4.5 Article

Exploring microbial diversity in Greenland Ice Sheet supraglacial habitats through culturing-dependent and -independent approaches

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FEMS MICROBIOLOGY ECOLOGY
卷 99, 期 11, 页码 -

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OXFORD UNIV PRESS
DOI: 10.1093/femsec/fiad119

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amplicons; Greenland Ice Sheet; in situ culturing; isolates; MAGs; metagenome

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The microbiome of Greenland Ice Sheet supraglacial habitats was investigated using a combination of culturing-dependent and -independent approaches. The study found that high-throughput sequencing provided insights into dominant community members, while isolates obtained through culturing did not represent these dominant taxa. The study also demonstrated the usefulness of metagenome SSU rRNA genes in reflecting overall community diversity.
The microbiome of Greenland Ice Sheet supraglacial habitats is still underinvestigated, and as a result there is a lack of representative genomes from these environments. In this study, we investigated the supraglacial microbiome through a combination of culturing-dependent and -independent approaches. We explored ice, cryoconite, biofilm, and snow biodiversity to answer: (1) how microbial diversity differs between supraglacial habitats, (2) if obtained bacterial genomes reflect dominant community members, and (3) how culturing versus high throughput sequencing changes our observations of microbial diversity in supraglacial habitats. Genomes acquired through metagenomic sequencing (133 high-quality MAGs) and whole genome sequencing (73 bacterial isolates) were compared to the metagenome assemblies to investigate abundance within the total environmental DNA. Isolates obtained in this study were not dominant taxa in the habitat they were sampled from, in contrast to the obtained MAGs. We demonstrate here the advantages of using metagenome SSU rRNA genes to reflect whole-community diversity. Additionally, we demonstrate a proof-of-concept of the application of in situ culturing in a supraglacial setting. Various culturing-dependent and -independent methods were used to explore microbial diversity on the Greenland Ice Sheet, highlighting the benefits of combining different approaches to capture genomic diversity.

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