Agrobacterium pathogenesis, which involves transferring T-DNA into plant cells, is the cornerstone of plant genetic engineering. As the applications that rely on Agrobacterium increase in sophistication, it becomes critical to achieve a quantitative and predictive understanding of T-DNA expression at the level of single plant cells. Here we examine if a classic Poisson model of interactions between pathogens and host cells holds true for Agrobacterium infecting Nicotiana benthamiana. Systematically challenging this model revealed antagonistic and synergistic density-dependent interactions between bacteria that do not require quorum sensing. Using various approaches, we studied the molecular basis of these interactions. To overcome the engineering constraints imposed by antagonism, we created a dual binary vector system termed 'BiBi', which can improve the efficiency of a reconstituted complex metabolic pathway in a predictive fashion. Our findings illustrate how combining theoretical models with quantitative experiments can reveal new principles of bacterial pathogenesis, impacting both fundamental and applied plant biology.
Quantitative dissection of Agrobacterium T-DNA expression in single plant cells reveals density-dependent synergy and antagonism.
对单个植物细胞中农杆菌 T-DNA 表达的定量分析揭示了密度依赖性的协同和拮抗作用
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作者:Alamos Simon, Szarzanowicz Matthew J, Thompson Mitchell G, Stevens Danielle M, Kirkpatrick Liam D, Dee Amanda, Pannu Hamreet, Cui Ruoming, Liu Shuying, Nimavat Monikaben, Krasileva Ksenia, Baidoo Edward E K, Shih Patrick M
| 期刊: | Nature Plants | 影响因子: | 13.600 |
| 时间: | 2025 | 起止号: | 2025 May;11(5):1060-1073 |
| doi: | 10.1038/s41477-025-01996-w | 研究方向: | 细胞生物学 |
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