In glacier-fed streams, ecological windows of opportunity allow complex microbial biofilms to develop and transiently form the basis of the food web, thereby controlling key ecosystem processes. Using metagenome-assembled genomes, we unravel strategies that allow biofilms to seize this opportunity in an ecosystem otherwise characterized by harsh environmental conditions. We observe a diverse microbiome spanning the entire tree of life including a rich virome. Various co-existing energy acquisition pathways point to diverse niches and the exploitation of available resources, likely fostering the establishment of complex biofilms during windows of opportunity. The wide occurrence of rhodopsins, besides chlorophyll, highlights the role of sola...
BACKGROUND: Evidence increasingly shows that stream ecosystems greatly contribute to global carbon f...
In proglacial floodplains, glacier recession promotes biogeochemical and ecological gradients across...
Evidence increasingly shows that stream ecosystems greatly contribute to global carbon fluxes. This ...
Microorganisms dominate life in cryospheric ecosystems. In glacier-fed streams (GFSs), ecological wi...
Phototrophic biofilms are ubiquitous in freshwater and marine environments where they are critical f...
Phototrophic biofilms are ubiquitous in freshwater and marine environments where they are critical f...
While glaciers become increasingly recognised as a habitat for diverse and active microbial communit...
Abstract Background Glaciers harbor diverse microorganisms adapted to extreme conditions with high r...
The shrinking of glaciers is among the most iconic consequences of climate change. Despite this, the...
Glaciers are highly responsive to global warming and important agents of landscape heterogeneity. Wh...
Biofilms are dynamic players in biogeochemical cycling in running waters and are subjected to enviro...
Glacier-fed streams (GFSs) exhibit near-freezing temperatures, variable flows, and often high turbid...
Glaciers harbour diverse microorganisms, which upon ice melt can be released downstream. In glacier-...
Background: Evidence increasingly shows that stream ecosystems greatly contribute to global carbon f...
Alpine headwaters are threatened by global warming which is accelerating glacier and permafrost thaw...
BACKGROUND: Evidence increasingly shows that stream ecosystems greatly contribute to global carbon f...
In proglacial floodplains, glacier recession promotes biogeochemical and ecological gradients across...
Evidence increasingly shows that stream ecosystems greatly contribute to global carbon fluxes. This ...
Microorganisms dominate life in cryospheric ecosystems. In glacier-fed streams (GFSs), ecological wi...
Phototrophic biofilms are ubiquitous in freshwater and marine environments where they are critical f...
Phototrophic biofilms are ubiquitous in freshwater and marine environments where they are critical f...
While glaciers become increasingly recognised as a habitat for diverse and active microbial communit...
Abstract Background Glaciers harbor diverse microorganisms adapted to extreme conditions with high r...
The shrinking of glaciers is among the most iconic consequences of climate change. Despite this, the...
Glaciers are highly responsive to global warming and important agents of landscape heterogeneity. Wh...
Biofilms are dynamic players in biogeochemical cycling in running waters and are subjected to enviro...
Glacier-fed streams (GFSs) exhibit near-freezing temperatures, variable flows, and often high turbid...
Glaciers harbour diverse microorganisms, which upon ice melt can be released downstream. In glacier-...
Background: Evidence increasingly shows that stream ecosystems greatly contribute to global carbon f...
Alpine headwaters are threatened by global warming which is accelerating glacier and permafrost thaw...
BACKGROUND: Evidence increasingly shows that stream ecosystems greatly contribute to global carbon f...
In proglacial floodplains, glacier recession promotes biogeochemical and ecological gradients across...
Evidence increasingly shows that stream ecosystems greatly contribute to global carbon fluxes. This ...