Spatial variation in mean annual precipitation is the principal driver of plant water and nitrogen status in drylands. The natural abundance of carbon stable isotopes (δ13C) in photosynthetic tissues of C3 plants is an indicator of time-integrated behaviour of stomatal conductance; while that of nitrogen stable isotopes (δ15N) is an indicator of the main source of plant N (soil N vs. atmospheric N2). Previous studies in drylands have documented that plant δ13C and δ15N values increase with decreasing mean annual precipitation due to reductions in stomatal conductance, and soil enriched in 15N, respectively. However, evidence for this comes from studies focused on stable isotopes measurements integrated at the plant community level or on dom...
Abstract:Isotopic composition of leaf carbon (δ13C) and nitrogen (δ15N) is determined by biotic and ...
Despite the known links between climate and biogeochemical cycling of N in tropical forests, fundame...
Ratios of nitrogen (N) isotopes in leaves could elucidate underlying patterns of N cycling across ec...
Water availability is the most influential factor affecting plant carbon (δ(13)C) and nitrogen (δ(15...
The relationships between annual wood stable carbon isotope composition (δ13C), dry season midday pl...
<div><p>Water availability is the most influential factor affecting plant carbon (<em>δ</em><sup>13<...
Background and aims: the nitrogen isotope composition (δ¹⁵N) of plants in arid and semiarid grasslan...
An increase in foliar nitrogen isotope composition (δ<sup>15</sup>N) with decreasing precipitation h...
Stable carbon and nitrogen isotope signals in plant tissues integrate plant-environment interactions...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
Very few studies of stable isotopes exist across the Andes in South America. This study is the first...
Carbon isotope discrimination (Δ) and nitrogen isotope ratios, N-concentrations and specific leaf ar...
Stable carbon and nitrogen isotope signals in plant tissues integrate plant-environment interactions...
1. Understanding climate effects on plant?soil interactions in terrestrial ecosystems remains challe...
Abstract:Isotopic composition of leaf carbon (δ13C) and nitrogen (δ15N) is determined by biotic and ...
Despite the known links between climate and biogeochemical cycling of N in tropical forests, fundame...
Ratios of nitrogen (N) isotopes in leaves could elucidate underlying patterns of N cycling across ec...
Water availability is the most influential factor affecting plant carbon (δ(13)C) and nitrogen (δ(15...
The relationships between annual wood stable carbon isotope composition (δ13C), dry season midday pl...
<div><p>Water availability is the most influential factor affecting plant carbon (<em>δ</em><sup>13<...
Background and aims: the nitrogen isotope composition (δ¹⁵N) of plants in arid and semiarid grasslan...
An increase in foliar nitrogen isotope composition (δ<sup>15</sup>N) with decreasing precipitation h...
Stable carbon and nitrogen isotope signals in plant tissues integrate plant-environment interactions...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
Very few studies of stable isotopes exist across the Andes in South America. This study is the first...
Carbon isotope discrimination (Δ) and nitrogen isotope ratios, N-concentrations and specific leaf ar...
Stable carbon and nitrogen isotope signals in plant tissues integrate plant-environment interactions...
1. Understanding climate effects on plant?soil interactions in terrestrial ecosystems remains challe...
Abstract:Isotopic composition of leaf carbon (δ13C) and nitrogen (δ15N) is determined by biotic and ...
Despite the known links between climate and biogeochemical cycling of N in tropical forests, fundame...
Ratios of nitrogen (N) isotopes in leaves could elucidate underlying patterns of N cycling across ec...