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Spatial Heterogeneity in Methane Biogeochemistry and Prokaryotic Community Structure in Sub‐Arctic Waterbodies in Northern Canada
Article Dans Une Revue Environmental Microbiology Année : 2025 Spatial Heterogeneity in Methane Biogeochemistry and Prokaryotic Community Structure in Sub‐Arctic Waterbodies in Northern Canada Fichier principal 46-Szylit_2025_Spatial Heterogeneity Methane Biogeochemistry and Community_subarctic Canada.pdf (4.86 Mo) Télécharger le fichier hal-05456307 , version 1 (13-01-2026) Arthur Szylit, Urania Christaki, Maialen Barret, Léa Cabrol, Laure Gandois, et al..
Spatial Heterogeneity in Methane Biogeochemistry and Prokaryotic Community Structure in Sub‐Arctic Waterbodies in Northern Canada
1 Introduction High-latitude regions are warming up to four times faster than the global average on Earth (Rantanen et al. 2022). Warming affects the distribution of aquatic ecosystems (Smith et al. 2005; Shugar et al. 2020) and influences their functioning by favouring autotrophic and heterotrophic production in these regions (Saros et al. 2023). Moreover, high latitudes host the largest number of lakes in the world as well as the most extensive lake surface areas (Verpoorter et al. 2014).
Carbon nanotubes alter agrosystem multifunctionality
Carbon nanotubes alter agrosystem multifunctionality Since the discovery of the potential of carbon nanotubes (CNTs) in agriculture to improve crop yield, many studies have been conducted to understand which effects CNTs could have on agrosystem components. However, to date, very little is known about their impacts on ecosystem functions such as biogeochemical cycles or primary production and consequently on the multifunctionality of agrosystems.
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