Tank, M.


Publications
2

Anoxygenic photosynthesis and iron–sulfur metabolic potential ofChlorobiapopulations from seasonally anoxic Boreal Shield lakes

Citation
Tsuji et al. (2020). The ISME Journal 14 (11)
Names
“Ca. Chlorobium canadense”
Abstract
AbstractAquatic environments with high levels of dissolved ferrous iron and low levels of sulfate serve as an important systems for exploring biogeochemical processes relevant to the early Earth. Boreal Shield lakes, which number in the tens of millions globally, commonly develop seasonally anoxic waters that become iron rich and sulfate poor, yet the iron–sulfur microbiology of these systems has been poorly examined. Here we use genome-resolved metagenomics and enrichment cultivation to explore
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Anoxygenic phototrophicChloroflexotamember uses a Type I reaction center

Citation
Tsuji et al. (2020).
Names
“Ca. Chlorohelix allophototropha” “Ca. Chlorohelix” “Ca. Chloroheliaceae” “Ca. Chloroheliales” Ca. Chlorohelix allophototropha
Abstract
AbstractScientific exploration of phototrophic bacteria over nearly 200 years has revealed large phylogenetic gaps between known phototrophic groups that limit understanding of how phototrophy evolved and diversified. Through Boreal Shield lake water incubations, we cultivated an anoxygenic phototrophic bacterium from a previously unknown order within theChloroflexotaphylum that represents a highly novel transition form in the evolution of photosynthesis. Unlike all other known phototrophs, this
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