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Doctoral Researcher in Microbial Ecology at TU & Helmholtz Munich | One Health, AMR & Land Use impact | Environmental Microbiomes and Bioinformatics https://www.researchgate.net/profile/Ruben-Martinez-Cuesta-2
Rubén Martínez-Cuesta



Really glad to share that the second paper of my thesis is finally out! Click below if you want to get some insights on different land use types' effects on mature and developing biofilms from adjacent streams 🤓 link.springer.com/article/10.1...
4mo
Rubén Martínez-Cuesta
Really glad to finally be able to share this collaboration with the ‪@kit.edu‬ KIT-Campus Alpine addressing N2O emissions in riverine ecosystems www.sciencedirect.com/science/arti...
10mo
Rubén Martínez-Cuesta
Metagenomics is great, but applying it to soil is... complicated 🦠⛏️ Our new Perspective Article is out, diving into the the opportunities and limitations of metagenomics to study soil bacteria and archaea link.springer.com/article/10.1...
2mo
Soil microbial ecology has been transformed by recent progress in sequencing and metagenomics, reshaping our understanding of soil microbial functions. This article examines how metagenomics can be us...
link.springer.com
Digging deeper into soil metagenomics: opportunities and limitations for studying the genomic potential of soil bacteria and archaea - Biology and Fertility of Soils
Rubén Martínez-Cuesta
From the poster session at the @vaam-microbes.bsky.social conference 2025 presenting my poster on the impacts of land use on sediment and mayfly larval prokaryotic communities in temperate freshwater ecosystems
Mar 27, 2025
Rubén Martínez-Cuesta
www.sciencedirect.com
Riverine CO2 and N2O concentrations have risen since pre-industrial times, yet their biogeochemical interactions remain unclear. This study found a po…
Elevated in-stream CO2 concentration stimulates net-N2O production from global fluvial ecosystems
Agricultural land use shapes short and long‑term bacterial diversity, community structure, and assembly in biofilms of adjacent streams - Environmental Microbiome
Background Intensive agriculture can disrupt adjacent stream ecosystems by increasing nutrient runoff, suspended and dissolved organic matter, and pesticide loads. Freshwater biofilms are surface-atta...
link.springer.com