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Marine diatom species harbour distinct bacterial communities

机译:海洋硅藻物种具有独特的细菌群落

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We examined bacterial dynamics in batch cultures of two axenic marine diatoms (Thalassiosira rotula and Skeletonema costatum). The axenic diatoms were inoculated with natural bacterial assemblages and monitored by 4,6-diamidino-2-phenolindole (DAPI) counts, denaturing gradient gel electrophoresis (DGGE) with subsequent analysis of excised, sequenced 16S rRNA gene fragments, and fluorescence in situ hybridization (FISH) with group-specific 16S rRNA oligonucleotide probes. Our results show that algal growth exhibited pronounced differences in axenic treatments and when bacteria were present. Bacterial abundance and community structure greatly depended on species, growth and physiological status of even closely related algae. Free-living and phytoplankton-associated bacteria were very different from each other and were dominated by distinct phylogenetic groups. The diatom-associated bacteria mainly belonged to the Flavobacteria-Sphingobacteria group of the Bacteroidetes phylum whereas free-living bacteria, which were rather similar in both cultures, comprised mainly of members of the Roseobacter group of α-Proteobacteria. Presence and disappearance of specific bacteria during algal growth indicated pronounced differences in environmental conditions over time and selection of bacteria highly adapted to the changing conditions. Tight interactions between marine bacteria and diatoms appear to be important for the decomposition of organic matter and nutrient cycling in the sea.
机译:我们检查了两个轴生的海洋硅藻(Thalassiosira rotula和Skeletonema costatum)的分批培养中的细菌动力学。用天然细菌组合物接种轴突硅藻,并通过4,6-二mid基-2-苯酚吲哚(DAPI)计数,变性梯度凝胶电泳(DGGE)进行监测,随后分析切除的,测序的16S rRNA基因片段,以及荧光原位杂交(FISH)具有组特异性16S rRNA寡核苷酸探针。我们的研究结果表明,藻类的生长在无菌治疗和细菌存在时表现出明显的差异。细菌的丰度和群落结构在很大程度上取决于甚至密切相关的藻类的种类,生长和生理状态。自由生活的和浮游植物相关的细菌彼此之间有很大的不同,并且由不同的系统发育群体所主导。与硅藻有关的细菌主要属于门生细菌杆菌的黄杆菌属-鞘氨醇属,而在两种培养物中都相当相似的自由生活细菌主要由α-变形杆菌属的玫瑰细菌属组成。藻类生长过程中特定细菌的存在和消失表明环境条件随时间变化明显,并且选择的细菌高度适应不断变化的条件。海洋细菌和硅藻之间的紧密相互作用似乎对于海洋中有机物的分解和养分循环很重要。

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