1. Differences in litter quality and in soil microbial community composition can influence the litter decomposition and "home-field advantage" (HFA). However, our knowledge about the relative role of litter and soil characteristics on litter decomposition and HFA effects is still limited, especially under long-term N deposition. 2. We collected soil and two types of litter (monospecific and mixed species litter) from five replicate plots from a long-term N-deposition field experiment with seven N-addition treatments (0, 2, 5, 10, 15, 20, 50 g N m-2 yr-1). We examined the effects of N-addition on litter quality and soil characteristics. We then carried out a three-pronged microcosm decomposition experiment with (i) litter from different N-ad...
Background and aims: Decomposition of organic matter varies depending upon interactions between the ...
Soil biota are increasingly recognized as a primary control on litter decomposition at both local an...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
1. Differences in litter quality and in soil microbial community composition can influence the litte...
1.Differences in litter quality and in soil microbial community composition can influence the litter...
1. It is increasingly recognized that interactions between plants and soil (a)biotic conditions can ...
Home field advantage (HFA; acceleration of plant litter decomposition in soils that receive their in...
Nitrogen (N) enrichment has direct effects on ecosystem functioning by altering soil abiotic conditi...
The 'home-field advantage' (HFA) hypothesis predicts that plant litter is decomposed faster than exp...
The ‘home-field advantage (HFA) hypothesis’ predicts that plant litter is decomposed faster than exp...
Increasing evidence suggests that specific interactions between microbial decomposers and plant litt...
It is increasingly recognized that interactions between plants and soil (a)biotic conditions can inf...
Many studies have investigated the influence of plant litter species composition on decomposition, b...
Plant litter often decomposes faster in the habitat from which it was derived (i.e. home) than when ...
Background and aims: Decomposition of organic matter varies depending upon interactions between the ...
Soil biota are increasingly recognized as a primary control on litter decomposition at both local an...
Soil microbial community composition and litter quality are important drivers of litter decompositio...
1. Differences in litter quality and in soil microbial community composition can influence the litte...
1.Differences in litter quality and in soil microbial community composition can influence the litter...
1. It is increasingly recognized that interactions between plants and soil (a)biotic conditions can ...
Home field advantage (HFA; acceleration of plant litter decomposition in soils that receive their in...
Nitrogen (N) enrichment has direct effects on ecosystem functioning by altering soil abiotic conditi...
The 'home-field advantage' (HFA) hypothesis predicts that plant litter is decomposed faster than exp...
The ‘home-field advantage (HFA) hypothesis’ predicts that plant litter is decomposed faster than exp...
Increasing evidence suggests that specific interactions between microbial decomposers and plant litt...
It is increasingly recognized that interactions between plants and soil (a)biotic conditions can inf...
Many studies have investigated the influence of plant litter species composition on decomposition, b...
Plant litter often decomposes faster in the habitat from which it was derived (i.e. home) than when ...
Background and aims: Decomposition of organic matter varies depending upon interactions between the ...
Soil biota are increasingly recognized as a primary control on litter decomposition at both local an...
Soil microbial community composition and litter quality are important drivers of litter decompositio...