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Metagenomics reveals global-scale contrasts in nitrogen cycling and cyanobacterial light-harvesting mechanisms in glacier cryoconite.

Takumi MurakamiNozomu TakeuchiHiroshi MoriYuu HiroseArwyn EdwardsTristram Irvine-FynnZhongqin LiSatoshi IshiiTakahiro Segawa
Published in: Microbiome (2022)
Our genome-resolved metagenomics provides the first characterization of the taxonomic and metabolic diversities of cryoconite from contrasting geographical areas, highlighted by the distinct light-harvesting approaches of Cyanobacteria and nitrogen utilization between Polar and Asian cryoconite, and implies the existence of environmental controls on the assemblage of cryoconite communities. These findings deepen our understanding of the biodiversity and biogeochemical cycles of glacier ecosystems, which are susceptible to ongoing climate change and glacier decline, on a global scale. Video abstract.
Keyphrases
  • climate change
  • human health
  • energy transfer
  • high intensity
  • ionic liquid
  • risk assessment
  • dna methylation