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本文引用的文献

1
Effects of Glucose Concentrations on Cadmium, Copper, Mercury, and Zinc Toxicity to a Klebsiella sp.葡萄糖浓度对 Klebsiella sp. 对镉、铜、汞和锌毒性的影响
Appl Environ Microbiol. 1988 Jul;54(7):1689-93. doi: 10.1128/aem.54.7.1689-1693.1988.
2
Effects of chemical speciation on the mineralization of organic compounds by microorganisms.化学形态对微生物矿化有机化合物的影响。
Appl Environ Microbiol. 1985 Aug;50(2):342-9. doi: 10.1128/aem.50.2.342-349.1985.
3
Effects of certain cadmium species on pure and litter populations of microorganisms.
Antonie Van Leeuwenhoek. 1980;46(2):161-7. doi: 10.1007/BF00444071.
4
The properties of citrate transport in membrane vesicles from Bacillus subtilis.枯草芽孢杆菌膜囊泡中柠檬酸盐转运的特性。
Eur J Biochem. 1983 Jul 15;134(1):151-6. doi: 10.1111/j.1432-1033.1983.tb07545.x.
5
Iron transport in Salmonella typhimurium: mutants blocked in the biosynthesis of enterobactin.鼠伤寒沙门氏菌中的铁转运:在肠杆菌素生物合成中受阻的突变体。
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6
Coupled transport of citrate and magnesium in Bacillus subtilis.枯草芽孢杆菌中柠檬酸与镁的协同运输
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7
Biodegradation of metal-nitrilotriacetate complexes by a Pseudomonas species: mechanism of reaction.假单胞菌属对金属-次氮基三乙酸配合物的生物降解:反应机制
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8
Cadmium and zinc sensitivity and tolerance in Klebsiella (Aerobacter) aerogenes.产气克雷伯氏菌(产气气杆菌)对镉和锌的敏感性及耐受性
Microbios. 1976;15(60):79-91.

镉、铜、镁和锌对一种克雷伯氏菌属细菌分解柠檬酸盐的影响

Effects of cadmium, copper, magnesium, and zinc on the decomposition of citrate by a Klebsiella sp.

作者信息

Brynhildsen L, Rosswall T

机构信息

Department of Water and Environmental Studies, Linköping University, Sweden.

出版信息

Appl Environ Microbiol. 1989 Jun;55(6):1375-9. doi: 10.1128/aem.55.6.1375-1379.1989.

DOI:10.1128/aem.55.6.1375-1379.1989
PMID:2764560
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC202874/
Abstract

The effects of Cd2+, Cu2+, Mg2+, and Zn2+ on the decomposition of citric acid by a Klebsiella sp. were studied by monitoring the degradation of [14C]citrate. The carbon concentration used was 10 micrograms of C liter-1, and the media were designed to provide at least 95% of the citrate complexed to the metal studied. After 72 h of incubation, 80% of the uncomplexed citric acid and 76% of the magnesium citrate had been decomposed. A marked inhibition was observed when Cd2+, Cu2+, or Zn2+ was bound to the organic anion; only 23% of the cadmium citrate, 14% of the zinc citrate, and 5% of the cuprous citrate had been decomposed. The effects were not the result of toxicity, since experiments run with [14C]glucose (nonchelating compound) instead of citrate resulted in similar decomposition rates regardless of the presence of the metal. To examine whether the binding of a metal to citrate enhanced its uptake by the Klebsiella sp., we studied the relative uptake of 65Zn in citrate- and in glucose-containing media. No such effect could be observed, with the uptake of Zn2+ being higher in the glucose-containing media. The study shows that metals may render low-molecular-weight organic acids, such as citric acid, resistant to bacterial degradation. This stresses the importance of metals in influencing microbial decomposition of organic compounds, not only as a result of toxicity.

摘要

通过监测[14C]柠檬酸盐的降解,研究了Cd2+、Cu2+、Mg2+和Zn2+对克雷伯氏菌属细菌分解柠檬酸的影响。所用碳浓度为10微克C/升,培养基设计为使至少95%的柠檬酸盐与所研究的金属络合。培养72小时后,80%的未络合柠檬酸和76%的柠檬酸镁已被分解。当Cd2+、Cu2+或Zn2+与有机阴离子结合时,观察到明显的抑制作用;只有23%的柠檬酸镉、14%的柠檬酸锌和5%的柠檬酸亚铜被分解。这些影响不是毒性作用的结果,因为用[14C]葡萄糖(非螯合化合物)代替柠檬酸盐进行的实验,无论金属是否存在,分解速率都相似。为了研究金属与柠檬酸盐的结合是否会增强克雷伯氏菌属细菌对其的摄取,我们研究了在含柠檬酸盐和含葡萄糖的培养基中65Zn的相对摄取情况。未观察到这种影响,在含葡萄糖培养基中Zn2+的摄取量更高。该研究表明,金属可能使低分子量有机酸(如柠檬酸)对细菌降解具有抗性。这强调了金属在影响有机化合物微生物分解中的重要性,不仅是由于毒性。