Macrofaunal control of microbial community structure in continental margin sediments.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32576690.
- Also identified by DOI 10.1073/pnas.1917494117 and PMC identifier 7376573.
- Licence recorded as CC BY-NC-ND.
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Abstract
Through a process called "bioturbation," burrowing macrofauna have altered the seafloor habitat and modified global carbon cycling since the Cambrian. However, the impact of macrofauna on the community structure of microorganisms is poorly understood. Here, we show that microbial communities across bioturbated, but geochemically and sedimentologically divergent, continental margin sites are highly similar but differ clearly from those in nonbioturbated surface and underlying subsurface sediments. Solid- and solute-phase geochemical analyses combined with modeled bioturbation activities reveal that dissolved O<sub>2</sub> introduction by burrow ventilation is the major driver of archaeal community structure. By contrast, solid-phase reworking, which regulates the distribution of fresh, algal organic matter, is the main control of bacterial community structure. In nonbioturbated surface sediments and in subsurface sediments, bacterial and archaeal communities are more divergent between locations and appear mainly driven by site-specific differences in organic carbon sources.
Medical subject headings
- Geologic Sediments
- Microbiota