首页> 外文期刊>Applied Microbiology >Hierarchy of Carbon Source Utilization in Soil Bacteria: Hegemonic Preference for Benzoate in Complex Aromatic Compound Mixtures Degraded by Cupriavidus pinatubonensis Strain JMP134
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Hierarchy of Carbon Source Utilization in Soil Bacteria: Hegemonic Preference for Benzoate in Complex Aromatic Compound Mixtures Degraded by Cupriavidus pinatubonensis Strain JMP134

机译:土壤细菌碳源利用的层次结构:松柏铜绿菌株JMP134降解复杂芳香化合物混合物中苯甲酸盐的霸权偏好

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Cupriavidus pinatubonensis JMP134, like many other environmental bacteria, uses a range of aromatic compounds as carbon sources. Previous reports have shown a preference for benzoate when this bacterium grows on binary mixtures composed of this aromatic compound and 4-hydroxybenzoate or phenol. However, this observation has not been extended to other aromatic mixtures resembling a more archetypal context. We carried out a systematic study on the substrate preference of C. pinatubonensis JMP134 growing on representative aromatic compounds channeled through different catabolic pathways described in aerobic bacteria. Growth tests of nearly the entire set of binary combinations and in mixtures composed of 5 or 6 aromatic components showed that benzoate and phenol were always the preferred and deferred growth substrates, respectively. This pattern was supported by kinetic analyses that showed shorter times to initiate consumption of benzoate in aromatic compound mixtures. Gene expression analysis by real-time reverse transcription-PCR (RT-PCR) showed that, in all mixtures, the repression by benzoate over other catabolic pathways was exerted mainly at the transcriptional level. Additionally, inhibition of benzoate catabolism suggests that its multiple repressive actions are not mediated by a sole mechanism, as suggested by dissimilar requirements of benzoate degradation for effective repression in different aromatic compound mixtures. The hegemonic preference for benzoate over multiple aromatic carbon sources is not explained on the basis of growth rate and/or biomass yield on each single substrate or by obvious chemical or metabolic properties of these aromatic compounds.
机译:像许多其他环境细菌一样,Piniatubonensis铜杯JMP134也使用多种芳香族化合物作为碳源。以前的报道表明,当这种细菌在由这种芳香族化合物和4-羟基苯甲酸酯或苯酚组成的二元混合物上生长时,偏爱苯甲酸酯。但是,这种观察还没有扩展到其他类似原型环境的芳香族混合物。我们对C.pinatubonensis JMP134在有氧细菌中描述的通过不同分解代谢途径介导的代表性芳香族化合物上生长的底物偏好进行了系统的研究。对几乎所有二元组合以及由5种或6种芳香族成分组成的混合物进行的生长测试表明,苯甲酸酯和苯酚始终分别是首选的和延迟的生长底物。这种模式得到动力学分析的支持,动力学分析表明引发芳族化合物混合物中苯甲酸酯消耗的时间较短。通过实时逆转录-PCR(RT-PCR)进行的基因表达分析表明,在所有混合物中,苯甲酸酯对其他分解代谢途径的抑制作用主要在转录水平上起作用。另外,对苯甲酸酯分解代谢的抑制表明它的多重抑制作用不是由唯一的机制介导的,这是苯甲酸酯降解对于在不同的芳族化合物混合物中进行有效抑制的不同要求。没有基于在每种单一底物上的生长速率和/或生物质产率或这些芳族化合物的明显化学或代谢特性来解释对苯甲酸酯在多种芳族碳源上的霸权偏好。

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