#Lotusjaponicus
December 7, 2024 at 11:28 AM
📜 Single-cell analysis identifies genes facilitating rhizobium infection in Lotus japonicus

🧑‍🔬 Manuel Frank, Lavinia Ioana Fechete, Dugald Reid, Stig Uggerhøj Andersen, et al.

📔 Nature Communications

🔗 www.nature.com/articles/s41...

#️⃣ (Feeds) #PlantScience #Symbiosis #PlantMPMI #LotusJaponicus
Single-cell analysis identifies genes facilitating rhizobium infection in Lotus japonicus - Nature C...
The authors use single-cell analysis to identify genes specifically expressed in plant root cells that respond to infection by nitrogen-fixing rhizobia. They show that one of these genes, SYMRKL1, is ...
www.nature.com
November 9, 2023 at 9:54 AM
Green enthusiastic alert!!! 🌱🌱🌱
After 3 months, from little hypocotyls comes tini shoots. I am super excited that my #Lotusjaponicus #transformation is progressing well. They will be valuable resources for my research 🙏
Stay tuned and stay green! 💚
June 26, 2025 at 9:58 AM
Recently, I was invited by the IBVF to give a seminar to present our work on the role of sulfur metabolism in legumes. Stay tuned... our findings are about to surprise a few people in the field. 🫛👀 #PlantScience #SulfurMetabolism #Legumes #LotusJaponicus #Symbiosis #PlantMolecularBiology
July 1, 2026 at 7:38 AM
“PUCHI delimits the spatial domain of nodule organogenesis associated with auxin patterning and NIN-dependent transcription in Lotus japonicus.” Soyano et al. #Lotusjaponicus #RootNodule #NoduleFormation #AP2ERF link.springer.com/article/10.1...
PUCHI delimits the spatial domain of nodule organogenesis associated with auxin patterning and NIN-dependent transcription in Lotus japonicus - Journal of Plant Research
Root nodule organogenesis requires the activation of symbiotic developmental programs within a spatially restricted region of the root. Although many regulators of nodule initiation have been identifi...
link.springer.com
September 1, 2026 at 5:59 AM