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从微藻培养物中分离AHL降解细菌及其对藻类生长和坎氏弧菌对虾幼体毒力的影响。

Isolation of AHL-degrading bacteria from micro-algal cultures and their impact on algal growth and on virulence of Vibrio campbellii to prawn larvae.

作者信息

Pande Gde Sasmita Julyantoro, Natrah Fatin Mohd Ikhsan, Flandez Ace Vincent Bravo, Kumar Uday, Niu Yufeng, Bossier Peter, Defoirdt Tom

机构信息

Laboratory of Aquaculture & Artemia Reference Center, Ghent University, Rozier 44, B-9000, Ghent, Belgium.

Department of Aquatic Resources Management, Faculty of Marine Science and Fisheries, Udayana University, Bali, Indonesia.

出版信息

Appl Microbiol Biotechnol. 2015 Dec;99(24):10805-13. doi: 10.1007/s00253-015-6918-1. Epub 2015 Sep 7.

Abstract

Inactivation of quorum sensing (QS) signal molecules, such as acylhomoserine lactones (AHLs) of pathogenic bacteria, has been proposed as a novel method to combat bacterial diseases in aquaculture. Despite the importance of micro-algae for aquaculture, AHL degradation by bacteria associated with micro-algal cultures has thus far not been investigated. In this study, we isolated Pseudomonas sp. NFMI-T and Bacillus sp. NFMI-C from open cultures of the micro-algae Tetraselmis suecica and Chaetoceros muelleri, respectively. An AHL degradation assay showed that either monocultures or co-cultures of the isolates were able to degrade the AHL N-hexanoyl-L-homoserine lactone. In contrast, only Bacillus sp. NFMI-C was able to inactivate N-hydroxybutanoyl-L-homoserine lactone, the AHL produced by Vibrio campbellii. The isolated bacteria were able to persist for up to 3 weeks in conventionalized micro-algal cultures, indicating that they were able to establish and maintain themselves within open algal cultures. Using gnotobiotic algal cultures, we found that the isolates did not affect growth of the micro-algae from which they were isolated, whereas a mixture of both isolates increased the growth of Tetraselmis and decreased the growth of Chaetoceros. Finally, addition of Bacillus sp. NFMI-C to the rearing water of giant river prawn (Macrobrachium rosenbergii) larvae significantly improved survival of the larvae when challenged with pathogenic V. campbellii, whereas it had no effect on larval growth.

摘要

群体感应(QS)信号分子的失活,如病原菌的酰基高丝氨酸内酯(AHLs),已被提议作为一种对抗水产养殖中细菌性疾病的新方法。尽管微藻对水产养殖很重要,但与微藻培养相关的细菌对AHL的降解作用迄今尚未得到研究。在本研究中,我们分别从微藻瑞典四爿藻(Tetraselmis suecica)和牟氏角毛藻(Chaetoceros muelleri)的开放培养物中分离出了假单胞菌属(Pseudomonas sp.)NFMI-T和芽孢杆菌属(Bacillus sp.)NFMI-C。AHL降解试验表明,这些分离菌株的单培养物或共培养物都能够降解AHL N-己酰基-L-高丝氨酸内酯。相比之下,只有芽孢杆菌属NFMI-C能够使坎氏弧菌(Vibrio campbellii)产生的AHL N-羟基丁酰-L-高丝氨酸内酯失活。这些分离出的细菌能够在常规的微藻培养物中持续存在长达3周,这表明它们能够在开放的藻类培养物中定殖并维持自身生长。使用无菌微藻培养物,我们发现这些分离菌株不会影响它们所来源的微藻的生长,而两种分离菌株的混合物则增加了四爿藻的生长并降低了角毛藻的生长。最后,将芽孢杆菌属NFMI-C添加到巨型河虾(罗氏沼虾,Macrobrachium rosenbergii)幼体的养殖水中,在受到致病性坎氏弧菌攻击时,显著提高了幼体的存活率,而对幼体生长没有影响。

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