Marine sediments host a vast deep biosphere, yet how microorganisms persist under severe energy limitation and govern long-term organic carbon (OC) preservation remains poorly understood.
multi-omics
Posted inAnalog Studies, Atmospheres, Climate, Weather, Biophysics, Biosignatures & Paleobiology, Extremeophiles and Extreme Environments, Genomics, Proteomics, Bioinformatics, Mars, Microbiology & Virology, Sample Return, Status Report
Active Responses Of Cyanobacterial Crusts Directly Exposed To The Extreme Stratospheric Environment
The stratosphere’s highly hostile environment offers a unique and relatively accessible setting to evaluate extremophilic adaptation for extraterrestrial colonization. The accelerating pace of the Martian project has underscored the need […]
Posted inAnalog Studies, Away Teams & Field Reports, Biogeochemical Cycles & Geobiology, Biosignatures & Paleobiology, Cryobiology, Extremeophiles and Extreme Environments, Gaia - Planetary Perspectives, Genomics, Proteomics, Bioinformatics, Habitable Zones, Microbiology & Virology, Nomenclature, Systematics, Natural History, Press Release, ROVs/Submersibles/Diving, Sample Return, Water/Hycean Worlds & Oceanography
HKUST Launches World’s First Deep-sea Multi-omics Resource Platform Empowering Global Research Into Biological Adaptation In Extreme Environments
The Hong Kong University of Science and Technology (HKUST), in collaboration with the Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), has launched the world’s first Deep Ocean Omics (DOO) […]
