Facultad de Ingeniería y Ciencias, Universidad Adolfo Ibáñez, Millennium Nucleus Center for Plant Systems and Synthetic Biology, and Center of Applied Ecology and Sustainability (CAPES), Santiago, Chile.
Mol Plant Microbe Interact. 2017 Jul;30(7):557-565. doi: 10.1094/MPMI-01-17-0008-R. Epub 2017 May 26.
Quorum-sensing systems play important roles in host colonization and host establishment of Burkholderiales species. Beneficial Paraburkholderia species share a conserved quorum-sensing (QS) system, designated BraI/R, that controls different phenotypes. In this context, the plant growth-promoting bacterium Paraburkholderia phytofirmans PsJN possesses two different homoserine lactone QS systems BpI.1/R.1 and BpI.2/R.2 (BraI/R-like QS system). The BpI.1/R.1 QS system was previously reported to be important to colonize and produce beneficial effects in Arabidopsis thaliana plants. Here, we analyzed the temporal variations of the QS gene transcript levels in the wild-type strain colonizing plant roots. The gene expression patterns showed relevant differences in both QS systems compared with the wild-type strain in the unplanted control treatment. The gene expression data were used to reconstruct a regulatory network model of QS systems in P. phytofirmans PsJN, using a Boolean network model. Also, we examined the phenotypic traits and transcript levels of genes involved in QS systems, using P. phytofirmans mutants in homoserine lactone synthases genes. We observed that the BpI.1/R.1 QS system regulates biofilm formation production in strain PsJN and this phenotype was associated with the lower expression of a specific extracytoplasmic function sigma factor ecf26.1 gene (implicated in biofilm formation) in the bpI.1 mutant strain.
群体感应系统在伯克霍尔德氏菌物种的宿主定植和定植中发挥重要作用。有益的拟杆菌属物种共享保守的群体感应(QS)系统,称为 BraI/R,该系统控制不同的表型。在这种情况下,植物促生菌 Paraburkholderia phytofirmans PsJN 拥有两种不同的同型半胱氨酸内酯 QS 系统 BpI.1/R.1 和 BpI.2/R.2(BraI/R 样 QS 系统)。先前报道称,BpI.1/R.1 QS 系统对拟南芥植物的定植和产生有益效果很重要。在这里,我们分析了野生型菌株定植植物根系时 QS 基因转录水平的时间变化。与未种植对照处理中的野生型菌株相比,两种 QS 系统的基因表达模式均显示出相关差异。使用布尔网络模型,根据基因表达数据构建了 P. phytofirmans PsJN QS 系统的调控网络模型。此外,我们还使用同源半胱氨酸内酯合酶基因的突变体检查了与 QS 系统相关的表型特征和基因转录水平。我们观察到 BpI.1/R.1 QS 系统调节 PsJN 菌株生物膜形成的产生,这种表型与 bpI.1 突变菌株中特定细胞外功能σ因子 ecf26.1 基因(涉及生物膜形成)的低表达相关。