Oceans virus ants, from north to south pole up to 4000 meters deep – MercoPress



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Oceans teeming with viruses, from north to south pole and up to 4000 meters deep

Saturday, April 27, 2019 – 09:43 UTC

Researchers from Ohio State University have established a global map of marine viruses based on seawater samples from nearly 80 sites around the world.
Researchers from Ohio State University have established a global map of marine viruses based on seawater samples from nearly 80 sites around the world.

According to the latest statistics, the oceans contain nearly 200,000 different viral populations. Marine viruses were found from the surface up to 4,000 m depth and from the North Pole to the South Pole. Although most are safe for humans, they can infect marine life, including whales and crustaceans.

And scientists are just beginning to understand how these microorganisms play a role in life and the chemistry of the seas.

Researchers at Ohio State University have compiled a global map of marine viruses from seawater samples collected from nearly 80 sites around the world. Their number of viruses is almost 12 times higher than previous estimates.

They were surprised to find that the viruses only fell in five groups, depending on their location and depth.

"When we examined the genes of the viruses in each of these communities, we found evidence of genetic adaptation to different areas of the ocean," said researcher Ann Gregory, today. of KU Leuven in Belgium.

The second surprise was that the Arctic Ocean contained many types of viruses. It had been thought that the hot spots of microbial diversity would be located at the equator.

A liter of seawater usually contains billions of viruses, the vast majority of which have not yet been identified. In the last set of data, 90% of the populations could not be classified in a known group.

A better understanding of ocean viruses is important because of their influence on other marine microbes, including bacteria and fungi.

Viruses have an impact on all other tiny marine organisms, such as plankton, that produce more than half of the oxygen we breathe and absorb carbon dioxide from the atmosphere.

"Without microbes, the Earth, its oceans and even our human body are stopping," said Matthew Sullivan of Ohio State University. "Our laboratory is finally helping researchers to" see "the hidden viruses that infect these microbes."

The study is reported in the journal Cell. Most of her data comes from the Tara Ocean Expedition (2009/2013) using the 36 m aluminum hull research schooner, Tara.

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