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Genome Sequences of 72 Bacterial Strains Isolated from Ectocarpus subulatus: A Resource for Algal Microbiology

机译:分离自赤芝的72个细菌菌株的基因组序列:藻类微生物资源。

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摘要

Brown algae are important primary producers and ecosystem engineers in the ocean, and has been established as a laboratory model for this lineage. Like most multicellular organisms, is associated with a community of microorganisms, a partnership frequently referred to as holobiont due to the tight interconnections between the components. Although genomic resources for the algal host are well established, its associated microbiome is poorly characterized from a genomic point of view, limiting the possibilities of using these types of data to study host–microbe interactions. To address this gap in knowledge, we present the annotated draft genome sequences of seventy-two cultivable -associated bacteria. A screening of gene clusters related to the production of secondary metabolites revealed terpene, bacteriocin, NRPS, PKS-t3, siderophore, PKS-t1, and homoserine lactone clusters to be abundant among the sequenced genomes. These compounds may be used by the bacteria to communicate with the host and other microbes. Moreover, detoxification and provision of vitamin B pathways have been observed in most sequenced genomes, highlighting potential contributions of the bacterial metabolism toward host fitness and survival. The genomes sequenced in this study form a valuable resource for comparative genomic analyses and evolutionary surveys of alga-associated bacteria. They help establish as a model for brown algal holobionts and will enable the research community to produce testable hypotheses about the molecular interactions within this complex system.
机译:褐藻是海洋中重要的初级生产者和生态系统工程师,已经被确立为该谱系的实验室模型。像大多数多细胞生物一样,它与微生物群落相关,由于组分之间的紧密互连,这种伙伴关系通常被称为“全生命周期”。尽管藻类宿主的基因组资源已经建立,但从基因组的角度来看,其相关微生物组的特征很差,限制了使用这些类型的数据研究宿主与微生物相互作用的可能性。为了解决这一知识差距,我们提出了72种可培养细菌的注释基因组序列草案。筛选与次级代谢产物产生相关的基因簇,发现在测序的基因组中,萜烯,细菌素,NRPS,PKS-t3,铁载体,PKS-t1和高丝氨酸内酯簇丰富。这些化合物可被细菌用来与宿主和其他微生物通讯。此外,在大多数测序的基因组中都观察到了排毒和维生素B通路的提供,突出了细菌代谢对宿主健康和生存的潜在贡献。在这项研究中测序的基因组为比较基因组分析和藻类相关细菌的进化调查提供了宝贵的资源。它们有助于建立棕色藻类全生命周期生物的模型,并使研究界能够就该复杂系统中的分子相互作用产生可检验的假设。

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