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Effects of the Metalloid Oxyanion Tellurite (TeO32−) on Growth Characteristics of the Phototrophic Bacterium Rhodobacter capsulatus

机译:准金属氧氰基碲酸盐(TeO32-)对光养细菌荚膜红细菌细菌生长特性的影响

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摘要

This work examines the effects of potassium tellurite (K2TeO3) on the cell viability of the facultative phototroph Rhodobacter capsulatus. There was a growth mode-dependent response in which cultures anaerobically grown in the light tolerate the presence of up to 250 to 300 μg of tellurite (TeO32−) per ml, while dark-grown aerobic cells were inhibited at tellurite levels as low as 2 μg/ml. The tellurite sensitivity of aerobic cultures was evident only for growth on minimal salt medium, whereas it was not seen during growth on complex medium. Notably, through the use of flow cytometry, we show that the cell membrane integrity was strongly affected by tellurite during the early growth phase (≤50% viable cells); however, at the end of the growth period and in parallel with massive tellurite intracellular accumulation as elemental Te0 crystallites, recovery of cytoplasmic membrane integrity was apparent (≥90% viable cells), which was supported by the development of a significant membrane potential (Δψ = 120 mV). These data are taken as evidence that in anaerobic aquatic habitats, the facultative phototroph R. capsulatus might act as a natural scavenger of the highly soluble and toxic oxyanion tellurite.
机译:这项工作检查了碲化钾(K2TeO3)对兼性光养荚膜红细菌细菌细胞活力的影响。存在依赖于生长模式的反应,其中在厌氧条件下厌氧培养的培养物可耐受每毫升高达250至300μg的亚碲酸盐(TeO3 2-)的存在,而深色生长的需氧细胞在低至2μg/ ml的亚碲酸盐水平上被抑制。有氧培养物对亚碲酸盐的敏感性仅对于在最小盐培养基上的生长才明显,而在复杂培养基上的生长过程中未见。值得注意的是,通过使用流式细胞仪,我们证明了在早期生长阶段(≤50%活细胞),碲酸盐会严重影响细胞膜的完整性。然而,在生长期结束时,伴随着大量的亚碲酸盐细胞内积累为元素Te 0 微晶,细胞质膜完整性的恢复是明显的(≥90%活细胞),这得到了支持。产生明显的膜电位(Δψ= 120 mV)。这些数据被用作证据,证明在厌氧的水生生物栖息地中,兼性的光养荚膜红单胞菌可能充当高溶解性和高毒性的氧阴离子亚碲酸盐的天然清除剂。

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