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Research Area 1 "Landscape Functioning"

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How do agricultural landscapes function?

The primary objective of this Research Area is an integrated understanding of the biogeochemical (C, N, Si) cycles in agricultural landscapes, including the interactions between land and atmosphere (e.g. trace gas fluxes and dust emissions) and their relevance for agricultural production. A major focus is on crop plants, microorganisms and soils as the major drivers of biogeochemical cycles in agricultural landscapes. In this context, lateral transport processes (soil erosion, dust, water) are of particular interest, as these contribute considerably to the formation of spatially differentiated biogeochemical process domains in agricultural landscapes and determine the local site conditions relevant for agricultural production.

This Research Area currently focusses on three core research questions:

  • Which role do the long-term structures and processes of soil landscapes play in recent water and solute fluxes, biogeochemical cycles (C, N, Si), land-atmosphere interactions and agricultural productivity?
  • How do both positive and negative interactions between crop plants and their microbiome influence agricultural productivity, C and nutrient dynamics, and land-atmosphere interactions?
  • How can stable isotopes and radionuclides be used to quantify and spatially characterize C and N metabolic processes in soils and land-atmosphere interactions?

More ...

 

Our Working Groups

 

The research topics of Research Area 1 are mainly linked to three UN Sustainable Development Goals (SDG; UN 2015), which are also addressed in the German Sustainable Development Strategy (2016): Zero Hunger (SDG 2), Climate Action (SDG 13), and Life on Land (SDG 15).

Icon SDG 2 Icon SDG 13 Icon SDG 15

 

Working groups in research area 1 

Landscape Pedology (LAP); Soil Erosion & Feedbacks (SEF); Fungal Interactions (FIA); Isotope Biogeochemistry & Gas Fluxes (IBG); Microbial Biogeochemistry (MIC);
Silicon Biogeochemistry (SIB); Hydropedology (HYP)

 

News

Title: Rethinking agriculture together: researchers propose new structure for faster change
MehrLink: https://www.zalf.de/en/aktuelles/Pages/PB1/Agroflux.aspx, More
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MyMeldungsdatum: 2025-10-14 12:00:00
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Maren Dubbert and Mathias Hoffmann from ZALF. The image may be used for editorial purposes provided the source is acknowledged: © Marten Schmidt / ZALF.
14.10.2025

Rethinking agriculture together: researchers propose new structure for faster change

Title: Carbon farming – plough impresses Federal Minister of Agriculture Alois Rainer
MehrLink: https://www.zalf.de/en/aktuelles/Pages/PB1/CF_Pflug_Machnow.aspx, More
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MyMeldungsdatum: 2025-10-10 11:00:00
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10.10.2025

Carbon farming – plough impresses Federal Minister of Agriculture Alois Rainer

Title: Visitors explored innovative measurement technologies at ECO
MehrLink: https://www.zalf.de/en/aktuelles/Pages/PB1/Besuchergruppen-informierten-sich-%C3%BCber-innovative-Messtechnik-bei-ECO.aspx, More
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MyMeldungsdatum: 2025-10-07 09:00:00
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Visitors explored innovative measurement technologies at ECO
07.10.2025

Visitors explored innovative measurement technologies at ECO

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Publications

MyTitle: Drought intensity and duration interact to magnify losses in primary productivity
MyLinkAnsehenUrl:
MyLinkPDFUrl: https://www.zalf.de/de/aktuelles/Dokumente%20PublikationenProjekte/PB1/science_ads8144.pdf, PDF take a look / download
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MyAutoren: Timothy Ohlert, Melinda D. Smith et al (2025)
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Drought intensity and duration interact to magnify losses in primary productivity

Timothy Ohlert, Melinda D. Smith et al (2025)
MyTitle: Amorphous silica reduces N2O emissions from arable land at the field plot scale
MyLinkAnsehenUrl: https://doi.org/10.3389/fenvs.2025.1522700, Resolve DOI name
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MyAutoren: Hoffmann, M., Monzón Diaz, O., Zentgraf, I., Al Hamwi, M. W., Dubbert, M., Stein, M., Holz, M., Schaller, J. (2025)
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Amorphous silica reduces N2O emissions from arable land at the field plot scale

