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Roles of UndA and MtrC of Shewanella putrefaciens W3-18-1 in iron reduction.


ABSTRACT:

Background

The completion of genome sequencing in a number of Shewanella species, which are most renowned for their metal reduction capacity, offers a basis for comparative studies. Previous work in Shewanella oneidensis MR-1 has indicated that some genes within a cluster (mtrBAC-omcA-mtrFED) were involved in iron reduction. To explore new features of iron reduction pathways, we experimentally analyzed Shewanella putrefaciens W3-18-1 since its gene cluster is considerably different from that of MR-1 in that the gene cluster encodes only four ORFs.

Results

Among the gene cluster, two genes (mtrC and undA) were shown to encode c-type cytochromes. The ?mtrC deletion mutant revealed significant deficiencies in reducing metals of Fe2O3, ?-FeO(OH), ?-FeO(OH), ferric citrate, Mn(IV) and Co(III), but not organic compounds. In contrast, no deficiency of metal reduction was observed in the ?undA deletion mutant. Nonetheless, undA deletion resulted in progressively slower iron reduction in the absence of mtrC and fitness loss under the iron-using condition, which was indicative of a functional role of UndA in iron reduction.

Conclusions

These results provide physiological and biochemical evidences that UndA and MtrC of Shewanella putrefaciens W3-18-1 are involved in iron reduction.

SUBMITTER: Yang Y 

PROVIDER: S-EPMC4222724 | biostudies-literature | 2013 Nov

REPOSITORIES: biostudies-literature

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Roles of UndA and MtrC of Shewanella putrefaciens W3-18-1 in iron reduction.

Yang Yunfeng Y   Chen Jingrong J   Qiu Dongru D   Zhou Jizhong J  

BMC microbiology 20131125


<h4>Background</h4>The completion of genome sequencing in a number of Shewanella species, which are most renowned for their metal reduction capacity, offers a basis for comparative studies. Previous work in Shewanella oneidensis MR-1 has indicated that some genes within a cluster (mtrBAC-omcA-mtrFED) were involved in iron reduction. To explore new features of iron reduction pathways, we experimentally analyzed Shewanella putrefaciens W3-18-1 since its gene cluster is considerably different from  ...[more]

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