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- W2357706619 abstract "To understand the complexity and stability in grazing systems, the equilibrium and non-equilibrium ecology theory have been developed. The equilibrium ecology theory postulates that, once disturbance has occurred in a system, the system state either returns to its former equilibrium or equilibrates within a new domain of attraction. Clements-Duksterhuis succession theory, from the equilibrium ecology, has provided one basic paradigm for the research on the dynamics of the steppe grazing systems in Xinlin River Basin, Inner Mongolia. Although this theory has been verified to fit for the dynamics of no heavily degraded steppe grazing systems, it could not give the reasonable explanation for the dynamics of heavily degraded steppe grazing systems in this region. Many grazing systems are substantiated to follow the non-equilibrium dynamics. The non-equilibrium ecology theory presumes that a steady state is never achieved, in these systems it would seem that abiotic variables have an overriding influence on vegetation dynamics and hence also on herbivore populations. The State and Transition Models, based on the non-equilibrium ecology theory, could well document the dynamics of the heavily degraded steppe grazing systems, since it could explain the breakdown and the thicketization of steppe ecosystems under overgrazing. Considering the widespread occurrence of the heavily degraded steppe, researches in the future should be combined more with the non-equilibrium ecology in Xinlin River Basin, Inner Mongolia. In addition, the restoration of heavily degraded grazing system, especially the rehabilitation of thicketization steppe, should be guided by this theory in this region." @default.
- W2357706619 created "2016-06-24" @default.
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- W2357706619 date "2004-01-01" @default.
- W2357706619 modified "2023-09-26" @default.
- W2357706619 title "Application of the equilibrium and non-equilibrium ecology to the dynamics of the steppe grazing system in Xilin River Basin, Inner Mongolia" @default.
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