Predicting parameters of degradation succession processes of Tibetan <i>Kobresia</i> grasslands
Author:
Lin L., Li Y. K., Xu X. L.ORCID, Zhang F. W., Du Y. G., Liu S. L., Guo X. W., Cao G. M.
Abstract
Abstract. In the past two decades, increasing human activity (i.e., overgrazing) in the Tibetan Plateau has strongly influenced plant succession processes, resulting in the degradation of alpine grasslands. Therefore, it is necessary to diagnose the degree of degradation to enable implementation of appropriate management for sustainable exploitation and protection of alpine grasslands. Here, we investigated environmental factors and plant functional group quantity factors (PFGs) during the alpine grassland succession processes. Principal component analysis (PCA) was used to identify the parameters indicative of degradation. We divided the entire degradation process into six stages. PFG types shifted from rhizome bunch grasses to rhizome plexus and dense plexus grasses during the degradation process. Leguminosae and Gramineae plants were replaced by Sedges during the advanced stages of degradation. The PFGs were classified into two reaction groups: the grazing-sensitive group, containing Kobresia humilis Mey, and Gramineae and Leguminosae plants, and the grazing-insensitive group, containing Kobresia pygmaea Clarke. The first group was correlated with live root biomass in the surface soil (0–10 cm), whereas the second group was strongly correlated with mattic epipedon thickness and K. pygmaea characteristics. The degree of degradation of alpine meadows may be delineated by development of mattic epipedon and PFG composition. Thus, meadows could be easily graded and their use adjusted based on our scaling system, which would help prevent irreversible degradation of important grasslands. Because relatively few environmental factors are investigated, this approach can save time and labor to formulate a conservation management plan for degraded alpine meadows.
Publisher
Copernicus GmbH
Reference57 articles.
1. Ali, K., Kraines, S., Hoang, L., and Yarime, M.: Advancing quantification methods of sustainability: a critical examination emergy, exergy, ecological footprint, and ecological information-based approaches, Ecol. Indic., 37, 81–89, 2014. 2. Angassa, A.: Effects of grazing intensity and bush encroachment on herbaceous on species and rangeland condition in southern Ethiopia, Land Degrad. Dev., 25, 438–451, https://doi.org/10.1002/ldr.2160, 2014. 3. Araújo, A. S. F., Eisenhauer, N., Nunes, L. A. P. L., Leite, L. F. C., and Cesarz, S.: Soil surface-active fauna in degraded and restored lands of northeast brazil, Land Degrad. Dev., 26, 1–8, 2014. 4. Bardgett, R.: Causes and consequences of biological diversity in soil, Zoology, 105, 367–374, 2002. 5. Brandt, J. S., Haynes, M. A., Kuemmerle, T., Waller, D. M., and Radeloff, V. C.: Regime shift on the roof of the world: Alpine meadows converting to shrublands in the southern Himalayas, Biol. Conserv., 158, 116–127, 2013.
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