SHEWANELLA: NOVEL STRATEGIES FOR ANAEROBIC RESPIRATION
Thomas J. DiChristina, David J. Bates, Justin L. Burns, Jason R. Dale, Amanda N. Payne
Abstract
Thomas J. DiChristina, David J. Bates, Justin L. Burns, Jason R. Dale, Amanda N. Payne
Abstract
Abstract Metal-reducing members of the genus Shewanella are important components of the microbial community residing in redox-strati.ed freshwater and marine environments. Metal-reducing gram-negative bacteria such as Shewanella, however, are presented with a unique physiological challenge: they are required to respire anaerobically on terminal electron acceptors which are either highly insoluble (Fe(III)- and Mn(IV)-oxides) and reduced to soluble end-products or highly soluble (U(VI) and Tc(VII)) and reduced to insoluble end-products. To overcome physiological problems associated with metal solubility, metal-respiring Shewanella are postulated to employ a variety of novel respiratory strategies not found in other gram-negative bacteria which respire on soluble electron acceptors such as O2, NO3 and SO4. The following chapter highlights the latest findings on the molecular mechanism of Fe(III), U(VI) and Tc(VII) reduction by Shewanella, with particular emphasis on electron transport chain physiology.
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Abstract Metal-reducing members of the genus Shewanella are important components of the microbial community residing in redox-strati.ed freshwater and marine environments. Metal-reducing gram-negative bacteria such as Shewanella, however, are presented with a unique physiological challenge: they are required to respire anaerobically on terminal electron acceptors which are either highly insoluble (Fe(III)- and Mn(IV)-oxides) and reduced to soluble end-products or highly soluble (U(VI) and Tc(VII)) and reduced to insoluble end-products. To overcome physiological problems associated with metal solubility, metal-respiring Shewanella are postulated to employ a variety of novel respiratory strategies not found in other gram-negative bacteria which respire on soluble electron acceptors such as O2, NO3 and SO4. The following chapter highlights the latest findings on the molecular mechanism of Fe(III), U(VI) and Tc(VII) reduction by Shewanella, with particular emphasis on electron transport chain physiology.
Key concepts: Shewanella, Anaerobic exercise, Anaerobic respiration, Microbiology, Chemistry, Respiration, Shewanella oneidensis, Biology