Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery

JE Carrara, IJ Fernandez, ER Brzostek - Biogeochemistry, 2022 - Springer
Nitrogen (N) fertilization has enhanced the forest land carbon (C) sink by increasing the
amount of C stored in soils, possibly through reductions in decomposition. Established …

Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery

JE Carrara, IJ Fernandez, ER Brzostek - Biogeochemistry, 2022 - search.proquest.com
Nitrogen (N) fertilization has enhanced the forest land carbon (C) sink by increasing the
amount of C stored in soils, possibly through reductions in decomposition. Established …

[引用][C] Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery

JE Carrara, IJ Fernandez, ER Brzostek - Biogeochemistry, 2022 - ui.adsabs.harvard.edu
Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery -
NASA/ADS Now on home page ads icon ads Enable full ADS view NASA/ADS Mycorrhizal type …

Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery.

JE Carrara, IJ Fernandez, ER Brzostek - Biogeochemistry, 2022 - search.ebscohost.com
Nitrogen (N) fertilization has enhanced the forest land carbon (C) sink by increasing the
amount of C stored in soils, possibly through reductions in decomposition. Established …

Mycorrhizal type determines root-microbial responses to nitrogen fertilization and recovery.

JE Carrara, IJ Fernandez, ER Brzostek - 2021 - cabidigitallibrary.org
Nitrogen (N) fertilization has enhanced the forest land carbon (C) sink by increasing the
amount of C stored in soils, possibly through reductions in decomposition. Established …

[引用][C] Mycorrhizal type determines root–microbial responses to nitrogen fertilization and recovery

JE Carrara, IJ Fernandez, ER Brzostek - 2022