Hoffmann, M., Monzón Diaz, O., Zentgraf, I., Al Hamwi, M. W., Dubbert, M., Stein, M., Holz, M., Schaller, J. (2025)
MyTitle: Variation of N cycle guilds of the rye rhizosphere microbiome is driven by crop productivity along a tillage erosion catena
MyLinkAnsehenUrl: https://doi.org/10.1093/ismeco/ycaf020, Resolve DOI name
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MyAutoren: Lewin, S., Wehrhan, M., Wende, S., Sommer, M., Kolb, S. (2025)
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Variation of N cycle guilds of the rye rhizosphere microbiome is driven by crop productivity along a tillage erosion catena

Lewin, S., Wehrhan, M., Wende, S., Sommer, M., Kolb, S. (2025)
MyTitle: How to get to the N - a call for interdisciplinary research on organic N utilization pathways by plants
MyLinkAnsehenUrl: https://doi.org/10.1007/s11104-024-06839-9, Take a look
MyLinkPDFUrl: https://publications.zalf.de/publications/A310F6BD-7165-421D-9A61-CA7327F9D7FE-1.pdf, PDF take a look / download
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MyAutoren: Holz, M., Lewin, S., Kolb, S., Becker, J. N., Bergmann, J. (2024)
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How to get to the N - a call for interdisciplinary research on organic N utilization pathways by plants

Holz, M., Lewin, S., Kolb, S., Becker, J. N., Bergmann, J. (2024)

Projects

MyTitle: European Soil Erosion Monitoring and Modelling Network for Sustainable Agricultural Land Management
MyLinkAnsehenUrl: https://www.zalf.de/en/forschung_lehre/projekte/Pages/details.aspx?iddp=2575, Take a look
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MyTextfeld: 01.11.2025 - 31.10.2030
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European Soil Erosion Monitoring and Modelling Network for Sustainable Agricultural Land Management

01.11.2025 - 31.10.2030
MyTitle: Untangling the impacts of fire on soil properties affecting wind erosion and dust emissions under different land uses
MyLinkAnsehenUrl: https://www.zalf.de/en/forschung_lehre/projekte/Pages/details.aspx?iddp=2571, Take a look
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MyTextfeld: 01.09.2025 - 31.08.2028
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Untangling the impacts of fire on soil properties affecting wind erosion and dust emissions under different land uses

01.09.2025 - 31.08.2028
MyTitle: Cost Action CA22142 - ROOT BENEFIT: Beneficial root-associated microorganisms for sustainable agriculture
MyLinkAnsehenUrl: https://www.zalf.de/en/forschung_lehre/projekte/Pages/details.aspx?iddp=2556, Take a look
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MyTextfeld: 01.01.2025 - 30.09.2027
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Cost Action CA22142 - ROOT BENEFIT: Beneficial root-associated microorganisms for sustainable agriculture

01.01.2025 - 30.09.2027
MyTitle: Carbon and energy flow in the soil microbiome – functional groups, activity and interactions in trophic networks
MyLinkAnsehenUrl: https://www.zalf.de/en/forschung_lehre/projekte/Pages/details.aspx?iddp=2520, Take a look
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MyTextfeld: 01.01.2025 - 31.03.2028
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Carbon and energy flow in the soil microbiome – functional groups, activity and interactions in trophic networks

01.01.2025 - 31.03.2028
MyTitle: Signs of wind erosion in the landscape
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MyLinkPDFUrl: https://zwillenberg-tietz-stiftung.de/en/signs-of-wind-erosion-in-the-landscape/, Project website
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MyTextfeld: Start: 01.01.2024
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Signs of wind erosion in the landscape

Start: 01.01.2024

 

  

People of the research area

 

Co-Heads

Prof. Dr. Steffen Kolb
T +49 (0)33432 82-282 / -326

apl. Prof. Dr. Jörg Schaller
T +49 (0)33432 82-282 / -137

 

Administration

Dr. Marion Tauschke
T +49 (0)33432 82-249

 

Secretary’s office

Anke Lange
T +49 (0)33432 82-282

Juliane Pfeiffer
T +49 (0)33432 82-115

 

F +49 (0)33432 82-280
E-mail secretariat 

 

 

Address

Leibniz-Zentrum für
Agrarlandschaftsforschung (ZALF) e. V.

Eberswalder Straße 84
15374 Müncheberg​​

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© Leibniz-Zentrum für Agrarlandschaftsforschung (ZALF) e. V. Müncheberg

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