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Nonbioluminescent Strains of Photobacterium phosphoreum Produce the Cell-to-Cell Communication Signal N-(3-Hydroxyoctanoyl)homoserine Lactone

机译:磷光细菌的非生物发光菌株产生细胞间通讯信号N-(3-羟基辛酰基)高丝氨酸内酯

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摘要

Bioluminescence is a common phenotype in marine bacteria, such as Vibrio and Photobacterium species, and can be quorum regulated by N-acylated homoserine lactones (AHLs). We extracted a molecule that induced a bacterial AHL monitor (Agrobacterium tumefaciens NT1 [pZLR4]) from packed cod fillets, which spoil due to growth of Photobacterium phosphoreum. Interestingly, AHLs were produced by 13 nonbioluminescent strains of P. phosphoreum isolated from the product. Of 177 strains of P. phosphoreum (including 18 isolates from this study), none of 74 bioluminescent strains elicited a reaction in the AHL monitor, whereas 48 of 103 nonbioluminescent strains did produce AHLs. AHLs were also detected in Aeromonas spp., but not in Shewanella strains. Thin-layer chromatographic profiles of cod extracts and P. phosphoreum culture supernatants identified a molecule similar in relative mobility (Rf value) and shape to N-(3-hydroxyoctanoyl)homoserine lactone, and the presence of this molecule in culture supernatants from a nonbioluminescent strain of P. phosphoreum was confirmed by high-performance liquid chromatography-positive electrospray high-resolution mass spectrometry. Bioluminescence (in a non-AHL-producing strain of P. phosphoreum) was strongly up-regulated during growth, whereas AHL production in a nonbioluminescent strain of P. phosphoreum appeared constitutive. AHLs apparently did not influence bioluminescence, as the addition of neither synthetic AHLs nor supernatants delayed or reduced this phenotype in luminescent strains of P. phosphoreum. The phenotypes of nonbioluminescent P. phosphoreum strains regulated by AHLs remains to be elucidated.
机译:生物发光是海洋细菌(如弧菌和光细菌)物种中的常见表型,并且可以通过N-酰化高丝氨酸内酯(AHL)进行群体调控。我们从包装的鳕鱼片中提取了一种诱导细菌AHL监测器(根癌农杆菌NT1 [pZLR4])的分子,该鳕鱼片因磷细菌的生长而变质。有趣的是,AHL是由从产物中分离出的13种非生物发光的磷假单胞菌产生的。在177株磷青霉菌中(包括本研究的18株分离株),74个生物发光菌株中没有一个在AHL监测器中引起反应,而103个非生物发光菌株中的48个确实产生了AHL。在气单胞菌属物种中也检测到AHL,但在希瓦氏菌菌株中未检测到。鳕鱼提取物和体育磷的培养物上清液的薄层色谱图鉴定出与N-(3-羟基辛酰基)高丝氨酸内酯相似的相对迁移率(Rf值)和形状相似的分子,并且该分子在非生物发光的培养物上清液中的存在高效液相色谱-正电喷雾高分辨率质谱法确定了P. P.菌株。在生长过程中,生物发光(在非AHL产生的磷的菌株中)强烈上调,而在磷的非生物发光菌株中的AHL产生似乎是组成性的。 AHL显然不影响生物发光,因为添加合成AHL或上清液均不会延迟或减少磷青霉发光菌株中的这种表型。由AHLs调控的非生物发光的P.磷菌株的表型仍有待阐明。

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