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Modulation of violacein production and phenotypes associated with biofilm by exogenous quorum sensing N-acylhomoserine lactones in the marine bacterium Pseudoalteromonas ulvae TC14

机译:海洋细菌假单胞菌TC14中外源群体感应N-酰基高丝氨酸内酯对紫胶菌素产量和与生物膜相关的表型的调节

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Various phenotypes ranging from biofilm formation to pigment production have been shown to be regulated by quorum sensing (QS) in many bacteria. However, studies of the regulation of pigments produced by marine bacteria in saline conditions and of biofilm-associated phenotypes are scarcer. This study focuses on the demonstration of the existence of a QS communication system involving N-acylhomoserine lactones (AHLs) in the Mediterranean Sea strain Pseudoalteromonas ulvae TC14. We have investigated whether TC14 produces the violacein pigment, and whether intrinsic or exogenous AHLs could influence its production and modulate biofilm-associated phenotypes. Here, we demonstrate that the purple pigment produced by TC14 is violacein. The study shows that in planktonic conditions, TC14 produces more pigment in the medium in which it grows less. Using different approaches, the results also show that TC14 does not produce intrinsic AHLs in our conditions. When exogenous AHLs are added in planktonic conditions, the production of violacein is upregulated by C6-, C12-, 3-oxo-C8 and 3-oxo-C12-HSLs (homoserine lactones), and downregulated by 3-oxo-C6-HSL. In sessile conditions, 3-oxo-C8-HSL upregulates the production of violacein. The study of the biofilm-associated phenotypes shows that oxo-derived-HSLs decrease adhesion, swimming and biofilm formation. While 3-oxo-C8 and 3-oxo-C12-HSLs decrease both swimming and adhesion, 3-oxo-C6-HSLs decrease not only violacein production in planktonic conditions but also swimming, adhesion and more subtly biofilm formation. Therefore, TC14 may possess a functional LuxR-type QS receptor capable of sensing extrinsic AHLs, which controls violacein production, motility, adhesion and biofilm formation.
机译:从生物膜形成到色素生成的各种表型已显示受许多细菌的群体感应(QS)调控。但是,关于在咸水条件下海洋细菌产生的色素的调节以及与生物膜相关的表型的研究很少。这项研究的重点是在地中海菌株Pseudoalteromonas ulvae TC14中证明涉及N-酰基高丝氨酸内酯(AHL)的QS通信系统的存在。我们调查了TC14是否产生紫胶素色素,以及内源性或外源性AHL是否会影响其产生并调节生物膜相关的表型。在这里,我们证明了TC14产生的紫色颜料是紫胶素。研究表明,在浮游条件下,TC14在生长较少的培养基中产生更多的色素。使用不同的方法,结果还表明TC14在我们的条件下不会产生内在的AHL。在浮游条件下添加外源性AHL时,C6-,C12-,3-oxo-C8和3-oxo-C12-HSL(高丝氨酸内酯)会上调紫丁香素的生成,而3-oxo-C6-HSL会下调紫丁香素的生成。在无梗条件下,3-oxo-C8-HSL上调了紫精的产生。生物膜相关表型的研究表明,含氧的HSLs减少粘附,游泳和生物膜形成。虽然3-oxo-C8和3-oxo-C12-HSL减少了游泳和粘附,但3-oxo-C6-HSL不仅减少了浮游条件下的紫胶素产量,而且还减少了游泳,粘附和更精细的生物膜形成。因此,TC14可能具有能够感知外源性AHL的功能性LuxR型QS受体,该受体可控制紫胶素的产生,运动性,粘附性和生物膜形成。

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