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Titlebook: Alpine Ecosystems in the Northwest Caucasus; Vladimir G. Onipchenko Book 2004 Springer Science+Business Media Dordrecht 2004 algae.animals

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發(fā)表于 2025-3-21 16:49:02 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Alpine Ecosystems in the Northwest Caucasus
影響因子2023Vladimir G. Onipchenko
視頻videohttp://file.papertrans.cn/154/153914/153914.mp4
發(fā)行地址Represents results of 20 years‘ worth of ecological investigation of alpine ecosystems in the Northwest Caucasus
學(xué)科分類Geobotany
圖書封面Titlebook: Alpine Ecosystems in the Northwest Caucasus;  Vladimir G. Onipchenko Book 2004 Springer Science+Business Media Dordrecht 2004 algae.animals
影響因子Plant geographical description of the area, syntaxonomy, spatial patterns, floristic richness, structure of plant communities in relation to soil properties and herbivore influence were described for a mountain region that is difficult to access. Seasonal, inter-annual, and long-term dynamics of vegetation are discussed on the base of long-term observations as well as pollen and phytolith analyses. Population biology of alpine plants is studied by combination of field observations and mathematical modelling. Plant population strategies and soil seed banks are described for alpine plants from several communities. Results of long-term ecological experiments (plant reciprocal transplantations, dominant removals, light limitation) showed the significance of competition and facilitation for community organization. Structure of soil algal and fungal communities is represented as well as mycorrhiza of alpine plants. Main animal groups (wild) history and modern nature conservation problems are discussed.
Pindex Book 2004
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Developments in Oriented Polymers—2on, animal and microbial activity etc.) factors. In this chapter we consider soils of the studied area at several spatial scales with the increasing detail: 1) main soil types of the Teberda Reserve, 2) soils of the alpine study area, 3) soils of studied toposequences (catena) of 4 alpine plant comm
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Developments in Oriented Polymers—2 Greater Caucasus mountain range. The diversity of climate within the Reserve results from the complex mountain topography with strong altitudinal differences: the lower parts of the Reserve are at the altitude of 1,300 m, while the highest point of the Reserve is at 4,046 m above sea level (Mt. Dom
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G. Buttazzo,G. P. Galdi,L. Zanghirati& Onipchenko 2001). The flora of bryophytes used to contain 73 liverworts and 227 leafy mosses (Ignatova et al. 1990), but 67 moss species have been added since (Onipchenko & Ignatova 1996). Similar floristic richness is known for other mountain regions in Europe, for example, Davos (Schibler 1937).
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https://doi.org/10.1007/978-94-009-4183-0ess factor in alpine habitats. Consequently, alpine plants must adapt their age population structure and growth strategy to the fluctuating severe environment. In general, the aim of alpine plants’ adaptations is to minimise the risk of a sudden local extinction under more or less continuously sever
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