Recently photoassimilated carbon and fungus‐delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister, M Dietrich… - New …, 2021 - Wiley Online Library
Ectomycorrhizal plants trade plant‐assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica.

W Mayerhofer, A Schintlmeister, M Dietrich… - The New …, 2021 - europepmc.org
Ectomycorrhizal plants trade plant‐assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica.

W Mayerhofer, A Schintlmeister, M Dietrich, S Gorka… - 2021 - cabidigitallibrary.org
Ectomycorrhizal plants trade plant-assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister… - New …, 2021 - research-repository.uwa.edu.au
Ectomycorrhizal plants trade plant-assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister… - The New …, 2021 - pubmed.ncbi.nlm.nih.gov
Ectomycorrhizal plants trade plant-assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

[HTML][HTML] Recently photoassimilated carbon and fungus‐delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister, M Dietrich… - The New …, 2021 - ncbi.nlm.nih.gov
Ectomycorrhizal plants trade plant‐assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus‐delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica.

W Mayerhofer, A Schintlmeister, M Dietrich… - New …, 2021 - search.ebscohost.com
Ectomycorrhizal plants trade plant‐assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister, M Dietrich, S Gorka… - New Phytologist, 2021 - vbn.aau.dk
Ectomycorrhizal plants trade plant-assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

[PDF][PDF] Recently photoassimilated carbon and fungus-delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

C Kaiser - New Phytologist, 2021 - vbn.aau.dk
Ectomycorrhizal plants trade plant-assimilated carbon for soil nutrients with their fungal
partners. The underlying mechanisms, however, are not fully understood. Here we …

[引用][C] Recently photoassimilated carbon and fungus‐delivered nitrogen are spatially correlated in the ectomycorrhizal tissue of Fagus sylvatica

W Mayerhofer, A Schintlmeister, M Dietrich, S Gorka… - 2021