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基于载体建立微生物群落的土壤修复:1,2,4-三氯苯降解过程中微生物通讯的有力线索。

Soil remediation with a microbial community established on a carrier: strong hints for microbial communication during 1,2,4-Trichlorobenzene degradation.

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

Chemosphere. 2013 Sep;92(11):1403-9. doi: 10.1016/j.chemosphere.2013.03.043. Epub 2013 Apr 16.

Abstract

The objective of the present study was to get more insight into the mechanisms that govern the high mineralization potential of a microbial community attached on a carrier material, as we found in an earlier study (Wang et al., 2010). A 1,2,4-Trichlorobenzene (1,2,4-TCB) degrading microbial community - attached (MCCP) and non-attached (MCLM) on clay particles - was inoculated into a simplified mineral medium system. Signaling molecules (AHLs), cell growth and 1,2,4-TCB mineralization were measured at different sampling points. The production of AHLs in the MCCP system increased continuously with increasing key degrader (Bordetella sp.) cell growth and a positive correlation was observed between the production of AHLs and 1,2,4-TCB mineralization. In the MCLM system, however, 1,2,4-TCB mineralization was lower than in the MCCP system; the AHLs production per Bordetella cell was higher than in MCCP and there was no correlation between AHLs and mineralization. Moreover, in the MCCP system less different AHLs were produced than in the MCLM system. These results indicate that a microbial community attached on a carrier material has an advantage over a non-attached community: it produces signaling molecules with much less energy and effort to achieve a well-directed cell-to-cell communication resulting in a high and effective mineralization.

摘要

本研究的目的是更深入地了解控制微生物群落在载体材料上高矿化潜力的机制,正如我们在早期研究中发现的那样(Wang 等人,2010)。接种到简化的矿物培养基系统中的 1,2,4-三氯苯(1,2,4-TCB)降解微生物群落 - 附着(MCCP)和非附着(MCLM)在粘土颗粒上 - 信号分子(AHLs)、细胞生长和 1,2,4-TCB 矿化在不同的采样点进行了测量。MCCP 系统中 AHLs 的产生随着关键降解菌(博德特氏菌属)细胞生长的增加而持续增加,并且观察到 AHLs 的产生与 1,2,4-TCB 矿化之间存在正相关。然而,在 MCLM 系统中,1,2,4-TCB 矿化低于 MCCP 系统;每个博德特氏菌细胞产生的 AHLs 高于 MCCP,并且 AHLs 与矿化之间没有相关性。此外,在 MCCP 系统中产生的不同 AHLs 比在 MCLM 系统中少。这些结果表明,附着在载体材料上的微生物群落比非附着群落具有优势:它产生信号分子所需的能量和努力要少得多,从而实现了良好定向的细胞间通讯,导致高而有效的矿化。

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