Javascript must be enabled to continue!
Grazing management strategies on alpine meadows vary with different degrees of degradation on northeastern Qinghai-Tibetan Plateau
View through CrossRef
In recent decades, alpine grassland has been serimously degraded across
the Qinghai Tibetan Plateau (QTP), although grazing exclusion has been
widely adopted to restore degraded QTP grassland. It remains unknown
whether this management approach is effective for all degraded alpine
grasslands. In this study, plots with three grazing management
treatments (free grazing, FG; reduced grazing, RG; grazing exclusion,
GE) and four degradation stages (non-degradation, ND; light degradation,
LD; moderate degradation, MD; heavy degradation, HD) were compared. Our
results showed that the total aboveground biomass (AGB) and species
richness (SR) were reduced while total belowground biomass (BGB)
increased with increasing degradation, and the responses of SR, AGB and
BGB to grazing management varied with the degree of degradation. The
total AGB in the LD, MD and HD stages reduced significantly after 6
years under RG and GE, but there was no significant change of AGB in the
ND stage. Meanwhile, SR reduced significantly after 6 years under RG and
GE across all degradation stages except for HD. Furthermore, the
responses of plant functional groups to grazing management varied. After
6 years under RG and GE, the Gramineae AGB increased significantly
across all degradation levels; that of the sedges decreased (except in
the MD stage); and that of the forbs increased significantly in LD and
HD but decreased significantly in ND. Our result suggested that the
light degradation grassland can be restored by reducing grazing, and
moderate degradation and heavy degradation grassland can restored by
grazing exclusion.
Title: Grazing management strategies on alpine meadows vary with different degrees of degradation on northeastern Qinghai-Tibetan Plateau
Description:
In recent decades, alpine grassland has been serimously degraded across
the Qinghai Tibetan Plateau (QTP), although grazing exclusion has been
widely adopted to restore degraded QTP grassland.
It remains unknown
whether this management approach is effective for all degraded alpine
grasslands.
In this study, plots with three grazing management
treatments (free grazing, FG; reduced grazing, RG; grazing exclusion,
GE) and four degradation stages (non-degradation, ND; light degradation,
LD; moderate degradation, MD; heavy degradation, HD) were compared.
Our
results showed that the total aboveground biomass (AGB) and species
richness (SR) were reduced while total belowground biomass (BGB)
increased with increasing degradation, and the responses of SR, AGB and
BGB to grazing management varied with the degree of degradation.
The
total AGB in the LD, MD and HD stages reduced significantly after 6
years under RG and GE, but there was no significant change of AGB in the
ND stage.
Meanwhile, SR reduced significantly after 6 years under RG and
GE across all degradation stages except for HD.
Furthermore, the
responses of plant functional groups to grazing management varied.
After
6 years under RG and GE, the Gramineae AGB increased significantly
across all degradation levels; that of the sedges decreased (except in
the MD stage); and that of the forbs increased significantly in LD and
HD but decreased significantly in ND.
Our result suggested that the
light degradation grassland can be restored by reducing grazing, and
moderate degradation and heavy degradation grassland can restored by
grazing exclusion.
Related Results
Effects of the restoration of alpine meadows with patches on community biomass and its allocation
Effects of the restoration of alpine meadows with patches on community biomass and its allocation
The serious degradation of alpine meadows on the Qinghai-Tibet Plateau
has greatly affected the community structure and productivity of
grasslands. In this experiment, the degraded...
Greater prairie‐chicken nest survival and changes in vegetation structure and composition with conservation grazing
Greater prairie‐chicken nest survival and changes in vegetation structure and composition with conservation grazing
Abstract
Conservation grazing is a management practice to maintain or restore prairie vegetation conditions. The application of conservation ...
Grazing Modulates Vegetation Diversity and Productivity Responses to Photovoltaic Microhabitats in an Alpine Steppe on the Qinghai-Tibet Plateau
Grazing Modulates Vegetation Diversity and Productivity Responses to Photovoltaic Microhabitats in an Alpine Steppe on the Qinghai-Tibet Plateau
The rapid expansion of photovoltaic (PV) infrastructure across the Qinghai-Tibet Plateau is reshaping land-use patterns in alpine grasslands. However, how PV-induced microhabitats ...
Grazing Modulates Vegetation Diversity and Productivity Responses to Photovoltaic Microhabitats in an Alpine Steppe on the Qinghai-Tibet Plateau
Grazing Modulates Vegetation Diversity and Productivity Responses to Photovoltaic Microhabitats in an Alpine Steppe on the Qinghai-Tibet Plateau
The rapid expansion of photovoltaic (PV) infrastructure across the Qinghai-Tibet Plateau is reshaping land-use patterns in alpine grasslands. However, how PV-induced microhabitats ...
Grazing increased alpine grassland soil respiration rates on the Tibetan Plateau
Grazing increased alpine grassland soil respiration rates on the Tibetan Plateau
Introduction
Grazing activities were intensive in alpine grasslands and may alter the soil respiration rates across the Tibetan Plateau. However, grazed alpine ...
Bacterial diversity and community assembly mechanisms in alpine wetland soils under the influence of grazing
Bacterial diversity and community assembly mechanisms in alpine wetland soils under the influence of grazing
ABSTRACT
Wetlands are among the world’s most significant ecosystems. Studying how different grazing intensities affect s...
Protected meadows more diverse meadows store more carbon in soil than neighboring commercially used meadows.
Protected meadows more diverse meadows store more carbon in soil than neighboring commercially used meadows.
In this study, we have explored effect of long-term nature protection on soil carbon storage in meadows. We have selected 30 pairs of meadows, each pair consisted from nature reser...
Key sources and seasonal dynamics of greenhouse gas fluxes from yak grazing systems on the Qinghai-Tibetan Plateau
Key sources and seasonal dynamics of greenhouse gas fluxes from yak grazing systems on the Qinghai-Tibetan Plateau
AbstractGreenhouse gas (GHG) emissions from livestock grazing systems are contributing to global warming. To examine the influence of yak grazing systems on GHG fluxes and relation...

