Erh-Min Lai-IPMB

@erhminlai.bsky.social

Research Fellow and Professor at the Institute of Plant and Microbial Biology, Academia Sinica, Taipei, #Taiwan. #Agrobacterium, #MPMI., #T4SS, #T6SS. https://ipmb.sinica.edu.tw/en/people/ipmb_researchers/lai-erh-min

(🧵 8/8) By integrating floral-stage selection, immune evasion, and Agrobacterium engineering, the team established a practical platform to boost plant genetic engineering efficiency in Arabidopsis.

🌱 The authors behind the paper 🌱 (🧵 4/8) A research team at the Institute of Plant and Microbial Biology, Academia Sinica, Taiwan, led by Project Director Erh-Min Lai, with co-PIs Chih-Horng Kuo and Chih-Hang Wu...

(🧵 3/8) These improvements significantly enhanced transient gene expression and CRISPR/Cas-mediated genome editing, enabling efficient recovery of edited plants without selection. This work offers a practical, high-efficiency platform to advance plant genome engineering.

Fig. 3 Agrobacterium infection and EF-Tu receptor (EFR)-mediated immunity exert negative impacts on ovule development.

(🧵 2/8) In this Methods paper Liu et al. explain how they developed an optimized Agrobacterium-mediated floral transformation in Arabidopsis thaliana by identifying the most receptive floral stage and engineering agrobacterial strains to evade plant immunity.

Fig. 2 RUBY marker revealed transformation events in floral organs and female tissues.

(🧵 7/8) This study was primarily conducted by co-first authors Mao-Sen Liu (Project Research Scientist) and Teng-Kuei Huang (Postdoctoral Fellow), with support from Technicians Yi-Chieh Wang and Si-Chong Wang.

Happy to write this News & Views highlighting a groundbreaking study on #Agrobacterium. By combining mathematical modelling with quantitative live-cell imaging, the study uncovered a density-dependent synergistic and antagonistic effect on #AMT

Nature Plants@natplants.nature.com · last yr.

New OA Article: "Quantitative dissection of Agrobacterium T-DNA expression in single plant cells reveals density-dependent synergy and antagonism" rdcu.be/elJ5z News & Views: "Cooperation and antagonism in Agrobacterium-mediated transformation" rdcu.be/elJ5F

Nice preprint from Erh-Min Lai's lab. "By integrating floral stage selection, immune evasion, and Agrobacterium engineering, this study provides a practical and versatile platform to advance plant genome engineering." vhttps://www.biorxiv.org/content/10.1101/2025.05.07.652770v1

Floral Stage Optimization and Immune Evasion Enhance Agrobacterium-Mediated Genome Editing in Arabidopsis

Agrobacterium-mediated transformation via floral inoculation (AMT-FI) enables genetic engineering without tissue culture. It is widely used in the model plant Arabidopsis thaliana, yet its efficiency ...

biorxiv.org