| Symmetry | 卷:12 |
| Fluctuating Asymmetry in Morphological Characteristics of Betula Pendula Roth Leaf under Conditions of Urban Ecosystems: Evaluation of the Multi-Factor Negative Impact | |
| Elena Shadrina1  Irina Korotchenko2  Nina Turmukhametova3  Victoria Soldatova4  Yakov Vol’pert5  Galina Pervyshina6  | |
| [1] Institute for Biological Problems of Cryolithozone SB RAS, Lenin av., 41, 677980 Yakutsk, Russia; | |
| [2] Krasnoyarsk State Agrarian University, Mira Av., 90, 660049 Krasnoyarsk, Russia; | |
| [3] Mari State University, Lenin Square 1, 424000 Yoshkar-Ola, Russia; | |
| [4] North-Eastern Federal University, Belinsky str., 58, 677027 Yakutsk, Russia; | |
| [5] Research Institute of Applied Ecology, North-Eastern Federal University, Lenin av., 1, 677000 Yakutsk, Russia; | |
| [6] Trade-Economical Institute, Siberian Federal University, Svobodny pr., 79, 660041 Krasnoyarsk, Russia; | |
| 关键词: fluctuating asymmetry; developmental instability; silver birch; Betula pendula; traffic load; complex anthropogenic impact; | |
| DOI : 10.3390/sym12081317 | |
| 来源: DOAJ | |
【 摘 要 】
The fluctuating asymmetry (FA) in Betula pendula Roth was estimated as an integrated measure of five morphometric characteristics of a lamina. Samples were collected in seven cities that differ both in climatic conditions, moderately to sharply continental. In total, 33 ecotopes were distinguished with various level of anthropogenic load. The statistical data processing involved correlation, one-way and factorial ANOVA, regression analyses, and principal component analysis (PCA). The impact of 25 climatic and anthropogenic factors on the FA value was considered. In most urban ecotopes, the integrated fluctuating asymmetry (IFA) value was higher than in natural biotopes of the same region. No significant inter-annual differences in IFA values were found. FA dependence on traffic load is noted to be statistically significant. The covariation analysis of IFA, climatic, and anthropogenic variables in various urban ecotopes revealed the impact of three groups of factors that together explain 93% of the variance in environmental parameters. The complex analysis clearly arranged the studied ecotopes by pollution gradient and climatic patterns. The primary effect of the total anthropogenic load on the developmental stability of B. pendula results in an IFA increase. IFA can play a key role in bioindication assessment of environmental quality. The climatic factors have no significant effect on the developmental stability of B. pendula in urban conditions.
【 授权许可】
Unknown