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Mushrooms may have stopped coal formation 300 mn years ago

2012-07-01 16:160易菇网
Mushrooms may be the culprit behind the shortage of coal on Earth, as scientists claim to have found evidence that shows the arrival of fleshy fungi species may have stopped the formation of coal deposits about 300 million years ago.
 
Coal is actually the fossilised remains of plants that lived from around 360 to 300 million years ago. But at the end of that period, coal stooped forming.
 
Now, scientists found evidence that show the evolution of fungi, which are capable of fully digesting plants, may have stopped dead plants building up into peat and then forming into coal. The discovery might pave the way for new biofuels, the researchers said.
 
"We're hoping this will get into the biology and geology textbooks," study researcher David Hibbett, a Clark University biologist, was quoted as saying by the Daily Mail.
In the research, Hibbett and his colleagues focused on Basidiomycetes, which include mushroom species with the familiar cap-and-stem look.
 
Basidiomycetes also include brown rot fungi such as the dry rot that can destroy houses by breaking down the cellulose in the construction wood but leave the lignin untouched; and white rot fungi of interest to the pulp and paper industries that can break down both types of polymers.
 
The researchers then used molecular clock analyses to track the evolution of the enzymes back through the fungal lineages. The idea is that just as the hands of a clock move at a defined rate around the dial, genes accumulate mutations at a roughly constant rate.
 
This rate of change allowed the team to work backwards, estimating when two lineages last shared a common ancestor based on the amount of divergence.
 
It showed that around 290 million years ago, right at the end of the Carboniferous period, a white rot fungal ancestor with the capacity to break down lignin appeared.
 
Prior to that fungi didn't have that ability and thus the lignin in plant matter was not degraded, which allowed these lignin-rich residues to build up in soil over time, the researchers said. (More)
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