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

RprR is a plant-responsive regulator of exopolysaccharide production, biofilm formation, and virulence in Ralstonia pseudosolanacearum

RprR是假青枯菌中一种对植物响应的胞外多糖产生、生物膜形成和毒力的调节因子。

O'Banion, Bridget S; Carter, Mariama D; Sanchez-Gallego, Jose A; Li, Hanlei; Wagner, Nicholas; Chu, Lan Thanh; Bui, Loan; Tran, Tuan Minh; Allen, Caitilyn

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

Ralstonia solanacearum pandemic lineage strain UW551 overcomes inhibitory xylem chemistry to break tomato bacterial wilt resistance

青枯菌(Ralstonia solanacearum)流行谱系菌株UW551克服了木质部化学物质的抑制作用,从而打破了番茄细菌性枯萎病的抗性。

Hamilton, Corri D; Zaricor, Beatriz; Dye, Carolyn Jean; Dresserl, Emma; Michaels, Renee; Allen, Caitilyn

A single phosphorylatable amino acid residue is essential for the recognition of multiple potyviral HCPro effectors by potato Ny(tbr).

单个可磷酸化的氨基酸残基对于马铃薯 Ny(tbr) 识别多个马铃薯病毒 HCPro 效应子至关重要

Alex Bryce G, Zhang Zong-Ying, Lasky Danny, Garcia-Ruiz Hernan, Dewberry Ronnie, Allen Caitilyn, Halterman Dennis, Rakotondrafara Aurélie M

Plant-Pathogenic Ralstonia Phylotypes Evolved Divergent Respiratory Strategies and Behaviors To Thrive in Xylem

植物病原菌Ralstonia系统发育类型进化出不同的呼吸策略和行为以在木质部中生存。

Truchon, Alicia N; Dalsing, Beth L; Khokhani, Devanshi; MacIntyre, April; McDonald, Bradon R; Ailloud, Florent; Klassen, Jonathan; Gonzalez-Orta, Enid T; Currie, Cameron; Prior, Philippe; Lowe-Power, Tiffany M; Allen, Caitilyn

Cell Density-Regulated Adhesins Contribute to Early Disease Development and Adhesion in Ralstonia solanacearum

细胞密度调控的粘附素促进青枯菌早期疾病发展和粘附

Carter, Mariama D; Khokhani, Devanshi; Allen, Caitilyn

Meta-analysis of the Ralstonia solanacearum species complex (RSSC) based on comparative evolutionary genomics and reverse ecology

基于比较进化基因组学和反向生态学的青枯菌复合种(RSSC)荟萃分析

Sharma, Parul; Johnson, Marcela A; Mazloom, Reza; Allen, Caitilyn; Heath, Lenwood S; Lowe-Power, Tiffany M; Vinatzer, Boris A

NorA, HmpX, and NorB Cooperate to Reduce NO Toxicity during Denitrification and Plant Pathogenesis in Ralstonia solanacearum

NorA、HmpX 和 NorB 协同作用降低青枯病菌反硝化和植物致病过程中的 NO 毒性

Alicia N Truchon, Connor G Hendrich, Adam F Bigott, Beth L Dalsing, Caitilyn Allen

Validating Methods To Eradicate Plant-Pathogenic Ralstonia Strains Reveals that Growth In Planta Increases Bacterial Stress Tolerance

验证根除植物致病性青枯病菌菌株的方法表明,植物体内生长可提高细菌应激耐受性

Madeline M Hayes, Ronnie J Dewberry, Lavanya Babujee, Rebecca Moritz, Caitilyn Allen