Accès ouvert
2026
conference-abstract
OpenAlex
Mathilde Bourreau, Elsa Abs, Alexander B. Chase
Recent theory suggests that the evolutionary adaptation of soil microbial communities to climate change could significantly aggravate the currently predicted global soil carbon loss in response to global warming through the selection of gene variants affecting carbon-cycling traits (e.g. respiration, decomposition or …
fr, nl, us
(code pays fourni par la source)
Accès ouvert
2026
conference-abstract
OpenAlex
Xianjin He, Gaëlle Marmasse, Junxi Hu, Rebecca M. Varney et autres
The extent to which microbial processes control soil organic carbon (SOC) dynamics remains uncertain. Carbon use efficiency (CUE)—the fraction of assimilated carbon allocated to growth—has been used as a key parameter, but its relationship with SOC reflects carbon partitioning rather than the …
fr, cn, gb, se, au, de, us
(code pays fourni par la source)
Accès ouvert
2026
conference-abstract
OpenAlex
Erik Schwarz, Elsa Abs, Arjun Chakrawal, Luciana Chávez Rodríguez et autres
Turnover of soil organic matter (SOM) by microbes is an important step in the soil carbon cycle. As microbes are living organisms that interact with their environment and one another, microbial communities are not static but can adapt to various conditions through …
se, fr, us, nl, de
(code pays fourni par la source)
Accès ouvert
2026
conference-abstract
OpenAlex
Thomas Cortier, Elsa Abs
Soil microbial communities control the fate of the largest terrestrial organic carbon pool, and their decomposition and respiration dynamics are pivotal for predicting future climate feedbacks. Community diversity, functional complexity, and adaptive responses may substantially reshape projections of the global carbon cycle.Yet, …
fr, Maroc
(code pays fourni par la source)
Accès ouvert
2026
conference-abstract
OpenAlex
Elisa Richard, Elsa Abs
Soil microorganisms play a critical role in global carbon fluxes and shape local biogeochemical cycles through their vast functional diversity, yet it remains unclear how this diversity influences soil carbon fluxes at the global scale. For example, unlike plants, which are almost …
fr
(code pays fourni par la source)
Accès ouvert
2026
article
OpenAlex
Elsa Abs, Christoph Keuschnig, Pierre Amato, Chris Bowler et autres
Increased human impacts on Earth systems are radically altering biogeochemical cycles. While long-term environmental observatories and Earth System Models (ESMs) provide valuable insights into the mechanisms of nutrient dynamics, their performance is limited at the fine spatial scales controlled by the functional …
fr, de, se, us, Afrique du Sud, fi
(code pays fourni par la source)