Research Highlights: Short-term nitrogen (N) addition did not significantly alter the effects of seasonal drought on the leaf functional traits in Machilus pauhoi Kanehira seedlings in N-rich subtropical China. Background and Objectives: Seasonal drought and N deposition are major drivers of global environmental change that affect plant growth and ecosystem function in subtropical China. However, no consensus has been reached on the interactive effects of these two drivers. Materials and Methods: We conducted a full-factorial experiment to analyze the single and combined effects of seasonal drought and short-term N addition on chemical, morphological and physiological traits of M. pauhoi seedlings. Results: Seasonal drought (40% of soil fie...
The objective of this study was to explore the changes in leaf nitrogen (N) and phosphorus (P) conte...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
Global climate change is likely to increase the risk of frequent drought. Maize, as the principal gl...
† Background and aims Changes in supplies of resources will modify plant functional traits. However,...
Drought has had considerable effects on the ecological functions and processes of terrestrial ecosys...
Abstract Background Nitrogen- and water-use efficiency (NUE and WUE) reflect the capacity of plants ...
[Objective] Pinus tabulaeformis is widely distributed over China, and a dominant species as an affor...
Drought is one of the major environmental stresses altering forest productivity. However, nutrient a...
Droughts are becoming more frequent and intense, and the nitrogen deposition rate is increasing worl...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Atmospheric nitrogen (N) deposition and increasing precipitation affect carbon sequestration in terr...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
The efficient use of water and nitrogen (N) to promote growth and increase yield of fruit trees and ...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
The objective of this study was to explore the changes in leaf nitrogen (N) and phosphorus (P) conte...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
Global climate change is likely to increase the risk of frequent drought. Maize, as the principal gl...
† Background and aims Changes in supplies of resources will modify plant functional traits. However,...
Drought has had considerable effects on the ecological functions and processes of terrestrial ecosys...
Abstract Background Nitrogen- and water-use efficiency (NUE and WUE) reflect the capacity of plants ...
[Objective] Pinus tabulaeformis is widely distributed over China, and a dominant species as an affor...
Drought is one of the major environmental stresses altering forest productivity. However, nutrient a...
Droughts are becoming more frequent and intense, and the nitrogen deposition rate is increasing worl...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
Atmospheric nitrogen (N) deposition and increasing precipitation affect carbon sequestration in terr...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
The efficient use of water and nitrogen (N) to promote growth and increase yield of fruit trees and ...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
The objective of this study was to explore the changes in leaf nitrogen (N) and phosphorus (P) conte...
<p>Drought during senescence has become more common in Mediterranean climates in recent years. Cheno...
Global climate change is likely to increase the risk of frequent drought. Maize, as the principal gl...