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Miguel de Celis

@migueldc1.bsky.social
37 followers 42 following 1 posts

Postdoctoral Researcher at ICA-CSIC. Microbial Ecology, Bioinformatics. migueldc1.github.io

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Reposted by Miguel de Celis
Pablo García-Palacios @pablogarciapal.bsky.social · 28/03/2026
New lab paper led by @migueldc1.bsky.social showing consistent bacterial & fungal assembly but distinct structure in the rhizosphere of crop wild progenitors 📢📢 Important implications for microbial rewilding in sustainable agriculture onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Consistent Microbial Assembly in the Rhizosphere of Crop Wild Progenitors
Aim Microbiome rewilding seeks to harness plant-microbe interactions for sustainable agriculture, assuming that ancestral microbial partners have been lost during domestication and geographical spre.....
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Reposted by Miguel de Celis
Pablo García-Palacios @pablogarciapal.bsky.social · 29/03/2026
New lab paper on soil carbon in urban greeenspaces. The first of many from Beatriz Jiménez and the URBANCHANGE network doi.org/10.1007/s111...
doi.org
Consistent topsoil carbon density and driving factors in urban greenspaces and natural ecosystems - Plant and Soil
Background Urban greenspaces have the potential to mitigate urban carbon footprints by storing soil organic carbon (SOC). Different management and plant communities associated with different types of ...
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Reposted by Miguel de Celis
Instituto de Investigación en Cambio Global @iicg-urjc.bsky.social · 14/01/2026
⚠️ Se busca candidata/o para solicitar un contrato predoctoral de Formación de Profesorado Universitario (FPU) en su convocatoria en marcha (periodo solicitud 16-ene-2026 a 14-feb-2026) www.ciencia.gob.es/Convocatorias/20…    👉 Toda la info de esta gran oportunidad en la imagen:
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Miguel de Celis @migueldc1.bsky.social · 15/10/2025
Excited to share that I’ve been awarded a research grant from @eco-aeet.bsky.social ! 🌱 Looking forward to developing this project to evaluate the bacterial community assembly in the rhizosphere. Thanks to AEET for the support! 🌿
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Reposted by Miguel de Celis
Pablo García-Palacios @pablogarciapal.bsky.social · 15/10/2025
Very happy to share that @migueldc1.bsky.social, a lab postdoc and JdC researcher, has been awarded an @eco-aeet.bsky.social grant to study microbial community assembly in the rhizosphere. Great news!!!🎉🎉🎉 www.aeet.org/es/convocato...
aeet.org
Asociación Española de Ecología Terrestre
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Reposted by Miguel de Celis
Pablo García-Palacios @pablogarciapal.bsky.social · 13/10/2025
Our new paper from the MICROWILD consortium is published in ISME Comms, led by MJ Fernández-Alonso and @migueldc1.bsky.social academic.oup.com/ismecommun/a...
academic.oup.com
Native edaphoclimatic regions shape soil communities of crop wild progenitors
Abstract. Unveiling the soil biological communities ecologically associated with crop wild progenitors (CWPs) in their habitats of origin is essential for
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Reposted by Miguel de Celis
Javier Peña | Hope! @hopeenpie.bsky.social · 19/03/2025
La historia de una idea revolucionaria que transformó su tierra yerma en una explosión de vida y abundancia sin precedentes. Y una lección a aplicar en todo el mundo. Podemos traer la vida de vuelta si elegimos restaurar la naturaleza. Una maravilla que debería ver todo el mundo.👇
youtu.be
Cómo el rewilding transformó su tierra. De erial a explosión de vida.
YouTube video by Hope
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Reposted by Miguel de Celis
Maria Rebolleda-Gomez @mrebolleda.bsky.social · 18/01/2025
In the literature of domestication and microbiomes there seems to be the expectation that: domestication should lead to the loss of microbiome diversity and host-control. Alejandra Hernandez-Teran and I were both skeptical of both, so we decided to see what we know so far (1/6) shorturl.at/FHY9H
doi.org
Plant domestication does not reduce diversity in root microbiomes
Domestication has profoundly shaped human civilization and the genetic makeup of numerous plant and animal species. While the effects of plant domestication at the genetic and phenotypic levels are well-documented, its impact on plant microbiome remains less understood. Root microbiomes play crucial roles in nutrient acquisition, pathogen defense, and biotic stress tolerance, yet the influence of domestication on their diversity and assembly is still debated. Two primary hypotheses have been proposed: 1) the reduction in microbial diversity resulting from the domestication process, and 2) the diminished ability of host plants to control their microbiomes. To evaluate these hypotheses, we conducted a meta-analysis of multiple crops, comparing the root microbiomes of domesticated plants and their wild relatives. Our results indicate that the effects of domestication are species-specific and context-dependent, with most domesticated plants exhibiting increased microbial diversity and more structured communities, while others show no significant change. Overall, this study provides evidence that plant domestication does not lead to a uniform reduction in microbial diversity or a consistently diminished ability of plants to influence their microbiomes. Based on these findings, we discuss new perspectives and the need for future studies incorporating native soils and host genetic variation in such experiments, analyzing not only diversity but also microbiome function, and considering how root morphology might affect microbiome recruitment. Finally, we highlight the need for research on the potential adaptive or maladaptive consequences that introgression between wild and domesticated plants could have from a microbiome perspective. ### Competing Interest Statement The authors have declared no competing interest.
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