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Psychrobacter sp. XL111, a novel bacterial species from hadal amphipods: genomic insights into environmental adaptation and biotechnological potential.

The hadal zone presents one of the most extreme environments on Earth. While amphipods dominate this realm, the adaptive mechanisms of their resident gut microbiota are not fully understood, which is ...

👤 Cui Yukun, Wan Yingying, Yan Shuqiang, X... 📰 未知期刊 📅 2026 👁 61 📚 9

Analysis of hypoxia-inducible factors in the deep-sea fish reveals genetic adaptation to hypoxic environments.

Oxygen levels in the ocean have decreased worldwide as a result of climate change and nutrient contamination, which has had a significant impact on marine ecosystems. Although deep-sea fish that resid...

👤 Ai Geng, Fang Wen-Yu, Song Ya-Nan, Xu Ha... 📰 未知期刊 📅 2026 👁 19 📚 9

Sulphur metabolism as a key factor in the evolution of environmental adaptation of Acidihalobacter.

This study compares predicted sulphur metabolism genes across four Acidihalobacter type strains and two metagenome-assembled genomes (MAGs), revealing genomic differences that appear to correspond to ...

👤 Vergara Eva, Khaleque Himel Nahreen, Nei... 📰 Microbial Genomics 📅 2026 👁 48 📚 8

Seeking the invisible microbial oases in extreme environments.

Deep-sea exploration traditionally focuses on visible animal oases, but extreme pressure in hadal zones (>60 MPa) unlocks metabolic capacities and supports flourishing microbiomes. Beyond the deep sea...

👤 Zhao Weishu, Xiao Xiang 📰 未知期刊 📅 2026 👁 17 📚 4
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