Bryant, Donald A.


Publications
8

Chloracidobacterium thermophilum gen. nov., sp. nov.: an anoxygenic microaerophilic chlorophotoheterotrophic acidobacterium

Citation
Tank, Bryant (2015). International Journal of Systematic and Evolutionary Microbiology 65 (Pt_5)
Names
Ca. Chloracidobacterium Ca. Chloracidobacterium thermophilum
Abstract
A novel anoxygenic photoheterotrophic member of the phylum Acidobacteria , Chloracidobacterium thermophilum strain B sp. nov., was isolated from a cyanobacterial enrichment culture derived from microbial mats associated with Octopus Spring, Yellowstone National Park, WY. C. thermophilum sp. nov. was a Gram-stain-negative rod (diameter, approximately 0.8–1.0 µm; variable length, approximately 2.5 µm), which for
Text

Complete genome of Candidatus Chloracidobacterium thermophilum, a chlorophyll‐based photoheterotroph belonging to the phylum Acidobacteria

Citation
Garcia Costas et al. (2012). Environmental Microbiology 14 (1)
Names
Ca. Chloracidobacterium thermophilum
Abstract
Summary Candidatus Chloracidobacterium thermophilum, which naturally inhabits microbial mats of alkaline siliceous hot springs in Yellowstone National Park, is the only known chlorophototroph in the phylum Acidobacteria . The Ca . C .  thermophilum genome was composed of two chromosomes (2 683 362 bp and 1 012 010 bp),
Text

Candidatus Chloracidobacterium thermophilum: An Aerobic Phototrophic Acidobacterium

Citation
Bryant et al. (2007). Science 317 (5837)
Names
Ca. Chloracidobacterium thermophilum Ca. Chloracidobacterium
Abstract
Only five bacterial phyla with members capable of chlorophyll (Chl)–based phototrophy are presently known. Metagenomic data from the phototrophic microbial mats of alkaline siliceous hot springs in Yellowstone National Park revealed the existence of a distinctive bacteriochlorophyll (BChl)–synthesizing, phototrophic bacterium. A highly enriched culture of this bacterium grew photoheterotrophically, synthesized BChls a and c under oxic conditions, and had chlorosomes and type 1 react
Text