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Daniel Garrido-Sanz

@dgarrs.bsky.social
74 followers 75 following 7 posts

Lecturer and Principal Investigator at Madrid Autonomous University | Plant-beneficial bacteria | Plant Microbiomes | Microbial ecology | Bioinformatics

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Reposted by Daniel Garrido-Sanz
Soil Biogeochemistry @ UNIL @keiluweitlab.bsky.social · 24/03/2026
Who wants to know how plant roots and microbes conspire to induce anoxic microsites in the rhizosphere? Check out @soiltycoon.bsky.social's latest paper in New Phytologist! lnkd.in/eCwxkwT2. THANKS to G Ceriotti, P De Anna, S. Borisov, J Berg, D Garrido-Sanz, C Keel, the NCCR Microbiomes and SNF.
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Reposted by Daniel Garrido-Sanz
SeedCon2026 @seed-con.bsky.social · 13/02/2026
Let’s welcome Daniel Garrido-Sanz @dgarrs.bsky.social as a speaker at SeedCon 2026! Register now and don’t miss his talk at the first international Seed Microbiome Conference, 5-7 May, in Potsdam, Germany! seedcon.org
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Reposted by Daniel Garrido-Sanz
Courtney Herms @courtneyherms.bsky.social · 05/11/2025
#NewPI @dgarrs.bsky.social is studying seed microbiomes in wheat #PMS2025
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Reposted by Daniel Garrido-Sanz
Ákos T Kovács @evolvedbiofilm.bsky.social · 05/11/2025
Daniel describes their work by enriching wheat rhizosphere bacteria with successive cultivation for 6 cycles www.nature.com/articles/s41... #PMS2026
nature.com
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation - Nature Microbiology
A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Reposted by Daniel Garrido-Sanz
Ákos T Kovács @evolvedbiofilm.bsky.social · 09/10/2025
Single nucleotide switches confer bacteriophage resistance to Pseudomonas protegens micrLIFE from Christoph Keel with @dgarrs.bsky.social academic.oup.com/microlife/ad...
academic.oup.com
Single nucleotide switches confer bacteriophage resistance to Pseudomonas protegens
Abstract. Phage therapy offers a promising strategy against bacterial pathogens in medicine and agriculture, but the rise of phage-resistant bacteria prese
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Reposted by Daniel Garrido-Sanz
Nature Microbiology @natmicrobiol.nature.com · 27/06/2025
The seed microbiome seeds the rhizosphere! 🌱🌿🦠 Seed microbes are the key to heritable plant microbiomes. #PlantMicro #MicrobiomeSky #MicroSky www.nature.com/articles/s41...
nature.com
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation - Nature Microbiology
A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Daniel Garrido-Sanz @dgarrs.bsky.social · 19/04/2025
Wow! Our paper in @natmicrobiol.nature.com has just surpassed 10,000 views in less than a month!! a rare feat for a #plant #microbiome study! We argue that seed-borne bacteria are the architects of the wheat rhizobiome. Thanks to everyone who’s been engaging with our work :) doi.org/10.1038/s415...
doi.org
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation - Nature Microbiology
A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Reposted by Daniel Garrido-Sanz
Jean-Michel Ané @jeanmichelane.bsky.social · 17/04/2025
Outstanding paper from @dgarrs.bsky.social and Christoph Keel  on vertical microbiome transmission in wheat! -> Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation
nature.com
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation
Microbial communities play a crucial role in supporting plant health and productivity. Reproducible, natural plant-associated microbiomes can help disentangle microbial dynamics across time and space. Here, using a sequential propagation strategy, we generated a complex and reproducible wheat rhizosphere microbiome (RhizCom) to study successional dynamics and interactions between the soil and heritable seed-borne rhizosphere microbiomes (SbRB) in a microcosm. Using 16S rRNA sequencing and genome-resolved shotgun metagenomics, we find that SbRB surpassed native soil microbes as the dominant rhizosphere-associated microbiome source. SbRB genomes were enriched in host-associated traits including degradation of key saccharide (niche partitioning) and cross-feeding interactions that supported partner strains (niche facilitation). In vitro co-culture experiments confirmed that helper SbRB strains facilitated the growth of partner bacteria on disaccharides as sole carbon source. These results reveal the importance of seed microbiota dynamics in microbial succession and community assembly, which could inform strategies for crop microbiome manipulation.
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Reposted by Daniel Garrido-Sanz
Yolanda Schaerli @yschaerli.bsky.social · 15/04/2025
