Ryohei Thomas Nakano (Hokudai)

@luckystrike1984.bsky.social

A professor at Hokkaido University (Hokudai), working on plant-microbiota interactions. Always searching for students and postdocs to join my group.

So excited to share our new study about nicotine-mediated tobacco root-microbiota interactions, spearheaded by Tomohisa! Nicotine is a neurotoxin for insects, but for Arthrobacter, it works as a nutritional source that provides a competitive advantage. doi.org/10.1186/s401...

Horizontal acquisition of nicotine catabolism gene cluster enhances Arthrobacter fitness within tobacco root microbiota - Microbiome

Background Plant roots are hotspots for interactions with soil microbes, where a characteristic bacterial community structure is formed. Plant specialized metabolites often play pivotal roles in this assembly process. However, the molecular basis underlying root microbiota responses to these bioactive compounds, and how such metabolic interactions shape the assembly of host-specific root microbiota, remain largely unknown. Nicotine is a toxic alkaloid predominantly produced by the genus Nicotiana, and the genus Arthrobacter is known as one of the nicotine-degrading bacteria in the tobacco root microbiota. In this study, we used the tobacco–Arthrobacter interaction system as a model and integrated comparative genomics and experimental genetic manipulation assays to uncover the role of bacterial catabolism capacity for host specialized metabolites in shaping host-specific root microbiota. Results Nicotine catabolism genes are uniquely found in the Arthrobacter strains derived from nicotine-containing environments, and this restricted gene distribution is driven by a plasmid-mediated horizontal gene transfer. To assess the ecological consequences of this genomic adaptation in Arthrobacter fitness in tobacco roots, we characterized the nicotine utilization ability of Arthrobacter and conducted adaptation assays under in planta conditions using genetically manipulated Arthrobacter strains and tobacco mutants impaired in nicotine catabolism and biosynthesis, respectively. Nicotine improves Arthrobacter colonization of tobacco roots through a catabolism-dependent mechanism. Bacterial community analysis using a synthetic community approach further demonstrated that this metabolic adaptation enhances Arthrobacter fitness within tobacco root microbiota. Conclusions Our findings illustrated that bacterial catabolic capacity toward host-derived plant specialized metabolites is key for successful root colonization. This metabolic adaptation is driven by plasmid-mediated horizontal gene transfer and ultimately shapes the structure of the root microbiota community. Video Abstract

doi.org

By combining molecular genetics with cell-ablation experiments, we found that vascular cambium stem cells and xylem-identity cells form an interchangeable unit, a stem cell niche. Meticulous work by @xixizhang9001.bsky.social, Ondrej Smetana, Jing Zhang & Xiaoyu Wang 1/x www.pnas.org/doi/10.1073/...

Auxin transport positions stem cells in the vascular cambium during normal development and regeneration | PNAS

The vascular cambium contains bifacial stem cells producing secondary phloem in one and secondary xylem to the opposite direction. In Arabidopsis r...

pnas.org

Hey my fellow Germans! I wasn't aware, but there is an AvH-JSPP postdoc fellowship, dedicated to German citizens aiming to do their postdoc in Japan. It covers salary + travel to Japan + startup for your life in Japan. Let me know if you are interested! www.humboldt-foundation.de/en/apply/spo...

JSPS Research Fellowship

The Japan Society for the Promotion of Science (JSPS) Research Fellowship supports you as a highly qualified postdoc from Germany in conducting your research in Japan – regardless of discipline.

humboldt-foundation.de

I'm thrilled to have the chance to give a talk at Yang and Paulo's concurrent session at the IS-MPMI Congress@Köln. It was a last-minute change, and I'm not on the online program yet, but I will be there to introduce our current work on host immune manipulation by commensals!

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Hey my fellow Germans! I wasn't aware, but there is an AvH-JSPP postdoc fellowship, dedicated to German citizens aiming to do their postdoc in Japan. It covers salary + travel to Japan + startup for your life in Japan. Let me know if you are interested! www.humboldt-foundation.de/en/apply/spo...

JSPS Research Fellowship

The Japan Society for the Promotion of Science (JSPS) Research Fellowship supports you as a highly qualified postdoc from Germany in conducting your research in Japan – regardless of discipline.

humboldt-foundation.de

Individual bacteria specialize, some suppress immunity while others escape early to spread infection before the plant tissue collapses. It's a division of labor! The study highlights how phenotypic heterogeneity allows pathogens to adapt to host environments dynamically.

I am happy to introduce this bioRxiv. Stomatal opening is crucial for gas exchange, but it unavoidably offers invasion by pathogens. We found that by coronatine (COR), Pto DC3000 exploits CYP707A1 activation in Arabidopsis thaliana, encoding an enzyme that degrades ABA, for stomatal invasion.

bioRxiv Plant Bio@biorxiv-plants.bsky.social · last yr.

Evolutionary Trade-off Between Stomatal Defense and Gas Exchange in Brassicaceae https://www.biorxiv.org/content/10.1101/2025.03.31.646295v1