HR: 11:35h
AN: B22D-06 [Abstracts]
TI: Expression of Genes Involved in Iron and Sulfur Respiration in a Novel Thermophilic Crenarchaeon Isolated from Acid-Sulfate-Chloride Geothermal Systems
AU: * Kozubal, M
EM: mkozubal@gmail.com
AF: Thermal Biology Institute, LJ Hall
Montana State University, Bozeman, MT 59717, United States
AU: Macur, R
EM: rmacur@montana.edu
AF: Thermal Biology Institute, LJ Hall
Montana State University, Bozeman, MT 59717, United States
AU: Inskeep, W P
EM: binskeep@montana.edu
AF: Thermal Biology Institute, LJ Hall
Montana State University, Bozeman, MT 59717, United States
AB:
Acidic geothermal springs within Yellowstone National Park (YNP) provide an excellent opportunity to study
microbial populations and their relationship with geochemical processes such as redox cycling and
biomineralization of iron. Fourteen acid-sulfate-chloride (ASC) and acid-sulfate (AS) geothermal springs located
in (YNP) have been extensively characterized for aqueous chemistry, solid phase mineral deposition and
microbial diversity and distribution. The oxidation of Fe(II) with oxygen as an electron acceptor is exergonic under
these conditions, consequently, Fe(II) may be an important electron donor driving primary production in ASC and
AS habitats, and products of biomineralization (e.g. Fe[III]-oxides of varying crystallinity and structure, as well as
jarosite in some cases) are common in the outflow channels of these environments. Recently, we isolated a
novel Metallosphaera-like microorganism (Metallosphaera strain MK1) from an ASC spring in Norris Geyser
Basin, YNP. Clone libraries (16S rRNA gene) from multiple sites suggest that microorganisms closely related to
strain MK1 (between 98-100 percent similarity) dominate many spring locations between 55-80 C. The in situ
abiotic oxidation rate of Fe(II) has been shown to be very slow in these systems and Metallosphaera strain MK1
has been directly implicated in biotic Fe(II) oxidation.
Metallosphaera strain MK1 has been submitted for full genome sequencing and is yielding gene sequences
related to the terminal oxidases SOXABC and SOXM super-complex. In addition, sequences from a recently
characterized terminal oxidase FOX complex involved in Fe(II) and pyrite oxidation from Sulfolobus metallicus
have been found in Metallosphaera strain MK1. A protein complex analogous to Metallosphaera sedula has been
identified in strain MK1 and this complex has also been expressed in cells grown on pyrite and Fe(II). Other
sequences identified in Metallosphaera strain MK1 that are involved in respiration are the TQO complex
(thiosulfate:quinone oxidoreductase) related to the Acidianus ambivalens DOXAD complex and a sulfur reductase
(SRE) complex related to one found in Sulfolobus solfataricus and Acidianus ambivalens. Here we report on the
RNA expression of seven gene sequences from each of the above mentioned complexes for Metallosphaera
strain MK1 grown aerobically on pyrite, sulfur, Fe(II)-ferrihydrite, and anaerobically with yeast extract and sulfur. In
addition, expression studies are also compared to in situ samples collected from the geothermal Fe-mats.
DE: 0414 Biogeochemical cycles, processes, and modeling (0412, 0793, 1615, 4805, 4912)
DE: 0419 Biomineralization
DE: 0456 Life in extreme environments
DE: 0463 Microbe/mineral interactions
DE: 0465 Microbiology: ecology, physiology and genomics (4840)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting