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本文引用的文献

1
Benzoate mediates the simultaneous repression of anaerobic 4-methylbenzoate and succinate utilization in Magnetospirillum sp. strain pMbN1.苯甲酸盐介导对嗜磁螺菌属菌株pMbN1中厌氧4-甲基苯甲酸盐和琥珀酸盐利用的同时抑制。
BMC Microbiol. 2014 Oct 27;14:269. doi: 10.1186/s12866-014-0269-4.
2
Induction and carbon catabolite repression of phenol degradation genes in Rhodococcus erythropolis and Rhodococcus jostii.红平红球菌和约氏红球菌中苯酚降解基因的诱导及碳分解代谢物阻遏
Appl Microbiol Biotechnol. 2014 Oct;98(19):8267-79. doi: 10.1007/s00253-014-5881-6. Epub 2014 Jun 18.
3
Molecular composition and biodegradability of soil organic matter: a case study comparing two new England forest types.土壤有机质的分子组成和生物降解性:新英格兰两种森林类型的比较研究。
Environ Sci Technol. 2014 Jul 1;48(13):7229-36. doi: 10.1021/es405570c. Epub 2014 Jun 19.
4
Benzoate metabolism intermediate benzoyl coenzyme A affects gentisate pathway regulation in Comamonas testosteroni.苯甲酸酯代谢中间体苯甲酰辅酶A影响睾丸酮丛毛单胞菌中龙胆酸途径的调控。
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Physiology of Geobacter metallireducens under excess and limitation of electron donors. Part I. Batch cultivation with excess of carbon sources.电子供体过量和受限条件下嗜金属地杆菌的生理学。第一部分。碳源过量时的分批培养。
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Evaluation of dissolved organic carbon as a soil quality indicator in national monitoring schemes.在国家监测计划中评估溶解有机碳作为土壤质量指标的情况。
PLoS One. 2014 Mar 14;9(3):e90882. doi: 10.1371/journal.pone.0090882. eCollection 2014.
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Plant growth and phenolic compounds in the rhizosphere soil of wild oat (Avena fatua L.).野生燕麦(Avena fatua L.)根际土壤中的植物生长和酚类化合物。
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A second chromosomal copy of the catA gene endows Pseudomonas putida mt-2 with an enzymatic safety valve for excess of catechol.catA基因的第二个染色体拷贝赋予恶臭假单胞菌mt-2一个用于应对过量儿茶酚的酶安全阀。
Environ Microbiol. 2014 Jun;16(6):1767-78. doi: 10.1111/1462-2920.12361. Epub 2014 Jan 21.
9
AccR is a master regulator involved in carbon catabolite repression of the anaerobic catabolism of aromatic compounds in Azoarcus sp. CIB.AccR 是一个主控调节子,参与了 Azoarcus sp. CIB 中芳香族化合物厌氧分解的碳分解产物阻遏。
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Simultaneous catabolism of plant-derived aromatic compounds results in enhanced growth for members of the Roseobacter lineage.植物源芳香族化合物的同时降解导致玫瑰杆菌谱系成员的生长增强。
Appl Environ Microbiol. 2013 Jun;79(12):3716-23. doi: 10.1128/AEM.00405-13. Epub 2013 Apr 5.

土壤细菌中碳源利用的层级结构:在被皮纳图博贪铜菌菌株JMP134降解的复杂芳香族化合物混合物中对苯甲酸盐的主导偏好。

Hierarchy of Carbon Source Utilization in Soil Bacteria: Hegemonic Preference for Benzoate in Complex Aromatic Compound Mixtures Degraded by Cupriavidus pinatubonensis Strain JMP134.

作者信息

Pérez-Pantoja Danilo, Leiva-Novoa Pablo, Donoso Raúl A, Little Cedric, Godoy Margarita, Pieper Dietmar H, González Bernardo

机构信息

Millennium Nucleus on Plant Functional Genomics, Pontificia Universidad Católica de Chile, Santiago, Chile.

Facultad de Ingeniería y Ciencias, Universidad Adolfo Ibáñez, Center of Applied Ecology and Sustainability, Santiago, Chile Millennium Nucleus on Plant Functional Genomics, Pontificia Universidad Católica de Chile, Santiago, Chile.

出版信息

Appl Environ Microbiol. 2015 Jun 15;81(12):3914-24. doi: 10.1128/AEM.04207-14. Epub 2015 Mar 20.

DOI:10.1128/AEM.04207-14
PMID:25795675
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4524160/
Abstract

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.

摘要

与许多其他环境细菌一样,皮纳图博贪铜菌JMP134利用多种芳香族化合物作为碳源。先前的报告表明,当这种细菌在由该芳香族化合物与4-羟基苯甲酸或苯酚组成的二元混合物上生长时,它更倾向于利用苯甲酸。然而,这一观察结果尚未扩展到其他更具代表性的芳香族混合物。我们对皮纳图博贪铜菌JMP134在通过好氧细菌中描述的不同分解代谢途径传递的代表性芳香族化合物上生长时的底物偏好进行了系统研究。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,苯甲酸和苯酚始终分别是首选和次选的生长底物。动力学分析支持了这一模式,该分析表明在芳香族化合物混合物中开始消耗苯甲酸的时间更短。通过实时逆转录聚合酶链反应(RT-PCR)进行的基因表达分析表明,在所有混合物中,苯甲酸对其他分解代谢途径的抑制主要在转录水平发挥作用。此外,苯甲酸分解代谢的抑制表明,其多种抑制作用并非由单一机制介导这一点,这与不同芳香族化合物混合物中苯甲酸降解对有效抑制的不同要求所表明的情况一致。苯甲酸对多种芳香族碳源的主导偏好不能基于每种单一底物的生长速率和/或生物量产量,也不能基于这些芳香族化合物明显的化学或代谢特性来解释。