Fungi play a key role in ecosystem nutrient cycles by scavenging, concentrating, translocating and redistributing nitrogen. To quantify and predict fungal nitrogen redistribution, and assess the importance of the integrity of fungal networks in soil for ecosystem function, we need better understanding of the structures and processes involved. Until recently nitrogen translocation has been experimentally intractable owing to the lack of a suitable radioisotope tracer for nitrogen, and the impossibility of observing nitrogen translocation in real time under realistic conditions. We have developed an imaging method for recording the magnitude and direction of amino acid flow through the whole mycelial network as it captures, assimilates and ch...
Background and Aims The importance of the uptake of nitrogen in organic form by plants and mycorrhiz...
Nitrogen isotope (δ 15 N) patterns in plants may provide insight into plant N dynamics. Here, two an...
In this review, we synthesize field and culture studies of the 15N/14N (expressed as δ15N) of autotr...
Fungi play a key role in ecosystem nutrient cycles by scavenging, concentrating, translocating and r...
Fungi play a central role in the nutrient cycle of boreal and temperate forests. In these biomes, th...
Introduction The mycelium of woodland fungi can act both as a reservoir and as a distribution system...
Summary: Transport networks are vital components of multi-cellular organisms, distributing nutrients...
Transport networks are vital components of multi-cellular organisms, distributing nutrients and remo...
Please cite as: Hestrin, Rachel, Weber, Peter K., Pett-Ridge, Jennifer, and Lehmann, Johannes. (202...
Mycorthizae play a critical role in nutrient capture from soils. Arbuscular mycorrhizae (AM) and ect...
Mycorrhizas (fungal roots) play vital roles in plant nutrient acquisition, performance and productiv...
• Cord-forming woodland basidiomycete fungi form extensive, interconnected mycelial networks that sc...
Nitrogen translocation by woodland fungi is ecologically important, however, techniques to study lon...
Mycorrhizal plants from a variety of ecosystems have the capacity to take up organic forms of nitrog...
Organic nitrogen use by mycorrhizal fungi and associated plants could fuel productivity in nitrogen-...
Background and Aims The importance of the uptake of nitrogen in organic form by plants and mycorrhiz...
Nitrogen isotope (δ 15 N) patterns in plants may provide insight into plant N dynamics. Here, two an...
In this review, we synthesize field and culture studies of the 15N/14N (expressed as δ15N) of autotr...
Fungi play a key role in ecosystem nutrient cycles by scavenging, concentrating, translocating and r...
Fungi play a central role in the nutrient cycle of boreal and temperate forests. In these biomes, th...
Introduction The mycelium of woodland fungi can act both as a reservoir and as a distribution system...
Summary: Transport networks are vital components of multi-cellular organisms, distributing nutrients...
Transport networks are vital components of multi-cellular organisms, distributing nutrients and remo...
Please cite as: Hestrin, Rachel, Weber, Peter K., Pett-Ridge, Jennifer, and Lehmann, Johannes. (202...
Mycorthizae play a critical role in nutrient capture from soils. Arbuscular mycorrhizae (AM) and ect...
Mycorrhizas (fungal roots) play vital roles in plant nutrient acquisition, performance and productiv...
• Cord-forming woodland basidiomycete fungi form extensive, interconnected mycelial networks that sc...
Nitrogen translocation by woodland fungi is ecologically important, however, techniques to study lon...
Mycorrhizal plants from a variety of ecosystems have the capacity to take up organic forms of nitrog...
Organic nitrogen use by mycorrhizal fungi and associated plants could fuel productivity in nitrogen-...
Background and Aims The importance of the uptake of nitrogen in organic form by plants and mycorrhiz...
Nitrogen isotope (δ 15 N) patterns in plants may provide insight into plant N dynamics. Here, two an...
In this review, we synthesize field and culture studies of the 15N/14N (expressed as δ15N) of autotr...