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MEI Online: Commodities: Metallic Ores: Gold: Latest News: February 5th 2013

 
 

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:: Bacteria's Gold-making Trick Revealed

 

Scientists say they have discovered how a bacteria turns water-soluble gold into microscopic nuggets of solid gold. The bacteria Delftia acidovorans is frequently found on the surface of tiny gold nuggets. Its presence led scientists to speculate it may be creating the particles from soluble gold - ions of gold that are dissolved in water. But the puzzle was how D. acidovorans did this trick, as soluble gold is toxic.

The answer, suggests researchers from Canada, lies in a molecule excreted by the microbe that both shields the organism and transforms the poisonous ions into particles. "This finding is the first demonstration that a secreted metabolite can protect against toxic gold and cause gold biomineralisation," the process by which living organisms produce minerals, they write in the journal Nature Chemical Biology. dx.doi.org/doi:10.1038/NCHEMBIO.1179 The molecule, delftibactin A, is capable of achieving this feat within seconds in pH-neutral conditions at room temperature.

Study co-author Nathan Magarvey of Ontario's McMaster University says the study was not designed to show whether it would be viable to use the microbes to grow gold from water in the lab. But such processes seem "distinctly possible," he says.

Previous research had shown that another bacteria found on gold, Ischiadicus metallidurans, deals with toxicity by storing the ions inside its cells. Bacteria need some metals, such as iron, to grow, whereas others, like silver, will kill them. Soluble gold, invisible in a glass of water, is found in the ocean, groundwater and other natural water sources. Solid gold is mainly formed through geological processes in large veins underground.

Magarvey says the study may implicate D. acidovorans in secondary deposits such as nuggets found in rivers. The bacteria, he adds, is not found only on gold but also in the soil and in water. Still unclear, though, is what the organism feeds on.

 

 

   

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