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首页> 外文期刊>Environmental microbiology >Temporal covariation of epibacterial community and surface metabolome in the Mediterranean seaweed holobiont Taonia atomaria
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Temporal covariation of epibacterial community and surface metabolome in the Mediterranean seaweed holobiont Taonia atomaria

机译:地中海海藻淘麻群菌表现群落和表面代谢的颞会变焦

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An integrative multi-omics approach allowed monthly variations for a year of the surface metabolome and the epibacterial community of the Mediterranean Phaeophyceae Taonia atomaria to be investigated. The LC-MS-based metabolomics and 16S rDNA metabarcoding data sets were integrated in a multivariate meta-omics analysis (multi-block PLS-DA from the MixOmic DIABLO analysis) showing a strong seasonal covariation (Mantel test: p < 0.01). A network based on positive and negative correlations between the two data sets revealed two clusters of variables, one relative to the 'spring period' and a second to the 'summer period'. The 'spring period' cluster was mainly characterized by dipeptides positively correlated with a single bacterial taxon of the Alteromonadaceae family (BD1-7 clade). Moreover, 'summer' dominant epibacterial taxa from the second cluster (including Erythrobacteraceae, Rhodospirillaceae, Oceanospirillaceae and Flammeovirgaceae) showed positive correlations with few metabolites known as macroalgal antifouling defences [e.g. dimethylsulphoniopropionate (DMSP) and proline] which exhibited a key role within the correlation network. Despite a core community that represents a significant part of the total epibacteria, changes in the microbiota structure associated with surface metabolome variations suggested that both environment and algal host shape the bacterial surface microbiota.
机译:一体化多OMICS方法允许调查地表代谢的一年的每月变化和地中海氏肾病陶瓷的表皮群落进行调查。基于LC-MS的代谢组和16S rDNA地区沟通数据集被整合在多变量元 - OMICS分析中(来自混频态暗黑破坏组分析的多块PLS-DA),显示出强烈的季节变焦(Mantel Test:P <0.01)。基于两个数据集之间的正相关和负相关的网络揭示了两个变量集群,一个相对于“春季周期”和“夏季时期”的一帧。 “春季周期”群体主要是用替代曲米氏素(BD1-7 CLADE)的单一细菌分类呈正相关的二肽。此外,“夏季”中占二簇(包括茶杆菌,Rhodoshacterillaceae,Outcomospirillaceae和Flammeovirogeae)的显性表位分类群表现出与少量代谢物称为大型防污防御的阳性相关性[例如二甲基磺基丙酸酯(DMSP)和脯氨酸],其在相关网络中表现出关键作用。尽管核心社区代表了总关象菌的重要部分,但与表面代谢变异相关的微生物群结构的变化表明,环境和藻类宿主均为细菌表面微生物。

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