日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The EPS-I exopolysaccharide transforms Ralstonia wilt pathogen biofilms into viscoelastic fluids for rapid dissemination in planta

EPS-I胞外多糖将枯萎病菌生物膜转化为粘弹性液体,从而在植物体内快速传播。

Cope-Arguello, Matthew L; Li, Jiayu; Konkel, Zachary; Aoun, Nathalie; Cowell, Tabitha; Wagner, Nicholas; Han Chan, A Li; Chu, Lan Thanh; Wang, Samantha; Carter, Mariama D; Allen, Caitilyn; Caverly, Lindsay J; Bui, Loan; DeAngelis, Kristen M; Wargo, Matthew J; Tran, Tuan M; Jacobs, Jonathan M; Manikantan, Harishankar; Lowe-Power, Tiffany M

Lifestyle-associated variation in type IV secretion systems between phytopathogenic and environmental Ralstonia

植物病原菌和环境菌群中IV型分泌系统的生活方式相关变异

Cowell, Tabitha C; Cope-Arguello, Matthew L; Shin, Gi Yoon; Bogdanove, Adam J; Carpenter, Sara C D; Nahar, Kamrun; Saha, Apurba; Lowe-Power, Tiffany M

A protocol for chemical competence in phytopathogenic Ralstonia

植物病原菌拉尔斯顿氏菌化学感受态测定方案

Cowell, Tabitha C; Guillome, Noah R; Cope-Arguello, Matthew L; Prasad, Neha N; Lowe-Power, Tiffany M

Lectins and polysaccharide EPS I have flow-responsive roles in the attachment and biofilm mechanics of plant pathogenic Ralstonia

凝集素和多糖 EPS I 在植物致病性青枯病菌的附着和生物膜力学中起流动响应作用

Mariama D Carter, Tuan M Tran, Matthew L Cope-Arguello, Sofia Weinstein, Hanlei Li, Connor G Hendrich, Jessica L Prom, Jiayu Li, Lan Thanh Chu, Loan Bui, Harishankar Manikantan, Tiffany M Lowe-Power, Caitilyn Allen