BarleyMicroBreed builds on the paradigm that crop resource efficiency and stress resilience can be significantly improved by optimizing the capacity of plant roots to efficiently interact with the existing soil microbiota. We therefore propose to advance our mechanistic understanding of interactions between the crop plant genome, root phenotypic traits, and the root-associated microbiota to identify novel breeding strategies for crops tailored to harness the benefits of the indigenous soil microbial diversity.
A holo-omics analysis of functionally annotated barley genomes together with a catalogue of root microbiota assemblages and phenotypic data including drought responses of 600 barley varieties determined in field trials in Austria, Lebanon and Morocco, will enable the identification of barley genome components, microbiota members and root traits important for drought resilience. Barley genome regions putatively important for microbiota assembly and drought resistance will be validated by gene knock-outs and causative effects will be explored using a combination of metabolomics, metagenomics and root phenotyping in pot and rhizobox experiments.
To improve root phenotyping, we will develop tools including core break imaging systems, software developments for “gap filling” in rhizobox phenotyping, and models to infer seedling to mature root system architecture.
Finally, with the knowledge of the genetic regulation of phenotypic root plasticity of barley lines we will implement strategies to create drought adaptive barley varieties with improved root systems and microbiomes. A selection of lines based on drought responses, microbiome assembly and root systems will be backcrossed into elite European lines and tested in field trials.
Project ID
Funding period
1 November 2022 - 31 October 2028Total budget
EU contribution
Funding programme
Call for proposals
Type of action
Type of stakeholder
Project contribution to Mission Soil’s:
Specific objectives
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1. Reduce land degradation relating to desertification
Not targeted -
2. Conserve and increase soil organic carbon stocks
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3. No net soil sealing and increase the reuse of urban soils
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4. Reduce soil pollution and enhance restoration
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5. Prevent erosion
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6. Improve soil structure to enhance habitat quality for soil biota and crops
Targeted -
7. Reduce the EU global footprint on soils
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8. Increase soil literacy in society across Member States
Not targeted
Operational objectives
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1. Build capacities and the knowledge base for soil stewardship
Partially targeted
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2. Co-create and upscale place-based innovations to improve soil health in all places
Partially targeted
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3. Develop an integrated EU soil monitoring system and track progress towards soil health
Not targeted
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4. Engage with the soil user community and society at large
Not targeted
Innovation hotspots
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1. Carbon farming
Not targeted
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2. Soil pollution and restoration
Not targeted
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3. Soil biodiversity including the microbiome
Targeted
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4. Circular economy solutions
Not targeted
Cross-cutting dimensions
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1. Business
Not targeted
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2. Digital
Targeted
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3. Territorial
Not targeted
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4. International
Not targeted
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