., Ims, R.A., Yoccoz, N.G., Sørlibråten, O.: Fluctuating asymmetry as an indicator of elevation stress and distribution limits in mountain birch (Betula pubescens). Plant Ecol. 195(2), 157–163 (2008)CrossRef
39.
Zurück zum Zitat Vasil’ev, A.G., Vasil’eva, I.A., Marin, Y.F.: Phenogenetic monitoring of the weeping birch (Betula pendula Roth.) in the Middle Urals: testing a new method for assessing developmental instability in higher plants. Russ. J. Ecol. 39(7), 483–489 (2008)CrossRef Vasil’ev, A.G., Vasil’eva, I.A., Marin, Y.F.: Phenogenetic monitoring of the weeping birch (Betula pendula Roth.) in the Middle Urals: testing a new method for assessing developmental instability in higher plants. Russ. J. Ecol. 39(7), 483–489 (2008)CrossRef
40.
Zurück zum Zitat Franiel, I.: Fluctuating asymmetry of Betula pendula Roth. leaves – an index of environment quality. Biodiv. Res. Conserv. 9–10, 7–10 (2008) Franiel, I.: Fluctuating asymmetry of Betula pendula Roth. leaves – an index of environment quality. Biodiv. Res. Conserv. 9–10, 7–10 (2008)
41.
Zurück zum Zitat Van Dongen, S.: Unbiased estimation of individual asymmetry. J. Evol. Biol. 13(1), 107–112 (2000)CrossRef Van Dongen, S.: Unbiased estimation of individual asymmetry. J. Evol. Biol. 13(1), 107–112 (2000)CrossRef
Metadaten
Titel
Hidden Asymmetry in Shape of Biological Patterns
verfasst von
Sergey G. Baranov
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-91192-2_20