Paucity in the knowledge of responses of grassland carbon dynamics to environmental variables constrains our ability to predict future ecosystem productivity. The aim of this study was to investigate differential responses of above- and below-ground carbon stocks to environmental drivers in Tibetan alpine Plateau at both regional and local scales. Variance partitioning and non-linear regression between carbon stocks and environmental driving variables suggested that both above- and below-ground carbon stocks showed a significant negative relationship with temperature and a positive relationship with soil moisture. Annual accumulated temperature constrained above-ground carbon at regional scale (r(2)=0.50, P<0.0001), while soil moisture cont...
PurposeAlthough large amounts of soil organic carbon (SOC) stored in the shrublands, information abo...
Paucity in the knowledge of responses of grassland carbon dynamics to environmental variables constr...
Alpine steppe is considered to be the largest grassland type on the Tibetan Plateau. This grassland ...
Based on field observations, remote sensing, and modeling, recent studies have reported inconsistent...
The soils of the Qinghai-Tibetan Plateau store a large amount of organic carbon, but the magnitude, ...
The objective of this study is to gain a deeper understanding of the trade-offs between the abovegro...
Improving our knowledge of the effects of environmental factors (e.g. soil conditions, precipitation...
Based on field observations, remote sensing, and modeling, recent studies have reported inconsistent...
The Tibetan Plateau is an essential area to study the potential feedback effects of soils to climate...
AbstractThe objective of this study is to gain a deeper understanding of the trade-offs between the ...
Climate warming is likely inducing carbon loss from soils of northern ecosystems, but little evidenc...
The soils of the Qinghai-Tibetan Plateau store a large amount of organic carbon, but the magnitude, ...
The alpine grassland ecosystem can sequester a large quantity of carbon, yet its significance remain...
<div><p>The alpine grassland ecosystem can sequester a large quantity of carbon, yet its significanc...
This study investigated spatial patterns and environmental controls of aboveground biomass (AGB) in ...
PurposeAlthough large amounts of soil organic carbon (SOC) stored in the shrublands, information abo...
Paucity in the knowledge of responses of grassland carbon dynamics to environmental variables constr...
Alpine steppe is considered to be the largest grassland type on the Tibetan Plateau. This grassland ...
Based on field observations, remote sensing, and modeling, recent studies have reported inconsistent...
The soils of the Qinghai-Tibetan Plateau store a large amount of organic carbon, but the magnitude, ...
The objective of this study is to gain a deeper understanding of the trade-offs between the abovegro...
Improving our knowledge of the effects of environmental factors (e.g. soil conditions, precipitation...
Based on field observations, remote sensing, and modeling, recent studies have reported inconsistent...
The Tibetan Plateau is an essential area to study the potential feedback effects of soils to climate...
AbstractThe objective of this study is to gain a deeper understanding of the trade-offs between the ...
Climate warming is likely inducing carbon loss from soils of northern ecosystems, but little evidenc...
The soils of the Qinghai-Tibetan Plateau store a large amount of organic carbon, but the magnitude, ...
The alpine grassland ecosystem can sequester a large quantity of carbon, yet its significance remain...
<div><p>The alpine grassland ecosystem can sequester a large quantity of carbon, yet its significanc...
This study investigated spatial patterns and environmental controls of aboveground biomass (AGB) in ...
PurposeAlthough large amounts of soil organic carbon (SOC) stored in the shrublands, information abo...
Paucity in the knowledge of responses of grassland carbon dynamics to environmental variables constr...
Alpine steppe is considered to be the largest grassland type on the Tibetan Plateau. This grassland ...