1.Leaf litter decomposition is a key component of global biogeochemical cycles that influences soil carbon storage, nutrient availability and plant productivity. Ongoing climate change will lead to warmer and drier conditions in many dryland regions, potentially affecting litter decomposition and nutrient dynamics. Climate change effects can be direct and/or indirect, e.g. through changes in litter quality, yet their relative importance on litter decomposition remains unclear. 2. We conducted a manipulative study in a semiarid shrubland to assess the effects of leaf litter quality, forecasted climate change, i.e. +2.5°C warming (W), 30% rainfall reduction (RR), as well as their interaction (W+RR) to elucidate their ...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Deforestation and forest degradation are driving unprecedented declines in biodiversity across the t...
Our understanding of the principal controls on litter decomposition is critical for our capacity to ...
1.Leaf litter decomposition is a key component of global biogeochemical cycles that influences soil ...
1.Leaf litter decomposition is a key component of global biogeochemical cycles that influences soil ...
Climate change is likely to alter plant composition, productivity and litter decomposition. As ecosy...
Climate change is likely to alter plant composition, productivity and litter decomposition. As ecosy...
Climate warming is altering plant and soil microbial communities, with important implications for ec...
1. Decomposition of organic matter in semiarid ecosystems is a key component of the terrestrial carb...
1. Decomposition of organic matter in semiarid ecosystems is a key component of the terrestrial carb...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Decomposition of leaf litter collected from an old-fi eld community grown under a combination of ele...
Background Litter decomposition greatly influences soil structure, nutrient content and carbon seque...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Deforestation and forest degradation are driving unprecedented declines in biodiversity across the t...
Our understanding of the principal controls on litter decomposition is critical for our capacity to ...
1.Leaf litter decomposition is a key component of global biogeochemical cycles that influences soil ...
1.Leaf litter decomposition is a key component of global biogeochemical cycles that influences soil ...
Climate change is likely to alter plant composition, productivity and litter decomposition. As ecosy...
Climate change is likely to alter plant composition, productivity and litter decomposition. As ecosy...
Climate warming is altering plant and soil microbial communities, with important implications for ec...
1. Decomposition of organic matter in semiarid ecosystems is a key component of the terrestrial carb...
1. Decomposition of organic matter in semiarid ecosystems is a key component of the terrestrial carb...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Decomposition of leaf litter collected from an old-fi eld community grown under a combination of ele...
Background Litter decomposition greatly influences soil structure, nutrient content and carbon seque...
Litter decomposition is a biogeochemical process fundamental to element cycling within ecosystems, i...
Deforestation and forest degradation are driving unprecedented declines in biodiversity across the t...
Our understanding of the principal controls on litter decomposition is critical for our capacity to ...