Changing precipitation and temperature are principal drivers for nutrient cycling dynamics in drylands. Foliar isotopic carbon (C) and nitrogen (N) composition (δ13C and δ15N) are often used to describe the plant’s water use efficiency and nitrogen use strategy in plant ecology research. However, the drivers and mechanisms under differential foliar δ13C and δ15N among plant species and communities are largely unknown for arid high-elevation regions. This study collected 462 leaf samples of ten top-dominant plant species (two or three replicates per species) across 16 sites in 2005 and 2010 to measure the community-weighted means (CWMs) of foliar δ13C and δ15N, northeastern Qaidam Basin, Qinghai-Tibetan Plateau. Our results showed that the C...
Water is a limiting factor and significant driving force for ecosystem processes in arid and semi-ar...
The allocation and stoichiometry of plant nutrients in leaves reflect fundamental ecosystem processe...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
Changing precipitation and temperature are principal drivers for nutrient cycling dynamics in drylan...
Climate models predict the further intensification of global warming in the future. Drylands, as one...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
Background and aims: the nitrogen isotope composition (δ¹⁵N) of plants in arid and semiarid grasslan...
Precipitation is a key environmental factor determining plant community structure and function. Know...
Determining large-scale patterns of plant elemental concentrations and stoichiometry along environme...
<div><p>Water availability is the most influential factor affecting plant carbon (<em>δ</em><sup>13<...
Water availability is the most influential factor affecting plant carbon (δ(13)C) and nitrogen (δ(15...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...
Herbaceous synusia is an important component of shrub community/ecosystem in the Junggar Desert and ...
1. Precipitation alteration and nitrogen (N) deposition caused by anthropogenic activities could pro...
Carbon isotope ratio of leaf dry matter, delta(13)C, was measured on species occurring within Baiyin...
Water is a limiting factor and significant driving force for ecosystem processes in arid and semi-ar...
The allocation and stoichiometry of plant nutrients in leaves reflect fundamental ecosystem processe...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...
Changing precipitation and temperature are principal drivers for nutrient cycling dynamics in drylan...
Climate models predict the further intensification of global warming in the future. Drylands, as one...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
Background and aims: the nitrogen isotope composition (δ¹⁵N) of plants in arid and semiarid grasslan...
Precipitation is a key environmental factor determining plant community structure and function. Know...
Determining large-scale patterns of plant elemental concentrations and stoichiometry along environme...
<div><p>Water availability is the most influential factor affecting plant carbon (<em>δ</em><sup>13<...
Water availability is the most influential factor affecting plant carbon (δ(13)C) and nitrogen (δ(15...
Background and aims: Variations in plant nitrogen (N) and phosphorus (P) concentrations and ratios h...
Herbaceous synusia is an important component of shrub community/ecosystem in the Junggar Desert and ...
1. Precipitation alteration and nitrogen (N) deposition caused by anthropogenic activities could pro...
Carbon isotope ratio of leaf dry matter, delta(13)C, was measured on species occurring within Baiyin...
Water is a limiting factor and significant driving force for ecosystem processes in arid and semi-ar...
The allocation and stoichiometry of plant nutrients in leaves reflect fundamental ecosystem processe...
The coupling of carbon cycle and nitrogen cycle drives the food web structure and biogeochemistry of...