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微量热法研究硫酸铁铵对纯种微生物代谢活性的毒性作用。

Microcalorimetric investigation of the toxic action of ammonium ferric(III) sulfate on the metabolic activity of pure microbes.

机构信息

School of Environmental Studies & Key Laboratory of Biogeology and Environmental Geology of Chinese Ministry of Education & Sino-Hungarian Joint Laboratory of Environmental Science and Health, China University of Geosciences, 430074 Wuhan, Hubei, PR China.

出版信息

Environ Toxicol Pharmacol. 2008 May;25(3):351-7. doi: 10.1016/j.etap.2007.11.004. Epub 2007 Nov 29.

DOI:10.1016/j.etap.2007.11.004
PMID:21783873
Abstract

A series of calorimetric experiments were performed to investigate toxic action of ammonium ferric sulfate (AFS) on Bacillus subtilis, Pseudomonas putida and Candida humicola. The power-time curves of micro-organism metabolism were obtained, and the action of them by addition of AFS was studied. C. humicola, B. subtilis and P. putida were inhibited completely when the concentrations were up to 320.0, 160.0 and 160.0μgmL(-1), respectively. The relationships between growth rate constant (k) and doses of AFS were approximately linear for three microbes, P. putida for 10.0-160.0μgmL(-1) (R=-0.9746), B. subtilis for 0-160.0μgmL(-1) (R=-0.9868) and C. humicola for 10.0-320.0μgmL(-1) (R=-0.9955). The total heat dissipated per milliliter (Q(T)) for three microbes remained balance approximately during the lower doses, P. putida and B. subtilis less than the dose of 20.0μgmL(-1), 0.56±0.01 and 0.26±0.01JmL(-1), respectively, C. humicola less than the dose of 40.0μgmL(-1), 0.58±0.03JmL(-1). The biomass and OD(600) of three micro-organisms growth in the absence of AFS also were obtained. The power-time curve of C. humicola growth coincided with its turbidity curve. It elucidates that microcalorimetric method agreed with the routine microbiology method.

摘要

进行了一系列量热实验,以研究硫酸铁铵(AFS)对枯草芽孢杆菌、铜绿假单胞菌和粘红酵母的毒性作用。得到了微生物代谢的功率-时间曲线,并研究了它们在加入 AFS 时的作用。当浓度达到 320.0、160.0 和 160.0μgmL(-1)时,粘红酵母、枯草芽孢杆菌和铜绿假单胞菌完全被抑制。对于三种微生物,AFS 的剂量与生长速率常数(k)之间的关系大致呈线性关系,铜绿假单胞菌为 10.0-160.0μgmL(-1)(R=-0.9746),枯草芽孢杆菌为 0-160.0μgmL(-1)(R=-0.9868),粘红酵母为 10.0-320.0μgmL(-1)(R=-0.9955)。在较低剂量下,三种微生物每毫升耗散的总热量(Q(T))基本保持平衡,铜绿假单胞菌和枯草芽孢杆菌小于 20.0μgmL(-1)的剂量,分别为 0.56±0.01 和 0.26±0.01JmL(-1),粘红酵母小于 40.0μgmL(-1)的剂量,0.58±0.03JmL(-1)。在没有 AFS 的情况下,三种微生物的生物量和 OD(600)也得到了。粘红酵母生长的功率-时间曲线与浊度曲线吻合。这说明微量热法与常规微生物学方法一致。

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