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简单或复杂的有机底物会抑制两种β-Proteobacteria 菌株中亚砷酸盐的氧化和 aioA 基因的表达。

Simple or complex organic substrates inhibit arsenite oxidation and aioA gene expression in two β-Proteobacteria strains.

机构信息

BRGM, 3 Avenue Claude Guillemin, 45060, Orléans, France; BRGM, ISTO, UMR 7327, BP 36009, 45060, Orléans, France.

BRGM, 3 Avenue Claude Guillemin, 45060, Orléans, France.

出版信息

Res Microbiol. 2020 Jan-Feb;171(1):13-20. doi: 10.1016/j.resmic.2019.09.006. Epub 2019 Sep 25.

Abstract

Microbial transformation of arsenic species and their interaction with the carbon cycle play a major role in the mobility of this toxic metalloid in the environment. The influence of simple or complex organic substrates on arsenic bio-oxidation was studied using two bacterial strains: one - the arsenivorans strain of Thiomonas delicata - is able to use AsIII as sole energy source; the other, Herminiimonas arsenicoxydans, is not. Experiments were performed at two AsIII concentrations (75 and 2 mg/L). At 75 mg/L As, for both strains, expression of aioA gene decreased when yeast extract concentration was raised from 0.2 to 1 g/L. At 2 mg/L As, the presence of either yeast extract or simple (succinate or acetate) organic substrates in the medium during bacterial growth decreased the AsIII-oxidation rate by both strains. When added specifically during oxidation test, yeast extract but not simple organic substrates seems to have a negative effect on AsIII oxidation. Taken together, results confirm the negative influence of simple or complex organic substrates on the kinetics of microbial AsIII oxidation and suggest that this effect results from different mechanisms depending on the type of organic substrate. Further, for the first time, the influence of a complex organic substrate, yeast extract, on aioA gene expression has been evidenced.

摘要

砷物种的微生物转化及其与碳循环的相互作用是这种有毒类金属在环境中迁移的主要因素。本研究采用两种细菌菌株研究了简单或复杂有机底物对砷生物氧化的影响:一种是能够将 AsIII 作为唯一能源的 Thiomonas delicata 砷还原菌;另一种是不能利用 AsIII 的 Herminiimonas arsenicoxydans。在两种 AsIII 浓度(75 和 2mg/L)下进行了实验。在 75mg/L As 下,对于两种菌株,当酵母提取物浓度从 0.2 增加到 1g/L 时,aioA 基因的表达减少。在 2mg/L As 下,在细菌生长过程中培养基中存在酵母提取物或简单(琥珀酸盐或乙酸盐)有机底物都会降低两种菌株的 AsIII 氧化速率。当在氧化试验中专门添加时,酵母提取物而不是简单的有机底物似乎对 AsIII 氧化有负面影响。总之,结果证实了简单或复杂有机底物对微生物 AsIII 氧化动力学的负面影响,并表明这种影响是由不同的机制引起的,具体取决于有机底物的类型。此外,本研究首次证明了复杂有机底物酵母提取物对 aioA 基因表达的影响。

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