Alpine grasslands on the Tibetan Plateau are claimed to be sensitive and vulnerable to climate change and human disturbance. The mechanism, direction and magnitude of climatic and anthropogenic influences on net primary productivity (NPP) of various alpine pastures remain under debate. Here, we simulated the potential productivity (with only climate variables being considered as drivers; NPPP) and actual productivity (based on remote sensing dataset including both climate and anthropogenic drivers; NPPA) from 1993 to 2011. We denoted the difference between NPPP and NPPA as NPPpc to quantify how much forage can be potentially consumed by livestock. The actually consumed productivity (NPPac) by livestock were estimated based on meat productio...
The Tibetan Plateau has faced environmental degradation in recent years due to intensified human act...
<div><p>Biomass allocation is an essential concept for understanding above- vs. below-ground functio...
Grasslands occupy nearly three quarters of the land surface of the Qinghai-Tibet plateau (QTP) and p...
Alpine grasslands on the Tibetan Plateau are claimed to be sensitive and vulnerable to climate chang...
To better understand the ecological and economic benefits of short-term grazing exclusion on the abo...
Abstract: Changes in global climate patterns and human activity have the potential to alter key comp...
Understanding the importance of temperature and precipitation on plant productivity is beneficial, t...
Alpine grasslands on the Qinghai-Tibetan Plateau are sensitive and vulnerable to climate change and ...
An accurate assessment of the stocking rate is crucial for maintaining the stable function and the s...
Alpine grasslands on the Tibetan Plateau, being vulnerable to environmental and anthropogenic change...
Qinghai province is an important part of the Tibetan Plateau, and is characterized by extremely frag...
Grasslands in the Tibetan Plateau are claimed to be sensitive and vulnerable to climate change and a...
Background. Quantitative evaluations of the relative impacts of climate change and anthropogenic act...
Climate change and anthropogenic activities are two factors that have important effects on the carbo...
Grazing and climate change are the two key factors influencing the aboveground net primary productiv...
The Tibetan Plateau has faced environmental degradation in recent years due to intensified human act...
<div><p>Biomass allocation is an essential concept for understanding above- vs. below-ground functio...
Grasslands occupy nearly three quarters of the land surface of the Qinghai-Tibet plateau (QTP) and p...
Alpine grasslands on the Tibetan Plateau are claimed to be sensitive and vulnerable to climate chang...
To better understand the ecological and economic benefits of short-term grazing exclusion on the abo...
Abstract: Changes in global climate patterns and human activity have the potential to alter key comp...
Understanding the importance of temperature and precipitation on plant productivity is beneficial, t...
Alpine grasslands on the Qinghai-Tibetan Plateau are sensitive and vulnerable to climate change and ...
An accurate assessment of the stocking rate is crucial for maintaining the stable function and the s...
Alpine grasslands on the Tibetan Plateau, being vulnerable to environmental and anthropogenic change...
Qinghai province is an important part of the Tibetan Plateau, and is characterized by extremely frag...
Grasslands in the Tibetan Plateau are claimed to be sensitive and vulnerable to climate change and a...
Background. Quantitative evaluations of the relative impacts of climate change and anthropogenic act...
Climate change and anthropogenic activities are two factors that have important effects on the carbo...
Grazing and climate change are the two key factors influencing the aboveground net primary productiv...
The Tibetan Plateau has faced environmental degradation in recent years due to intensified human act...
<div><p>Biomass allocation is an essential concept for understanding above- vs. below-ground functio...
Grasslands occupy nearly three quarters of the land surface of the Qinghai-Tibet plateau (QTP) and p...