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首页> 外文期刊>International Biodeterioration & Biodegradation >Acyl homoserine lactone based quorum sensing affects phenanthrene removal by Novosphingobium pentaromativorans US6-1 through altering cell surface properties
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Acyl homoserine lactone based quorum sensing affects phenanthrene removal by Novosphingobium pentaromativorans US6-1 through altering cell surface properties

机译:酰基均静脉内酯基致法感测量通过改变细胞表面性能,影响Novosphipling obentaromativorans US6-1的菲移除

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摘要

Novosphingobium pentaromativorans US6-1 can degrade polycyclic aromatic hydrocarbons (PAHs) and produce acyl-L-homoserine lactones (AHLs), which are quorum-sensing (QS) signal molecules. However, whether and how QS affects bioremediation of PAHs remain unknown. In this study, using novI and novR deletion mutants (Delta novI and Delta novR) and complementary strains (Delta novI (pCM62-novI) and Delta novR (pCM62-novR)), we proved that novI and novR constitute the QS system in US6-1. The expression of most genes encoding PAH degrading enzymes were significantly upregulated in mutants, and this finding was consistent with measurements showing that mutants had a higher phenanthrene (phe) removal efficiency (PRE) than wild-type US6-1 (WT_US6-1). Both mutants had significantly higher cell surface hydrophobicity (CSH) and lower extracellular-polysaccharide (EPS) production than WT_US6-1. The functional C-O-C groups on the cell membrane were also changed in mutants. Upregulation of spt in Delta novI and downregulation of epsd in Delta novR supported the measurement results of CSH and EPS production. These results indicate that the AHLs-based QS in US6-1 negatively regulates PRE and CSH and positively regulates EPS production. Correlation analysis indicates that in US6-1, QS negatively affects PRE by altering the cell surface properties, and hence, QS may serve as a target for controlling bioremediation.
机译:Novosphing ocion obiniumativorans US6-1可以降解多环芳烃(PAH)并产生酰基-L-均静脉内酯(AHL),其是仲裁感测(QS)信号分子。但是,QS是否如何影响PAH的生物修复仍然未知。在本研究中,使用Novi和Novr删除突变体(Delta Novi和Delta Novr)和互补菌株(Delta Novi(PCM62-Novi)和Delta Novr(PCM62-Novr)),我们证明了Novi和Novr构成了US6的QS系统-1。在突变体中显着上调了编码PAH降解酶的大多数基因的表达,并且该发现与显示突变体具有比野生型US6-1(WT_US6-1)具有更高的菲苯(PHE)去除效率(PRE)的测量结果一致。两个突变体的细胞表面疏水性(CSH)和低细胞外 - 多糖(EPS)产生的产生显着高于WT_US6-1。细胞膜上的功能性C-O-C组也在突变体中改变。达达诺伊三角洲斯普尔斯的上调和达到普通的EPSD下调支持CSH和EPS生产的测量结果。这些结果表明,基于AHLS的QS在US6-1中,负调节预先和CSH并积极调节EPS生产。相关分析表明,在US6-1中,通过改变细胞表面性质,Qs对预来影响预先影响,因此,Qs可以用作控制生物修复的靶标。

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