2023
DOI: 10.1186/s40168-023-01601-2
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Microbe-driven elemental cycling enables microbial adaptation to deep-sea ferromanganese nodule sediment fields

Abstract: Background Ferromanganese nodule-bearing deep-sea sediments cover vast areas of the ocean floor, representing a distinctive habitat in the abyss. These sediments harbor unique conditions characterized by high iron concentration and low degradable nutrient levels, which pose challenges to the survival and growth of most microorganisms. While the microbial diversity in ferromanganese nodule-associated sediments has been surveyed several times, little is known about the functional capacities of th… Show more

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Cited by 19 publications
(1 citation statement)
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References 126 publications
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“…The datasets of 53 publicly metagenomes were collected from the National Center for Biotechnology Information-Sequence Read Archive (NCBI-SRA) [21,22,27,[55][56][57][58][59][60] and were specifically chosen for biofilms formed on materials. These samples were categorized into eight different types of materials: carbon steel (Cs, n = 21), aluminum (Al, n = 3), zinc (Zn, n = 9), titanium (Ti, n = 2), copper (Cu, n = 1), stainless steel (SS, n = 2), reinforced concrete (Rc, n = 8), and ferromanganese nodule fields (Fnf, n = 7).…”
Section: Metagenomic Data Collectionmentioning
confidence: 99%
“…The datasets of 53 publicly metagenomes were collected from the National Center for Biotechnology Information-Sequence Read Archive (NCBI-SRA) [21,22,27,[55][56][57][58][59][60] and were specifically chosen for biofilms formed on materials. These samples were categorized into eight different types of materials: carbon steel (Cs, n = 21), aluminum (Al, n = 3), zinc (Zn, n = 9), titanium (Ti, n = 2), copper (Cu, n = 1), stainless steel (SS, n = 2), reinforced concrete (Rc, n = 8), and ferromanganese nodule fields (Fnf, n = 7).…”
Section: Metagenomic Data Collectionmentioning
confidence: 99%