ArticleBMC microbiology2025
Genomic evidence on the distribution and ecological function of Pseudomonas in hadal zone.
Article in BMC microbiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
What it found
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Who cites it
6 citing papers in PubMed.
- Light-induced carotenogenesis enhances growth and high hydrostatic pressure tolerance in a deep-sea bacterium by reducing intracellular ROS.Applied and environmental microbiology · 2026Article
- Redox-stratified macromolecule degradation supports microbial survival in the oligotrophic Kermadec Trench sediments.Nature communications · 2026Article
- Effects of dietary chitosan oligosaccharide on juvenile grass carp: Insight from the intestinal microbiota and metabolism.Journal of fish biology · 2026Article
- Spatiotemporal dynamics of culturable endophytic microorganisms inFrontiers in plant science · 2026Article
- D-amino acid metabolic versatility as a common adaptive strategy in the Mariana Trench microbiome.mSystems · 2025Article
- Extensive halogenated organic compound reservoirs and active microbial dehalogenation in Mariana Trench sediments.The ISME journal · 2025Article
Corrections and comments
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Authors and funding
4 authors.
Funding
Abstract
The hadal zone is the deepest region on Earth. It serves as a depositional zone for the sinking matter from surface ocean and continental margin, aided by its unique V-shaped structure. Due to extreme depth (over 6000 m), normally only organic matter with low degradability typically reaches the bottom of the trench. Concurrently, reports have indicated highly active carbon turnover and dense bacterial cells in the Mariana Trench. There remains a cognitive gap in understanding the connection between this phenomenon and the microbial taxa along with their metabolic activities. Here, we surveyed the Pseudomonas, one of the most widely distributed bacterial genera on Earth. The result revealed widespread distribution of Pseudomonas in the hadal zones. We obtained 21 metagenome-assembled genomes (MAGs) from seawater and sediment samples of the Mariana Trench, including three novel species. Comparative genomic analysis showed that hadal Pseudomonas possess more unique ortholog groups of genes related to energy generation and substances transport, distinct from those in other marine zones. These bacteria exhibit the ability to utilize diverse electron acceptors and accumulate compatible solutes, indicating two key strategies for adaptation for high hydrostatic pressure conditions. Furthermore, predicted genomic capabilities suggest that Pseudomonas could decompose various components of organic matter, particularly aromatics, as supported by metatranscriptomic datasets. These findings significantly enhance our understanding of Pseudomonas diversity and metabolic potential, providing valuable insights into the carbon and nitrogen cycles in hadal trench ecosystems.
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Registered trials
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