Articles | Volume 23, issue 14
https://doi.org/10.5194/bg-23-5239-2026
https://doi.org/10.5194/bg-23-5239-2026
Research article
 | 
31 Jul 2026
Research article |  | 31 Jul 2026

Bacterial community composition changes independently of soil edaphic parameters following localized permafrost disturbance

Patrick Neuberger, Alireza Saidi-Mehrabad, Duane Froese, and Brian Lanoil

Viewed

Total article views: 5,863 (including HTML, PDF, and XML)
HTML PDF XML Total Supplement BibTeX EndNote
4,596 1,013 254 5,863 414 227 342
  • HTML: 4,596
  • PDF: 1,013
  • XML: 254
  • Total: 5,863
  • Supplement: 414
  • BibTeX: 227
  • EndNote: 342
Views and downloads (calculated since 31 Mar 2025)
Cumulative views and downloads (calculated since 31 Mar 2025)

Viewed (geographical distribution)

Total article views: 5,863 (including HTML, PDF, and XML) Thereof 5,810 with geography defined and 53 with unknown origin.
Country # Views %
  • 1
1
 
 
 
 
Latest update: 22 Aug 2026
Download
Short summary
Permafrost is at increased risk of thaw due to climate change and anthropogenic disturbances. As permafrost thaws, the microbiomes within these systems may become more active and change in composition, releasing greenhouse gases such as CO2 and CH4. In this study, we determined that permafrost thaw caused by road construction caused permafrost microbiomes to become more similar to surface soils, which has implications for greenhouse gas modelling.
Share
Altmetrics
Final-revised paper
Preprint