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共生关系对表面附着微生物群落空间结构的作用。

Role of commensal relationships on the spatial structure of a surface-attached microbial consortium.

作者信息

Nielsen A T, Tolker-Nielsen T, Barken K B, Molin S

机构信息

Department of Microbiology, The Technical University of Denmark, Lyngby.

出版信息

Environ Microbiol. 2000 Feb;2(1):59-68. doi: 10.1046/j.1462-2920.2000.00084.x.

Abstract

A flow cell-grown model consortium consisting of two organisms, Burkholderia sp. LB400 and Pseudomonas sp. B13(FR1), was studied. These bacteria have the potential to interact metabolically because Pseudomonas sp. B13(FR1) can metabolize chlorobenzoate produced by Burkholderia sp. LB400 when grown on chlorobiphenyl. The expected metabolic interactions in the consortium were demonstrated by high performance liquid chromatography (HPLC) analysis. The spatial structure of the consortium was studied by fluorescent in situ rRNA hybridization and scanning confocal laser microscopy. When the consortium was fed with medium containing a low concentration of chlorobiphenyl, microcolonies consisting of associated Burkholderia sp. LB400 and Pseudomonas sp. B13(FR1) bacteria were formed, and separate Pseudomonas sp. B13(FR1) microcolonies were evidently not formed. When the consortium was fed citrate, which can be metabolized by both species, the two species formed separate microcolonies. The structure development In the consortium was studied online using a gfp-tagged Pseudomonas sp. B13(FR1) derivative. After a shift In carbon source from citrate to a low concentration of chlorobiphenyl, movement of the Pseudomonas sp. B13(FR1) bacteria led to a change in the spatial structure of the consortium from the unassociated form towards the associated form within a few days. Experiments Involving a gfp-based Pseudomonas sp. B13(FR1) growth activity reporter strain Indicated that chlorobenzoate supporting growth of Pseudomonas sp. B13(FR1) is located close to the Burkholderia sp. LB400 microcolonies in chlorobiphenyl-grown consortia.

摘要

对一个由两种微生物组成的流动池培养模型聚生体进行了研究,这两种微生物分别是伯克霍尔德氏菌属LB400和假单胞菌属B13(FR1)。这些细菌具有代谢相互作用的潜力,因为当在氯联苯上生长时,假单胞菌属B13(FR1)能够代谢伯克霍尔德氏菌属LB400产生的氯苯甲酸酯。通过高效液相色谱(HPLC)分析证实了聚生体中预期的代谢相互作用。通过荧光原位rRNA杂交和扫描共聚焦激光显微镜研究了聚生体的空间结构。当向聚生体投喂含有低浓度氯联苯的培养基时,形成了由相关的伯克霍尔德氏菌属LB400和假单胞菌属B13(FR1)细菌组成的微菌落,明显没有形成单独的假单胞菌属B13(FR1)微菌落。当向聚生体投喂两种菌都能代谢的柠檬酸盐时,这两种菌形成了单独的微菌落。使用绿色荧光蛋白标记的假单胞菌属B13(FR1)衍生物对聚生体中的结构发育进行了在线研究。在碳源从柠檬酸盐转变为低浓度氯联苯后,假单胞菌属B13(FR1)细菌的移动导致聚生体的空间结构在几天内从非关联形式转变为关联形式。涉及基于绿色荧光蛋白的假单胞菌属B13(FR1)生长活性报告菌株的实验表明,支持假单胞菌属B13(FR1)生长的氯苯甲酸酯位于氯联苯生长的聚生体中靠近伯克霍尔德氏菌属LB400微菌落的位置。

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