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首页> 外文期刊>International Biodeterioration & Biodegradation >Role of bacterial biofilms and their EPS on settlement of barnacle (Amphibalanus reticulatus) larvae
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Role of bacterial biofilms and their EPS on settlement of barnacle (Amphibalanus reticulatus) larvae

机译:细菌生物膜及其EPS对藤壶(Amphibalanus Reticulatus)幼虫的作用

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Settlement of pelagic cypris larvae is crucial for barnacle biofouling which causes severe operational problems and economic penalties in maritime activities and seawater cooled power plants. Marine biofilms formed on submerged surfaces play a key role in settlement of larvae of barnacles and a promising source for environmentally benign antifouling strategies. To determine inhibitory action of biofilms, bacterial strains were isolated from natural biofilms, screened for their biofilm formation potential and interference in settlement of cyrpis larvae of Amphibalanus reticulatus. Monoculture biofilms of three bacterial strains i.e. Alteromonas sp. 1, Alteromonas sp. 2 and Bacillus cereus inhibited cypris settlement by similar to 67%-93% and 67%-78% in choice and no choice experiments, respectively. Biofilms of two bacterial strains (B. pumilus and Halomonas aquamarina) had no significant effect and one strain (Brevibacterium casei) showed marginal induction in cypris settlement. In case of inhibitory biofilms, the inhibitory action on cypris could be ascertained to the loosely bound extracellular polymeric substances (LB EPS). The effects of LB EPS included settlement inhibition, larval mortality, altered larval behaviour and interrupted moulting. Crude fractionation and testing of individual LB EPS fractions showed that the inhibitory activity was associated with the carbohydrate components. This study shows the importance of further studies on probing marine biofilm-larval interactions, identification and characterization of inhibitory compounds for developing newer environmentally benign antifouling strategies.
机译:对胸腺CYPRIS幼虫的沉降对于Barnacle Biofouling至关重要,这导致海上活动和海水冷却发电厂的严重运营问题和经济处罚。在浸没表面上形成的海洋生物膜在烧结幼虫和环境良好的防污策略的有前途的来源中起着关键作用。为了确定生物膜的抑制作用,从天然生物膜中分离细菌菌株,筛选它们的生物膜形成电位和Amphibalanus reticulatus的Cyrpis幼虫的干扰。三种细菌菌株的单一种植生物膜I.Stheromonas sp。 1,AlterOmonas SP。 2和芽孢杆菌抑制Cypris沉降,同样达到67%-93%和67%-78%,分别没有选择实验。两种细菌菌株(B.Pumilus和Halomonas Aquamarina)的生物膜没有显着效果,一种菌株(Brevibacterium casei)在Cypris沉降中显示出边缘诱导。在抑制生物膜的情况下,可以确定对Cypris上的抑制作用在松散结合的细胞外聚合物(LB EPS)上。 LB EPS的影响包括沉降抑制,幼虫死亡率,改变幼虫行为和中断的换热。粗分馏和对单个LB EPS级分的测试表明,抑制活性与碳水化合物组分有关。本研究表明了进一步研究关于探测海洋生物膜 - 幼虫相互作用,鉴定和表征抑制性化合物的重要性的重要性,用于开发新的环境良性防污策略。

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