Dynamics of Soil Properties and Plant Composition during Postagrogenic Evolution in Different Bioclimatic Zones
The postagrogenic dynamics of acidity and some parameters of humus status have been studied in relation to the restoration of zonal vegetation in southern taiga (podzolic and soddy-podzolic soils ( Retisols )), coniferous-broadleaved (subtaiga) forest (gray forest soil ( Luvic Phaeozem )), and fores...
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Published in | Eurasian soil science Vol. 50; no. 12; pp. 1515 - 1534 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Pleiades Publishing
01.12.2017
Springer Springer Nature B.V |
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Abstract | The postagrogenic dynamics of acidity and some parameters of humus status have been studied in relation to the restoration of zonal vegetation in southern taiga (podzolic and soddy-podzolic soils (
Retisols
)), coniferous-broadleaved (subtaiga) forest (gray forest soil (
Luvic Phaeozem
)), and forest-steppe (gray forest soil (
Haplic Phaeozem
)) subzones. The most significant transformation of the studied properties of soils under changing vegetation has been revealed for poor sandy soils of southern taiga. The degree of changes in the content and stocks of organic carbon, the enrichment of humus in nitrogen, and acidity in the 0- to 20-cm soil layer during the postagrogenic evolution decreases from north to south. The adequate reflection of soil physicochemical properties in changes of plant cover is determined by the climatic zone and the land use pattern. A correlation between the changes in the soil acidity and the portion of acidophilic species in the plant cover is revealed for the southern taiga subzone. A positive relationship is found between the content of organic carbon and the share of species preferring humus-rich soils in the forest-steppe zone. |
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AbstractList | The postagrogenic dynamics of acidity and some parameters of humus status have been studied in relation to the restoration of zonal vegetation in southern taiga (podzolic and soddy-podzolic soils (Retisols)), coniferous-broadleaved (subtaiga) forest (gray forest soil (Luvic Phaeozem)), and forest-steppe (gray forest soil (Haplic Phaeozem)) subzones. The most significant transformation of the studied properties of soils under changing vegetation has been revealed for poor sandy soils of southern taiga. The degree of changes in the content and stocks of organic carbon, the enrichment of humus in nitrogen, and acidity in the 0- to 20-cm soil layer during the postagrogenic evolution decreases from north to south. The adequate reflection of soil physicochemical properties in changes of plant cover is determined by the climatic zone and the land use pattern. A correlation between the changes in the soil acidity and the portion of acidophilic species in the plant cover is revealed for the southern taiga subzone. A positive relationship is found between the content of organic carbon and the share of species preferring humus-rich soils in the forest-steppe zone. Keywords: postagrogenic soils, vegetation demutation, carbon pool, soil acidity, biodiversity, ecologicalcenotic scales, southern-taiga, coniferous-broadleaved, and forest-steppe zones DOI: 10.1134/S1064229317120109 The postagrogenic dynamics of acidity and some parameters of humus status have been studied in relation to the restoration of zonal vegetation in southern taiga (podzolic and soddy-podzolic soils (Retisols)), coniferous-broadleaved (subtaiga) forest (gray forest soil (Luvic Phaeozem)), and forest-steppe (gray forest soil (Haplic Phaeozem)) subzones. The most significant transformation of the studied properties of soils under changing vegetation has been revealed for poor sandy soils of southern taiga. The degree of changes in the content and stocks of organic carbon, the enrichment of humus in nitrogen, and acidity in the 0- to 20-cm soil layer during the postagrogenic evolution decreases from north to south. The adequate reflection of soil physicochemical properties in changes of plant cover is determined by the climatic zone and the land use pattern. A correlation between the changes in the soil acidity and the portion of acidophilic species in the plant cover is revealed for the southern taiga subzone. A positive relationship is found between the content of organic carbon and the share of species preferring humus-rich soils in the forest-steppe zone. The postagrogenic dynamics of acidity and some parameters of humus status have been studied in relation to the restoration of zonal vegetation in southern taiga (podzolic and soddy-podzolic soils ( Retisols )), coniferous-broadleaved (subtaiga) forest (gray forest soil ( Luvic Phaeozem )), and forest-steppe (gray forest soil ( Haplic Phaeozem )) subzones. The most significant transformation of the studied properties of soils under changing vegetation has been revealed for poor sandy soils of southern taiga. The degree of changes in the content and stocks of organic carbon, the enrichment of humus in nitrogen, and acidity in the 0- to 20-cm soil layer during the postagrogenic evolution decreases from north to south. The adequate reflection of soil physicochemical properties in changes of plant cover is determined by the climatic zone and the land use pattern. A correlation between the changes in the soil acidity and the portion of acidophilic species in the plant cover is revealed for the southern taiga subzone. A positive relationship is found between the content of organic carbon and the share of species preferring humus-rich soils in the forest-steppe zone. |
Audience | Academic |
Author | Ovsepyan, L. A. Ermolaev, A. M. Telesnina, V. M. Lichko, V. I. Kurganova, I. N. Lopes de Gerenyu, V. O. Mirin, D. M. |
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Cites_doi | 10.1016/S0038-0717(99)00136-4 10.1016/S0378-1127(02)00304-3 10.1134/S1062359014060120 10.1016/j.geoderma.2011.02.005 10.1134/S1064229308130048 10.1046/j.1354-1013.2002.00486.x 10.1016/j.catena.2015.02.016 10.1134/S1064229310080041 10.1134/S0012496609030089 10.1016/j.geoderma.2009.05.014 10.1134/S1064229313070041 10.1016/j.geoderma.2014.08.013 10.3103/S0147687407040011 10.1016/j.geoderma.2013.05.019 10.1134/S1064229309090105 10.1134/S1064229315110095 10.1134/S1064229307010085 10.1016/j.foreco.2005.12.027 10.1134/S1064229314090117 10.1134/S1064229313050141 10.1134/S1064229316010117 10.1029/2008GB003212 |
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Copyright | Pleiades Publishing, Ltd. 2017 COPYRIGHT 2017 Springer Eurasian Soil Science is a copyright of Springer, (2017). All Rights Reserved. |
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Keywords | biodiversity postagrogenic soils vegetation demutation ecologicalcenotic scales southern-taiga soil acidity carbon pool and forest-steppe zones coniferous-broadleaved |
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SubjectTerms | Acidic soils Acidity Bioclimatology Carbon content Climatic zones Composition Conservation of Soils Decomposing organic matter Degradation Dynamics Earth and Environmental Science Earth Sciences Evolution Forest soils Forests Geotechnical Engineering & Applied Earth Sciences Humus Land use Organic carbon Physicochemical processes Physicochemical properties Plants Podzolic soils Rehabilitation Restoration Sandy soils Soil Soil acidity Soil dynamics Soil layers Soil properties Soils Steppes Stocks Taiga Taiga & tundra Vegetation |
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Title | Dynamics of Soil Properties and Plant Composition during Postagrogenic Evolution in Different Bioclimatic Zones |
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