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- W2521693670 abstract "Five marine bacteria ("Pseudoalteromonas spiralis", Te-2-2; "Pseudoalteromonas telluritireducens", Se-1-2-red; "Erythrobacter litoralis", T4; "Citromicrobium bathyomarinum", JF1; and a "Shewanella frigidimarina relative", strain ER-Te-48), possessing both very high level aerobic resistance and the ability to reduce TeO_3^(2-) to elemental Te were investigated to better understand their interaction with this metalloid oxide. It was found that reduction can be greatly influenced by several factors including carbon source, pH and aeration. The physiological and metabolic response of cells to tellurite differs between strains. In its presence, versus absence, cellular biomass varied, yielding relatively similar or decreased amounts of protein. ATP production was affected in the same manner, with similar and decreased levels in cells harvested from media containing TeO_3^(2-). Three different strategies for tellurite reduction, which required de novo synthesis of a reductase, were observed. Strain ER-Te-48 employed a periplasmic reductase, while Te-2-2, T4 and JF1 required an intact cytoplasmic membrane for reduction. Lastly, Se-1-2-red was only able to reduce as an undisturbed whole cell culture." @default.
- W2521693670 created "2016-09-30" @default.
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- W2521693670 date "2014-09-30" @default.
- W2521693670 modified "2023-09-28" @default.
- W2521693670 title "The Impact of Tellurite on Highly Resistant Marine Bacteria and Strategies for Its Reduction" @default.
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