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Specificity in the settlement-modifying response of bacterial biofilms towards zoospores of the marine alga Enteromorpha

机译:细菌生物膜对海藻Enteromorpha游动孢子的定居修饰反应的特异性

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Previous studies have shown that the rate of settlement of zoospores of the green alga Enteromorpha is stimulated by mixed microbial biofilms and that the number of zoospores settling is positively correlated with the number of bacteria in the biofilm, in the present study the specifity of this relationship has been investigated, Ninety-nine strains of marine bacteria were isolated from natural biofilms on rocks and the surface of Enteromorpha plants. Isolates were screened by denaturing gradient gel electrophoresis (DGGE) to eliminate replicates and 16S rDNA sequencing identified a total of 37 unique strains. phylogenetic analysis revealed that the isolated bacterial strains belonged to three groups γ-Proteobacteria (28 strains), Cytophaga-Flavobacteria-Bacteriod (CFB) group (six strains) and α-Proteobacteria (one strain). Two strains were unassigned, showing <93% sequence similarity with the CFB group. The main genera of γ-Proteobacteria were Pseudoalteromonas (14 strains), Vibrio (five strains), Shewanella (five strains), Halomonas (three strains) and Pseudomonas (one strain). Spore settlement experiments were conducted on single-species biofilms, developed for different times on glass slides. The effect of correcting spore settlement values for biofilm density was evaluated. Results showed that the effect of bacterial strains on spore settlement values for biofilm density was evaluated, Results showed that the effect of bacterial strains on spore settlement was strain-but not taxonspecific and activity varied with the age of the biofilm, However, most of the strains belonging to genera Vibrio and Shewanella showed stimulation. Pseudoalteromonas strains showed a range of effects including settlement-inhibiting, paralysing and lysing activities. Spatial analysis of bacterial density in the presence and absence of spores revealed a range of different types of association between spores and bacteria. Overall, the spatial association between spores and bacteria appears to be independent of the overall quantitative influence of bacterial cells on spore settlement.
机译:先前的研究表明,混合藻类生物膜刺激了绿藻肠小孢子游动孢子的沉降速率,并且游动孢子的沉降数量与生物膜中细菌的数量呈正相关,在本研究中这种关系的特异性据调查,从岩石和肠morph植物表面的天然生物膜中分离出了九十九个海洋细菌菌株。通过变性梯度凝胶电泳(DGGE)筛选菌株以消除重复,并通过16S rDNA测序鉴定出总共37种独特菌株。系统发育分析表明,分离出的细菌菌株属于γ-变形杆菌(28株),细胞吞噬-黄细菌-细菌(CFB)(六个菌株)和α-变形杆菌(一个菌株)三类。未分配两个菌株,显示与CFB组的序列相似度小于93%。 γ-变形杆菌的主要属是假单胞菌属(14个菌株),弧菌(5个菌株),希瓦氏菌(5个菌株),嗜盐单胞菌(3个菌株)和假单胞菌(1个菌株)。孢子沉降实验是在单种类生物膜上进行的,该生物膜是在玻片上不同时间显影的。评价了针对生物膜密度校正孢子沉降值的效果。结果表明,评估了细菌菌株对孢子沉降值的生物膜密度的影响。结果表明,细菌菌株对孢子沉降的影响是菌株,但不是分类特异性的,且活性随生物膜的年龄而变化,但是,大多数属于弧菌和希瓦氏菌属的菌株显示出刺激作用。假单胞菌菌株显示出一系列作用,包括抑制沉降,麻痹和裂解活性。在存在和不存在孢子的情况下细菌密度的空间分析表明,孢子和细菌之间存在多种不同类型的缔合。总体而言,孢子和细菌之间的空间关联似乎独立于细菌细胞对孢子沉降的总体定量影响。

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