The hyperthermophilic archaeon Pyrococcus furiosus utilizes environmental iron sulfide cluster complexes as an iron source
Iron is an essential nutrient for almost all known organisms, but in aerobic, neutral pH environments, it is present primarily as precipitated oxyhydroxide minerals. In contrast, in anaerobic environments, iron can exist in its ferrous form (Fe 2+ ) and remain soluble. In sulfide-rich, anaerobic env...
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Veröffentlicht in: | Extremophiles : life under extreme conditions 2021-05, Vol.25 (3), p.249-256 |
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Sprache: | eng |
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Zusammenfassung: | Iron is an essential nutrient for almost all known organisms, but in aerobic, neutral pH environments, it is present primarily as precipitated oxyhydroxide minerals. In contrast, in anaerobic environments, iron can exist in its ferrous form (Fe
2+
) and remain soluble. In sulfide-rich, anaerobic environments, Fe
2+
and sulfide react to form iron sulfide cluster complexes of the form Fe
x
S
x
(FeS
aq
), which further condense to form the mineral mackinawite, which itself is partly soluble. However, the ability of microorganisms to utilize iron sulfide as an iron source is not known. Here, we show that the anaerobic, hyperthermophilic archaeon
Pyrococcus furiosus
can directly assimilate the iron in dissolved iron sulfide cluster complexes (FeS
aq
) without further dissolution to Fe
2+
. Growth is only inhibited in the presence of a Fe
2+
-specific chelator. The FeS
aq
that is utilized can be formed either by reaction of chelated Fe
2+
with sulfide or dissolved from mackinawite.
Pyrococcus furiosus
can utilize FeS
aq
larger than 3.5 kDa, or Fe
40
S
40
, and may actively aid in the dissolution of mackinawite to the assimilated FeS
aq
. A model for iron sulfide assimilation from an insoluble mineral is proposed. |
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ISSN: | 1431-0651 1433-4909 |
DOI: | 10.1007/s00792-021-01224-1 |