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重金属诱导的嗜酸细菌的形态学变化

Morphological changes in an acidophilic bacterium induced by heavy metals.

作者信息

Chakravarty Rajdeep, Banerjee Pataki C

机构信息

Molecular Genetics Laboratory, Indian Institute of Chemical Biology, 4 Raja S C Mullick Road, Kolkata 700 032, India.

出版信息

Extremophiles. 2008 Mar;12(2):279-84. doi: 10.1007/s00792-007-0128-4. Epub 2008 Jan 10.

Abstract

The Acidiphilium strains inhabit acidic mine regions where they are subjected to occasional environmental stresses such as high and low temperatures, exposure to various heavy metals, etc. Change in morphology is one of the strategies that bacteria adopt to cope with environmental stresses; however, no study on this aspect has been reported in the case of Acidiphilium sp. This work is an attempt using the acidophilic heterotrophic bacterium Acidiphilium symbioticum H8. It was observed that the maximum alterations in size occurred when the bacterium was exposed to sub-inhibitory concentrations of Cu and Cd. Loosely packed coccobacillus-type normal cells formed characteristic chains of coccoidal lenticular shape with constrictions at the junctions between them in the presence of Cd; Cu induced transformation of cells to become round shaped; Ni caused the cells to aggregate, but Zn showed no effect. Respective metal depositions on the cell surface were confirmed by scanning electron microscopy equipped with energy dispersive X-ray analysis. Cell bound Ca2+ ions were replaced by these metal ions and measured by inductively coupled plasma mass spectrometry from the culture filtrate. Cell shape changed only after the addition of sub-inhibitory concentrations of the metals, but in growth inhibitory concentrations it was similar to the normal cells.

摘要

嗜酸菌菌株栖息于酸性矿区,在那里它们会偶尔受到环境压力,如高温和低温、接触各种重金属等。形态变化是细菌应对环境压力所采用的策略之一;然而,关于嗜酸菌属的这方面研究尚无报道。这项工作是利用嗜酸异养细菌共生嗜酸菌H8进行的一次尝试。据观察,当该细菌暴露于亚抑制浓度的铜和镉时,其大小变化最大。在镉存在的情况下,松散排列的球杆菌型正常细胞形成了特征性的球状透镜状链,链间连接处有缢缩;铜诱导细胞转变为圆形;镍导致细胞聚集,但锌没有影响。通过配备能量色散X射线分析的扫描电子显微镜确认了细胞表面各自的金属沉积。细胞结合的钙离子被这些金属离子取代,并通过电感耦合等离子体质谱法从培养滤液中进行测量。只有在添加亚抑制浓度的金属后细胞形状才会改变,但在生长抑制浓度下,其与正常细胞相似。

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