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首页> 外文期刊>Applied and Environmental Microbiology >Visualization of N-Acylhomoserine Lactone-Mediated Cell-Cell Communication between Bacteria Colonizing the Tomato Rhizosphere
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Visualization of N-Acylhomoserine Lactone-Mediated Cell-Cell Communication between Bacteria Colonizing the Tomato Rhizosphere

机译:N-酰基高丝氨酸内酯介导的细菌定植在番茄根际中的细胞间通讯的可视化

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Given that a large proportion of the bacteria colonizing the roots of plants is capable of producingN-acyl-l-homoserine lactone (AHL) molecules, it appears likely that these bacterial pheromones may serve as signals for communication between cells of different species. In this study, we have developed and characterized novel Gfp-based monitor strains that allow in situ visualization of AHL-mediated communication between individual cells in the plant rhizosphere. For this purpose, three Gfp-based AHL sensor plasmids that respond to different spectra of AHL molecules were transferred into AHL-negative derivatives ofPseudomonas putida IsoF andSerratia liquefaciens MG1, two strains that are capable of colonizing tomato roots. These AHL monitor strains were used to visualize communication between defined bacterial populations in the rhizosphere of axenically grown tomato plants. Furthermore, we integrated into the chromosome of AHL-negativeP. putida strain F117 an AHL sensor cassette that responds to the presence of long-chain AHLs with the expression of Gfp. This monitor strain was used to demonstrate that the indigenous bacterial community colonizing the roots of tomato plants growing in nonsterile soil produces AHL molecules. The results strongly support the view that AHL signal molecules serve as a universal language for communication between the different bacterial populations of the rhizosphere consortium.
机译:考虑到定植在植物根部的大部分细菌能够产生N-酰基-1-高丝氨酸内酯(AHL)分子,这些细菌信息素似乎可以充当不同物种细胞之间交流的信号。在这项研究中,我们已经开发和表征了基于Gfp的新型监测菌株,该菌株可在植物根际中单个细胞之间原位观察AHL介导的通讯。为此,将对AHL分子的不同光谱响应的三个基于Gfp的AHL传感器质粒转移到恶臭假单胞菌IsoF和液化沙雷氏菌MG1的AHL阴性衍生物中,这两个菌株能够在番茄根部定植。这些AHL监测菌株用于可视化树胶生的番茄植株的根际中确定的细菌种群之间的通讯。此外,我们整合到AHL-negativeP的染色体中。 putida菌株F117是一种AHL传感器盒,它对长链AHL的存在作出反应,并带有Gfp的表达。该监测菌株用于证明定居在非无菌土壤中生长的番茄植株根部的本地细菌群落产生AHL分子。结果强烈支持以下观点:AHL信号分子充当根际联盟不同细菌种群之间交流的通用语言。

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