SCREENING OF MARINE BACTERIUM VIBRIO ALGINOLYTICUS STRAIN AS05 FOR THE PRODUCTION OF N-ACYL HOMOSERINE LACTONE-BASED QUORUM SENSING SIGNALING MOLECULES

Dr. Abdul Nabi
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Abstract

Marine environments, including aquatic and coastal environments, are highly prevalent of marine bacteria with the highest levels of Vibrio species. Vibrios play a vital role in marine ecology associated with carbon and energy acquisition. The density-dependent quorum sensing (QS) system may regulate certain biological activities in marine bacteria. QS is a conversation system utilized by many bacterial communities to communicate and coordinate through different signalling molecules. N-acyl homoserine lactones (AHLs) are the most important QS signalling molecules widely produced by Gram-negative bacteria. This study aimed to investigate the detection and Identification of AHL-based QS signalling molecules produced by marine bacterium V. alginolyticus strain AS05 isolated from marine water of the Arabian Sea, Karachi, Pakistan. Marine medium Zobell-2216 was used to isolate bacterial strains. Moreover, 16S rRNA analysis was applied to identify AS05 strain. Agar plate bioassay was used to detect the production of AHL signalling molecules using Chromobacterium violaceum CV026 as a biosensor. The Identification of AHLs was made by reversed-phase thin-layer chromatography (RP-TLC) analysis. The NCBI-blast results revealed the identification of the isolated bacterial strain as Vibrio alginolyticus strain AS05 (OQ130030) member of the family of Vibrionaceae under the class of Gammaproteobacteria. The results of agar plate bioassay using CV026 as a biosensor strain revealed highly positive reactions for producing AHL signalling molecules. Moreover, two AHL molecules produced by AS05 bacterial strain were identified as C6-HSL and C-8HSL based on TLC analysis. This study reveals the detection and Identification of two different AHL signalling molecules produced by V. alginolyticus AS05 isolated from marine water of the Arabian Sea, Karachi, Pakistan. This study provides insight into investigating quorum-sensing signalling molecules in the Arabian Sea, Karachi, Pakistan, and marine bacterial species.
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海洋溶藻弧菌as05产n -酰基高丝氨酸内酯类群体感应信号分子的筛选
海洋环境,包括水生和沿海环境,海洋细菌非常普遍,弧菌种类含量最高。弧菌在与碳和能量获取相关的海洋生态中起着至关重要的作用。密度依赖性群体感应(QS)系统可以调节海洋细菌的某些生物活性。QS是许多细菌群落通过不同的信号分子进行沟通和协调的对话系统。n -酰基高丝氨酸内酯(AHLs)是革兰氏阴性菌广泛产生的最重要的QS信号分子。本研究旨在检测和鉴定产自巴基斯坦卡拉奇阿拉伯海海水的海洋细菌V. alginolyticus菌株AS05产生的基于ahl的QS信号分子。采用海洋培养液Zobell-2216分离菌株。采用16S rRNA分析对AS05菌株进行鉴定。以紫色色杆菌CV026为生物传感器,采用琼脂平板生物测定法检测AHL信号分子的产生。采用反相薄层色谱法(RP-TLC)对ahl进行鉴定。NCBI-blast结果表明,分离得到的菌株为溶藻弧菌AS05 (OQ130030),属于γ变形菌纲弧菌科。以CV026作为生物传感器菌株进行琼脂平板生物测定,结果显示其产生AHL信号分子的反应高度阳性。此外,通过TLC分析,AS05菌株产生的两个AHL分子鉴定为C6-HSL和C-8HSL。本研究揭示了从巴基斯坦卡拉奇阿拉伯海海水中分离的褐藻溶解菌AS05产生的两个不同的AHL信号分子的检测和鉴定。这项研究为调查阿拉伯海,卡拉奇,巴基斯坦的群体感应信号分子和海洋细菌物种提供了见解。
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