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首页> 外文期刊>Microbial Ecology: An International Journal >Seasonal Stability in the Microbiomes of Temperate Gorgonians and the Red Coral Corallium rubrum Across the Mediterranean Sea
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Seasonal Stability in the Microbiomes of Temperate Gorgonians and the Red Coral Corallium rubrum Across the Mediterranean Sea

机译:温带戈贡尼亚人的微生物微生物的稳定性和地中海的红珊瑚冠状动脉

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Populations of key benthic habitat-forming octocoral species have declined significantly in the Mediterranean Sea due to mass mortality events caused by microbial disease outbreaks linked to high summer seawater temperatures. Recently, we showed that the microbial communities of these octocorals are relatively structured; however, our knowledge on the seasonal dynamics of these microbiomes is still limited. To investigate their seasonal stability, we collected four soft gorgonian species (Eunicella singularis, Eunicella cavolini, Eunicella verrucosa and Leptogorgia sarmentosa) and the precious red coral (Corallium rubrum) from two coastal locations with different terrestrial impact levels in the Mediterranean Sea, and used next-generation amplicon sequencing of the 16S rRNA gene. The microbiomes of all soft gorgonian species were dominated by the same 'core microbiome' bacteria belonging to the Endozoicomonas and the Cellvibrionales clade BD1-7, whereas the red coral microbiome was primarily composed of 'core' Spirochaetes, Oceanospirillales ME2 and Parcubacteria. The associations with these bacterial taxa were relatively consistent over time at each location for each octocoral species. However, differences in microbiome composition and seasonal dynamics were observed between locations and could primarily be attributed to locally variant bacteria. Overall, our data provide further evidence of the intricate symbiotic relationships that exist between Mediterranean octocorals and their associated microbes, which are ancient and highly conserved over both space and time, and suggest regulation of the microbiome composition by the host, depending on local conditions.
机译:由于与高夏季海水温度相关的微生物疾病爆发引起的大规模死亡事件,地中海的关键底栖栖息地奥偶型物种的群体显着下降。最近,我们表明这些八陶瓷的微生物群落相对结构;然而,我们对这些微生物瘤的季节性动态的了解仍然有限。为了调查他们的季节性稳定性,我们收集了四种软羊肉种类(Eunicella Singularis,Eunicella Cavolini,Eunicella Verrucosa和Leptogrorgia Sarmentosa)以及来自地中海的不同陆地冲击水平的贵重红珊瑚(Carium Rubrum),并使用过16S rRNA基因的下一代扩增子测序。所有柔软的Gorgonian物种的微生物体由属于内省耳组织的相同“核心微生物组的细菌,而红珊瑚微生物组主要由”核心“螺旋体,海洋主题素ME2和Parcubacters组成。与这些细菌素增加的关联在每个八陶瓷物种的每个位置时相对一致。然而,在地点之间观察到微生物组成和季节性动态的差异,并且可以归因于局部变体细菌。总体而言,我们的数据提供了诸如古老和高度保守的地中海八陶器及其相关微生物之间存在的复杂共生关系的进一步证据,这些关系在空间和时间上,并提出了宿主的微生物组成的调节,具体取决于当地条件。

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