© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an important energy source for soil microorganisms. It is therefore crucial to estimate the distribution of root derived carbon (C) in soil and how it changes with soil water content. Methods: We tested how drought affects exudate distribution in the rhizosphere by coupling 14 CO 2 labelling of plants and phosphor imaging to estimate C allocation in roots. Rhizosphere water content was visualized by neutron radiography. A numerical model was employed to predict the exudate release and its spatiotemporal distribution along and around growing roots. Results: Dry and wet plants allocated similar amounts of 14 C into roots but root elongation decreased...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
First published: 09 July 2021Photosynthetic carbon (C) allocated below-ground can be shared with myc...
- Root exudates play an important role in ecosystem response to climate change, but the functional c...
First published: 30 November 2020Rhizodeposition plays an important role in below-ground carbon (C) ...
As plant roots take up water and the soil dries, water depletion is expected to occur in the vicinit...
Droughts strongly affect carbon and nitrogen cycling in grasslands, with consequences for ecosystem ...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Although root mucilage plays a prominent role in soil-plant-water relations, especially under drough...
Recent studies have drawn attention to the role of mucilage in shaping rhizosphere hydraulic propert...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
© 2017 Springer International Publishing AG, part of Springer Nature Aims: Rhizodeposition is an imp...
First published: 09 July 2021Photosynthetic carbon (C) allocated below-ground can be shared with myc...
- Root exudates play an important role in ecosystem response to climate change, but the functional c...
First published: 30 November 2020Rhizodeposition plays an important role in below-ground carbon (C) ...
As plant roots take up water and the soil dries, water depletion is expected to occur in the vicinit...
Droughts strongly affect carbon and nitrogen cycling in grasslands, with consequences for ecosystem ...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Although root mucilage plays a prominent role in soil-plant-water relations, especially under drough...
Recent studies have drawn attention to the role of mucilage in shaping rhizosphere hydraulic propert...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...
Approximately 40% of total terrestrial precipitation transits the tiny volume of rhizosphere soil ar...