Structure of the rare archaeal biosphere and seasonal dynamics of active ecotypes in surface coastal waters
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Summary
The findings suggest thatarchaeal diversity could be associated with distinct metabolisms or life strategies, and that the rare archaeal biosphere is composed of a complex assortment of organisms with distinct histories that affect their potential for growth.
- Type
- article
- Published
- 2013-03-27
- Cited by
- 237
- References
- 60
- Access
- Open access
- OpenAlex
- https://openalex.org/W1963981961
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41609445
Keywords
Thaumarchaeota, Archaea, Euryarchaeota, Biology, Ecology
References
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Cited by
- Single bacterial strain capable of significant contribution to carbon cycling in the surface ocean
- Linking activity and function to ecosystem dynamics in a coastal bacterioplankton community
- Is Planktonic Diversity Well Recorded in Sedimentary DNA? Toward the Reconstruction of Past Protistan Diversity
- Deep ocean prokaryotic communities are remarkably malleable when facing long‐term starvation
- Ecological Divergence Among Extremely Close Relatives in Bacillus
- A read-filtering algorithm for high-throughput marker-gene studies that greatly improves OTU accuracy
- Régulation des cycles biogéochimiques par les communautés microbiennes pélagiques sous influence de perturbations physiques à méso-échelle
- Capturing prokaryotic dark matter genomes.
- Metabolic characterization of a model heterotrophic bacterium capable of significant chemical alteration of marine dissolved organic matter
- High Salinity Stabilizes Bacterial Community Composition and Activity Through Time
- Response of the rare biosphere to environmental stressors in a highly diverse ecosystem (Zodletone spring, OK, USA)
- Depth shapes α- and β-diversities of microbial eukaryotes in surficial sediments of coastal ecosystems.
- Competitive strategies differentiate closely related species of marine actinobacteria
- Disentangling seasonal bacterioplankton population dynamics by high-frequency sampling.
- Contribution of Marine Group II Euryarchaeota to cyclopentyl tetraethers in the Pearl River estuary and coastal South China Sea: impact on the TEX 86 paleothermometer
- Temporal dynamics of active Archaea in oxygen-depleted zones of two deep lakes.
- Planktonic Euryarchaeota are a significant source of archaeal tetraether lipids in the ocean
- Resuscitation of the rare biosphere contributes to pulses of ecosystem activity
- Temporal Dynamics of Active Prokaryotic Nitrifiers and Archaeal Communities from River to Sea
- Ecophysiology of uncultivated marine euryarchaea is linked to particulate organic matter
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