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极端嗜热菌 Acidianus manzaensis 表面质子吸附的培养条件和离子强度的影响。

The effect of culture condition and ionic strength on proton adsorption at the surface of the extreme thermophile Acidianus manzaensis.

机构信息

School of Minerals Processing and Bioengineering, Central South University, No. 932, Lushan South Road, Changsha 410083, China.

出版信息

Colloids Surf B Biointerfaces. 2013 Feb 1;102:667-73. doi: 10.1016/j.colsurfb.2012.09.028. Epub 2012 Sep 24.

DOI:10.1016/j.colsurfb.2012.09.028
PMID:23107945
Abstract

Some previously published studies have used surface complexation theory to model proton adsorption in mesophilic bacteria. However, few experiments, to date, have investigated the effects of cultivation conditions and ionic strength on proton interactions among extreme thermophile archaea. In this study, we characterize proton adsorption of the extreme thermophile Acidianus manzaensis by performing acid-base titrations and electrophoretic mobility measurements in NaNO(3) solution (0.001-0.1M), as well as Attenuated Total Reflection Fourier Transformed Infrared Spectroscopy (ATR-FTIR) with pH 2-10. Equilibrium thermodynamics (Donnan model) were applied to predict trends of ion adsorption at the archaea-water interface. We observed that the acidic properties of the A. manzaensis surface were significantly related to culture conditions and ionic strength. The buffering capacity of A. manzaensis cultivated with pyrite was much less than that of A. manzaensis cultured with sulfur. Furthermore, with increasing pH value, the buffering capacity increased and the surface charge became increasingly negative. To our knowledge, A. manzaensis has the highest buffering capacity of per unit wet biomass among all microbes studied. In conclusion, based on our model, the acid-base properties of the cell wall of A. manzaensis can be characterized by invoking three distinct types of cell wall functional groups: Carboxyl, phosphoryl, and amide groups, which were also verified by ATR-FTIR.

摘要

一些先前的研究已经使用表面络合理论来模拟中温菌中的质子吸附。然而,到目前为止,很少有实验研究培养条件和离子强度对极端嗜热古菌中质子相互作用的影响。在这项研究中,我们通过在 NaNO3 溶液(0.001-0.1M)中进行酸碱滴定和电泳迁移率测量,以及 pH 值为 2-10 的衰减全反射傅里叶变换红外光谱(ATR-FTIR)来表征极端嗜热菌嗜酸热菌(Acidianus manzaensis)的质子吸附。我们应用平衡热力学(Donnan 模型)来预测离子在古菌-水界面上吸附的趋势。我们观察到,A. manzaensis 表面的酸性性质与培养条件和离子强度有显著关系。用黄铁矿培养的 A. manzaensis 的缓冲能力远小于用硫培养的 A. manzaensis。此外,随着 pH 值的增加,缓冲能力增加,表面电荷变得越来越负。据我们所知,A. manzaensis 的单位湿生物质的缓冲能力在所有研究的微生物中是最高的。总之,根据我们的模型,A. manzaensis 细胞壁的酸碱性质可以通过调用三种不同类型的细胞壁官能团来表征:羧基、磷酸基和酰胺基,这也通过 ATR-FTIR 得到了验证。

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