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哈维氏弧菌导致的铅沉淀:新型群体感应相互作用的证据

Lead precipitation by Vibrio harveyi: evidence for novel quorum-sensing interactions.

作者信息

Mire Chad E, Tourjee Jeanette A, O'Brien William F, Ramanujachary Kandalam V, Hecht Gregory B

机构信息

Department of Biological Sciences, Rowan University, Glassboro, New Jersey 08028, USA.

出版信息

Appl Environ Microbiol. 2004 Feb;70(2):855-64. doi: 10.1128/AEM.70.2.855-864.2004.

Abstract

Three pleiotropic, quorum sensing-defective Vibrio harveyi mutants were observed to precipitate soluble Pb2+ as an insoluble compound. The compound was purified and subjected to X-ray diffraction and elemental analyses. These assays identified the precipitated compound as Pb9(PO4)6, an unusual and complex lead phosphate salt that is produced synthetically at temperatures of ca. 200 degrees C. Regulation of the precipitation phenotype was also examined. Introduction of a luxO::kan allele into one of the mutants abolished lead precipitation, indicating that the well-characterized autoinducer 1 (AI1)-AI2 quorum-sensing system can block lead precipitation in dense cell populations. Interestingly, the V. harveyi D1 mutant, a strain defective for secretion of both AI1 and AI2, was shown to be an effective trans inhibitor of lead precipitation. This suggests that a previously undescribed V. harveyi autoinducer, referred to as AI3, can also negatively regulate lead precipitation. Experiments with heterologous bacterial populations demonstrated that many different species are capable of trans regulating the V. harveyi lead precipitation phenotype. Moreover, one of the V. harveyi mutants in this study exhibited little or no response to intercellular signals from other V. harveyi inocula but was quite responsive to some of the heterologous bacteria. Based on these observations, we propose that V. harveyi carries at least one quorum sensor that is specifically dedicated to receiving cross-species communication.

摘要

观察到三株多效性、群体感应缺陷型哈维氏弧菌突变体能够将可溶性Pb2+沉淀为一种不溶性化合物。该化合物经过纯化,并进行了X射线衍射和元素分析。这些分析确定沉淀的化合物为Pb9(PO4)6,这是一种不寻常且复杂的磷酸铅盐,通常在约200摄氏度的温度下通过合成产生。还研究了沉淀表型的调控。将luxO::kan等位基因导入其中一个突变体中可消除铅沉淀,这表明特征明确的自诱导物1(AI1)-AI2群体感应系统可在高密度细胞群体中阻止铅沉淀。有趣的是,哈维氏弧菌D1突变体,即一种AI1和AI2分泌均有缺陷的菌株,被证明是铅沉淀的有效反式抑制剂。这表明一种此前未描述的哈维氏弧菌自诱导物,称为AI3,也可以对铅沉淀产生负调控作用。对异源细菌群体进行的实验表明,许多不同的物种都能够反式调控哈维氏弧菌的铅沉淀表型。此外,本研究中的一株哈维氏弧菌突变体对来自其他哈维氏弧菌接种物的细胞间信号几乎没有反应,但对一些异源细菌却相当敏感。基于这些观察结果,我们提出哈维氏弧菌携带至少一种专门用于接收跨物种交流信号的群体感应传感器。

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