Natrah F M I, Alam Md Iftakharul, Pawar Sushant, Harzevili A Shiri, Nevejan Nancy, Boon Nico, Sorgeloos Patrick, Bossier Peter, Defoirdt Tom
Laboratory of Aquaculture &Artemia Reference Center, Ghent University, Rozier 44, 9000 Gent, Belgium.
Vet Microbiol. 2012 Sep 14;159(1-2):77-82. doi: 10.1016/j.vetmic.2012.03.014. Epub 2012 Mar 14.
In this study, the link between quorum sensing in Aeromonas spp. and its virulence towards burbot (Lota lota) was investigated. High mortality occurred in burbot juveniles challenged with Aeromonas salmonicida HN-00, but not in juveniles challenged with Aeromonas hydrophila AH-1N. Meanwhile, both A. hydrophila AH-1N and A. salmonicida HN-00 were virulent towards larvae. The effect of quorum sensing on the virulence of A. hydrophila AH-1N towards burbot larvae was further investigated using quorum sensing mutants (N-(butyryl)-L-homoserine lactone production and receptor mutants). Challenge with these mutants resulted in higher survival of burbot larvae when compared to challenge with the wild type, and the addition of the signal molecule N-butyryl-L-homoserine lactone restored the virulence of the quorum sensing production mutant. Moreover, quorum sensing inhibitors protected the burbot larvae from both Aeromonas strains. Finally, the freshwater micro-algae Chlorella saccharophila and Chlamydomonas reinhardtii, which are able to interfere with quorum sensing, also protected burbot from the pathogens. However, QS interference was unlikely to be the only mechanism. This study revealed that the virulence of Aeromonas spp. towards burbot is regulated by quorum sensing and that quorum sensing inhibitors and micro-algae are promising biocontrol agents.
在本研究中,对气单胞菌属群体感应与其对江鳕(Lota lota)的毒力之间的联系进行了研究。用杀鲑气单胞菌HN - 00攻击的江鳕幼鱼死亡率很高,但用嗜水气单胞菌AH - 1N攻击的幼鱼则不然。同时,嗜水气单胞菌AH - 1N和杀鲑气单胞菌HN - 00对幼虫均具有毒性。使用群体感应突变体(N -(丁酰基)-L -高丝氨酸内酯产生和受体突变体)进一步研究了群体感应对嗜水气单胞菌AH - 1N对江鳕幼虫毒力的影响。与野生型攻击相比,用这些突变体攻击导致江鳕幼虫存活率更高,并且添加信号分子N - 丁酰基-L -高丝氨酸内酯恢复了群体感应产生突变体的毒力。此外,群体感应抑制剂保护江鳕幼虫免受两种气单胞菌菌株的侵害。最后,能够干扰群体感应的淡水微藻嗜糖小球藻和莱茵衣藻也保护江鳕免受病原体侵害。然而,群体感应干扰不太可能是唯一的机制。本研究表明,气单胞菌属对江鳕的毒力受群体感应调节,并且群体感应抑制剂和微藻是有前景的生物防治剂。