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海洋细菌在海水中培养时对腐胺和尸胺的降解。

Degradation of putrescine and cadaverine in seawater cultures by marine bacteria.

机构信息

Woods Hole Oceanographic Institution, Woods Hole, Massachusetts 02543.

出版信息

Appl Environ Microbiol. 1984 Apr;47(4):843-9. doi: 10.1128/aem.47.4.843-849.1984.

Abstract

Marine bacteria removed two diamines, putrescine and cadaverine, from coastal seawater supplemented only with these compounds. Batch cultures of natural bacterial communities were grown in filtered seawater (0.05 mum) supplemented with 500 mug of putrescine or cadaverine per liter. Increases in bacterial cell number were counted with an epifluorescence microscope after acridine orange staining. Removal of diamines from seawater was monitored by high-performance liquid chromatography. Diamines were removed from the seawater cultures within 48 h with no corresponding increase in bacterial yield, growth rate, or viability relative to control (unsupplemented) cultures. Shipboard experiments with open-ocean deep water (1,500 m) showed similar, if slower, removal of putrescine from seawater. Unlike uptake experiments with amino acids, labeled putrescine experiments indicated that most putrescine carbon is mineralized to CO(2) rather than assimilated by the bacteria. After growth in unsupplemented control cultures, the bacteria showed a significant potential to mineralize putrescine, indicating a general degradation potential for this compound by marine bacteria even if the compound was not present during growth. Indicators of metabolic activity such as glucose and glutamic acid uptake and mineralization were not affected by the presence of putrescine. This shows that at the concentrations added, the diamines are not toxic, and therefore detoxification was not the reason for degradation of the diamines by the bacteria.

摘要

海洋细菌从仅添加这些化合物的沿海海水中去除了两种二胺,腐胺和尸胺。在过滤海水(0.05 µm)中培养天然细菌群落的分批培养物,每升补充 500 µg 腐胺或尸胺。吖啶橙染色后用荧光显微镜计数细菌细胞数量的增加。通过高效液相色谱法监测海水中二胺的去除情况。在没有相应增加细菌产量、生长速率或相对于对照(未补充)培养物的生存能力的情况下,在 48 小时内从海水中去除了二胺。与氨基酸的吸收实验类似,如果从海水中去除腐胺的速度较慢,则在与开放海洋深水(1500 m)的船上实验中也显示出类似的情况。与标记腐胺的吸收实验不同,实验表明腐胺的大部分碳被矿化为 CO(2),而不是被细菌同化。在未补充对照培养物中生长后,细菌显示出腐胺矿化的显著潜力,表明海洋细菌即使在生长过程中不存在该化合物,也具有该化合物的一般降解潜力。葡萄糖和谷氨酸的摄取和矿化等代谢活性的指标不受腐胺的存在影响。这表明,在添加的浓度下,二胺没有毒性,因此细菌对二胺的降解不是解毒的原因。

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