Very happy to share our newly published work! We engineered phages for intercellular communication in multicellular consortia and integrated it with CRISPR-based gene regulation for biocomputing. Congratulations to @astrikusuma.bsky.social @dmf-unil.bsky.social @fbm-unil.bsky.social rdcu.be/ehORO
rdcu.be
Engineering intercellular communication using M13 phagemid and CRISPR-based gene regulation for multicellular computing in Escherichia coli
Nature Communications - Engineering multicellular consortia, where information processing is distributed across specialized cell types, offers a promising strategy for implementing sophisticated...
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Reposted by Daniel Garrido-Sanz
Nature Plants @natplants.nature.com · 02/04/2025
New Comment: "Future crop breeding needs to consider future soils" rdcu.be/ef8bq Modern crop breeding and seed certification agencies ignore the known spatial heterogeneity of soils and develop cultivars to thrive in a ‘one-size-fits-all’ soil environment.
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Daniel Garrido-Sanz @dgarrs.bsky.social · 01/04/2025
Ever wondered how the #wheat #rhizosphere #microbiome assembles? 🌱🧬 We just shared the story behind our recent @naturemicrobiol.bsky.social paper: how we designed the experiment, what we learned, and why it matters! #BehindThePaper Check it out here 👇 communities.springernature.com/posts/seed-b...
communities.springernature.com
Seed bacteria are the architects of the complex wheat rhizosphere microbiome
Plants host diverse microbes that shape their health and growth. New research shows that seed-borne bacteria dominate the wheat rhizosphere, driving microbiome assembly via niche partitioning and faci...
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Reposted by Daniel Garrido-Sanz
Nature Microbiology @natmicrobiol.nature.com · 27/03/2025
OUT NOW: Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation @dgarrs.bsky.social #microsky 🧪 www.nature.com/articles/s41...
nature.com
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation - Nature Microbiology
A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Reposted by Daniel Garrido-Sanz
Nature Reviews Microbiology @natrevmicro.nature.com · 26/03/2025
#midweekmicro🔬 Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation @naturemicrobiol.bsky.social #microsky www.nature.com/articles/s41...
nature.com
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation - Nature Microbiology
A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Daniel Garrido-Sanz @dgarrs.bsky.social · 26/03/2025
🚀 Exciting news! Our latest research is out in Nature Microbiology! 🌾 "Seed-borne bacteria drive rhizosphere microbiome assembly via niche partitioning and facilitation." Seed-inherited bacteria are the architects of #wheat #microbiome assembly! 🌱🦠 @naturemicrobiol.bsky.social rdcu.be/efagM
rdcu.be
Seed-borne bacteria drive wheat rhizosphere microbiome assembly via niche partitioning and facilitation
Nature Microbiology - A sequential propagation strategy shows how the microbes initially on seeds are key to building complex, reproducible and heritable plant microbiomes.
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Reposted by Daniel Garrido-Sanz
Nature @nature.com · 02/03/2025
Fungi made Earth’s land liveable by building networks that released nutrients locked in primordial rock and supplied those nutrients to plant roots go.nature.com/3QLda3z
go.nature.com
Revealing how fungi build planet-altering ‘road’ networks
Nature - Imaging study reveals how fungal networks are constructed.
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Daniel Garrido-Sanz @dgarrs.bsky.social · 01/03/2025
I am excited to share that in two months I will start a new chapter as a Lecturer and Principal Investigator at the Universidad Autónoma de Madrid 🎓🌍. I am grateful for this opportunity, and thrilled to establish my own research group focusing on the ecology of plant-associated microbiomes 🌱🦠
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Reposted by Daniel Garrido-Sanz
Ahmed Abdelfattah @aabdelfattah.bsky.social · 03/02/2025
A preprint worth reading: The ecological #assembly dynamics of the seed-borne microbiome in wheat are influenced by heritable seed-borne #rhizosphere bacteria (SbRB), which dominate the microbiome after coalescing with the #soil community. buff.ly/3CuSA4f
biorxiv.org
Priority effects of heritable seed-borne bacteria drive early assembly of the wheat rhizosphere microbiome
Microbial communities play a critical role in supporting plant health and productivity, making the ability to obtain reproducible plant-associated microbiomes an essential asset for experimentally…
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