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首页> 外文期刊>Frontiers in Microbiology >Metagenomic sequencing of marine periphyton: taxonomic and functional insights into biofilm communities
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Metagenomic sequencing of marine periphyton: taxonomic and functional insights into biofilm communities

机译:海洋植物海水的Metagenomic测序:生物膜社区的分类和功能见解

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摘要

Periphyton communities are complex phototrophic, multispecies biofilms that develop on surfaces in aquatic environments. These communities harbor a large diversity of organisms comprising viruses, bacteria, algae, fungi, protozoans, and metazoans. However, thus far the total biodiversity of periphyton has not been described. In this study, we use metagenomics to characterize periphyton communities from the marine environment of the Swedish west coast. Although we found approximately ten times more eukaryotic rRNA marker gene sequences compared to prokaryotic, the whole metagenome-based similarity searches showed that bacteria constitute the most abundant phyla in these biofilms. We show that marine periphyton encompass a range of heterotrophic and phototrophic organisms. Heterotrophic bacteria, including the majority of proteobacterial clades and Bacteroidetes , and eukaryotic macro-invertebrates were found to dominate periphyton. The phototrophic groups comprise Cyanobacteria and the alpha-proteobacterial genus Roseobacter , followed by different micro- and macro-algae. We also assess the metabolic pathways that predispose these communities to an attached lifestyle. Functional indicators of the biofilm form of life in periphyton involve genes coding for enzymes that catalyze the production and degradation of extracellular polymeric substances, mainly in the form of complex sugars such as starch and glycogen-like meshes together with chitin. Genes for 278 different transporter proteins were detected in the metagenome, constituting the most abundant protein complexes. Finally, genes encoding enzymes that participate in anaerobic pathways, such as denitrification and methanogenesis, were detected suggesting the presence of anaerobic or low-oxygen micro-zones within the biofilms.
机译:Periphyton群落是复杂的光营养,MultiSpecies Biofilms在水生环境中开发。这些社区涉及包含病毒,细菌,藻类,真菌,原生动物和美唑烷的大量多样性。然而,到目前为止尚未描述Periphyton的总生物多样性。在这项研究中,我们使用Metagenomics从瑞典西海岸的海洋环境中表征Periphyton社区。虽然我们发现了与原核相比的约10倍的真核rRNA标记基因序列,但整个基于毕业组的相似性搜索表明,细菌构成了这些生物膜中最丰富的植物。我们表明海洋植物海水植物包括一系列异养和光养生物。异养细菌,包括大多数植物植物和细菌,以及真核宏观无脊椎动物占据植物高新水。光营养基团包含蓝藻和α-植物基因族菌属的rosobacter,其次是不同的微藻和宏观藻类。我们还评估了将这些社区倾向于附加的生活方式的代谢途径。 Periphyton生物膜生物膜的生物膜形式的功能指标涉及编码催化细胞外聚合物物质的生产和降解的酶的基因,主要是含有淀粉和糖原样网状物的复合糖的形式。在Metagenome中检测到278种不同的转运蛋白的基因,构成最丰富的蛋白质复合物。最后,检测到编码参与厌氧途径的酶的基因,例如丧失硝化和甲状腺发生,表明生物膜内的厌氧或低氧微区存在。

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