<div><p>Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient growth conditions and is a key parameter for estimating terrestrial ecosystem carbon (C) stocks. To investigate how climatic variations affect patterns of plant biomass allocation, we sampled 548 plants belonging to four dominant genera (<i>Stipa spp.</i>, <i>Cleistogenes spp.</i>, <i>Agropyron spp.</i>, and <i>Leymus spp.</i>) along a large-scale (2500 km) climatic gradient across the temperate grasslands from west to east in northern China. Our results showed that <i>Leymus spp.</i> had the lowest root/shoot ratios among the each genus. Root/shoot ratios of each genera were positively correlated with mean annual temperature (MAT), and ...
BACKGROUND: The longer growing season under climate warming has served as a crucial mechanism for th...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Above- and belowground biomass allocation not only influences growth of individual plants, but also ...
Grassland covers approximately one-third of the area of China and plays an important role in the glo...
Background – Shrublands are receiving increasing attention because of climate change. However, knowl...
Background – Shrublands are receiving increasing attention because of climate change. However, knowl...
Abstract The Qinghai–Tibet Plateau (QTP) is particularly sensitive to global climate change, especia...
Aim: Understanding and predicting ecosystem functioning such as biomass accumulation requires an acc...
<div><p>Aim</p><p>Understanding and predicting ecosystem functioning such as biomass accumulation re...
Understanding and predicting ecosystem functioning such as biomass accumulation requires an accurate...
Understanding and predicting ecosystem functioning such as biomass accumulation requires an accurate...
BACKGROUND: The longer growing season under climate warming has served as a crucial mechanism for th...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Plant biomass allocation between below- and above-ground parts can actively adapt to the ambient gro...
Above- and belowground biomass allocation not only influences growth of individual plants, but also ...
Grassland covers approximately one-third of the area of China and plays an important role in the glo...
Background – Shrublands are receiving increasing attention because of climate change. However, knowl...
Background – Shrublands are receiving increasing attention because of climate change. However, knowl...
Abstract The Qinghai–Tibet Plateau (QTP) is particularly sensitive to global climate change, especia...
Aim: Understanding and predicting ecosystem functioning such as biomass accumulation requires an acc...
<div><p>Aim</p><p>Understanding and predicting ecosystem functioning such as biomass accumulation re...
Understanding and predicting ecosystem functioning such as biomass accumulation requires an accurate...
Understanding and predicting ecosystem functioning such as biomass accumulation requires an accurate...
BACKGROUND: The longer growing season under climate warming has served as a crucial mechanism for th...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...