Proceedings of the National Academy of Sciences, June 22
The thawing of permafrost has destabilized bacterial and fungal networks in the Qinghai-Tibet Plateau, reducing their connectedness and complexity by exposing them to harsh high-altitude environmental conditions. While higher temperatures normally stimulate microbial growth, temperature increases that induce permafrost degradation reduce water, oxygen, and nutrient availability to local microorganisms. The loss of microbial communities due to permafrost degradation could lead to cascading changes in Himalayan ecosystem dynamics, and negatively impact the global carbon cycle. Authors suggest that more work is needed to investigate the consequences of this ongoing loss of stable microbial communities on carbon emissions and feedbacks.
Dear Friends of the Cryosphere Pavilion and Cryosphere Capsule Readers! We are happy to announce…
Nature Communications, 21 July 2026 Rising sea levels driven by ocean warming and ice sheet…
Journal of Geophysical Research: Oceans, 26 June 2026 East Antarctica has long been considered less…
Geophysical Research Letters, 9 July 2026 Antarctic Bottom Water (AABW) is the cold, dense water…
PNAS, 20 July 2026 After several years in the early 2020s when Arctic winter sea…
Nature Communications, 16 July 2026 Temporarily exceeding global warming targets increases the risk of long-lasting…