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首页> 外文期刊>Probiotics and Antimicrobial Proteins >Antibiofilm Activity of the Marine Bacterium Pseudoalteromonas sp. 3J6 Against Vibrio tapetis, the Causative Agent of Brown Ring Disease
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Antibiofilm Activity of the Marine Bacterium Pseudoalteromonas sp. 3J6 Against Vibrio tapetis, the Causative Agent of Brown Ring Disease

机译:海洋细菌Pseudoalteromonas sp。的抗生物膜活性。 3J6对抗棕带病,褐环病的病原体

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Vibrio tapetis CECT4600 is a pathogenic Gram-negative bacterium causing the brown ring disease in the Manila clam Ruditapes philippinarum. This vibriosis is induced by bacterial attachment on the periostracal lamina, yielding a decalcification of the bivalve shell. As in many bacterial species, pathogenesis is likely related to biofilm formation. The proteinaceous exoproducts of the marine bacterium Pseudoalteromonas sp. 3J6 inhibit the formation of biofilm by most of the tested marine bacteria without affecting their planktonic growth. In the present work, we examined the sensitivity of V. tapetis to Pseudoalteromonas sp. 3J6 and its exoproducts. In V. tapetis CECT4600-GFP–Pseudoalteromonas sp. 3J6 co-cultures, the latter outcompeted V. tapetis whatever the growth mode (planktonic or biofilm), which could result from a slower growth of V. tapetis. Biofilms containing only V. tapetis were grown in vitro on a glass substratum under dynamic conditions. When the glass was coated with a culture supernatant of Pseudoalteromonas sp. 3J6 (SN3J6) prior to inoculating V. tapetis CECT4600-GFP, the bacterial attachment was about fivefold lower than in control experiment without SN3J6 and the biofilm formation was delayed by about 24 h: A full biofilm was obtained at 48 versus 24 h for the control. Moreover, a preformed V. tapetis biofilm (grown on SN3J6-free glass substratum) could be disrupted by incubating it with SN3J6. This data suggest that Pseudoalteromonas sp. 3J6 is a good candidate to set up an anti-V. tapetis strategy usable in aquaculture to grow V. tapetis-free Manila clam spats.
机译:Tapetis tapetis CECT4600是一种致病性革兰氏阴性细菌,在马尼拉蛤菲律宾蛤仔中引起棕环病。这种弧菌病是由细菌附着在骨膜周围层上引起的,导致双壳壳脱钙。与许多细菌一样,发病机理可能与生物膜形成有关。海洋细菌Pseudoalteromonas sp。的蛋白质外生产物。 3J6可以抑制大多数受测海洋细菌生物膜的形成,而不会影响其浮游生物的生长。在目前的工作中,我们检查了V. tapetis对假单胞菌属sp的敏感性。 3J6及其外产品。在V. tapetis中,CECT4600-GFP–Pseudoalteromonas sp.。在3J6共培养中,无论哪种生长方式(浮游生物或生物膜),后者都比绒毡肠球菌更胜一筹,这可能是由绒毡肠球菌较慢的生长导致的。仅在动态条件下在玻璃基底上体外生长仅包含V. tapetis的生物膜。当玻璃上涂有假单胞菌属种的培养上清液。接种V. tapetis CECT4600-GFP之前的3J6(SN3J6),细菌附着比没有SN3J6的对照实验低约五倍,生物膜形成被延迟了约24小时:在48h时获得了完整的生物膜,而在24h时获得了完整的生物膜。控制。此外,可以通过将其与SN3J6一起孵育来破坏预先形成的V. tapetis生物膜(生长在不含SN3J6的玻璃基质上)。该数据表明假单胞菌属sp。 3J6是设置反V的不错选择。 Tapetis策略可用于水产养殖,以种植无V. tapetis的马尼拉蛤spa。

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