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首页> 外文期刊>Environmental microbiology >Revealing microbial functional activities in the Red Sea sponge Stylissa carteri by metatranscriptomics
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Revealing microbial functional activities in the Red Sea sponge Stylissa carteri by metatranscriptomics

机译:通过转录组学揭示红海海绵笔触中的微生物功能活性

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摘要

Sponges are important components of marine benthic environments and are associated with microbial symbionts that carry out ecologically relevant functions. Stylissa carteri is an abundant, low-microbial abundance species in the Red Sea. We aimed to achieve the functional and taxonomic characterization of the most actively expressed prokaryotic genes in S.carteri. Prokaryotic mRNA was enriched from sponge total RNA, sequenced using Illumina HiSeq technology and annotated using the metagenomics Rapid Annotation using Subsystem Technology (MG-RAST) pipeline. We detected high expression of archaeal ammonia oxidation and photosynthetic carbon fixation by members of the genus Synechococcus. Functions related to stress response and membrane transporters were among the most highly expressed by S.carteri symbionts. Unexpectedly, gene functions related to methylotrophy were highly expressed by gammaproteobacterial symbionts. The presence of seawater-derived microbes is indicated by the phylogenetic proximity of organic carbon transporters to orthologues of members from the SAR11 clade. In summary, we revealed the most expressed functions of the S.carteri-associated microbial community and linked them to the dominant taxonomic members of the microbiome. This work demonstrates the applicability of metatranscriptomics to explore poorly characterized symbiotic consortia and expands our knowledge of the ecologically relevant functions carried out by coral reef sponge symbionts.
机译:海绵是海洋底栖环境的重要组成部分,并与具有生态相关功能的微生物共生体相关。 Stylissa Carteri是红海中一种丰富的低微生物丰富物种。我们旨在实现链球菌中最活跃表达的原核基因的功能和分类学表征。从海绵总RNA中富集原核mRNA,使用Illumina HiSeq技术进行测序,并使用宏基因组学快速注释(使用子系统技术(MG-RAST)管道)进行注释。我们检测到的合成氨球菌属成员的古细菌氨氧化和光合碳固定的高表达。与应激反应和膜转运蛋白有关的功能是由卡特氏菌共生体最高表达的。出乎意料的是,γ-变形细菌共生体高表达与甲基营养相关的基因功能。有机碳转运蛋白与SAR11进化枝成员直系同源物的系统亲缘关系表明了海水来源的微生物的存在。总之,我们揭示了与链球菌相关的微生物群落最表达的功能,并将它们与微生物组的主要分类学成员联系起来。这项工作证明了超转录组学在探索特征较弱的共生共生体中的适用性,并扩展了我们对珊瑚礁海绵共生体所发挥的生态相关功能的认识。

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