Science

Tiny krill are turning up in deep-sea hydrothermal vents. Scientists want to know why

Antarctic krill, a shrimp-like crustacean that holds up the food web at the South Pole, were found at a hydrothermal vent off the Antarctic Peninsula during the National Geographic and Rolex Perpetual Planet Southern Ocean Expedition in collaboration with the Schmidt Ocean Institute.
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Antarctic krill are the lifeblood of the South Pole.

These shrimp-like crustaceans serve as a crucial food source for penguins, seals, and whales. “Most of them feed on Antarctic krill,” says Kim Bernard, a biological oceanographer at Oregon State University and a National Geographic explorer. “And if they don’t, they feed on something else that feeds directly on Antarctic krill. So they are absolutely fundamental to the functioning and health of that ecosystem.”

Krill also recycle nutrients that allow tiny algae called phytoplankton to grow. In addition, krill are fished in large numbers to produce aquaculture feed and omega-3 fatty acids as dietary supplements.

But experts say this rich habitat in the Southern Ocean at the bottom of the world is shifting rapidly due to climate change. “It’s one of the most rapidly warming areas on the planet,” says Bernard. “And that’s cascading through the food web and affecting the Antarctic krill population.”

Now, Bernard and her colleagues report in the journal Communications Biology the discovery of a surprising habitat for the krill — hydrothermal vents, which are basically hot springs on the ocean floor. Characterizing the importance of this habitat, especially for reproductive females, may help inform how to safeguard these crucial crustaceans.

Venting feelings

Antarctic krill tend to be located in the upper layer of the ocean. “They can be found forming swarms and layers at the surface,” says Bernard. “You can photograph them from airplanes.”

They can also be found at the sea floor at different depths, but she says these deeper observations have been sparse and anecdotal.

Then, in late 2024, Bernard was in Bransfield Strait off the Antarctic Peninsula while aboard the National Geographic and Rolex Perpetual Planet Southern Ocean Expedition in collaboration with the Schmidt Ocean Institute.

One of her colleagues, UCLA benthic ecologist Andrew Thurber, was using a remotely operated vehicle in a trough some 3,600 feet below the surface to study and video record a hydrothermal vent. Picture “extremely hot water coming from deep within the Earth’s crust,” says Bernard, “and it’s bringing with it metals and sulfides and all sorts of other chemicals that form almost like a tower.”

Biological oceanographer Kim Bernard and her colleagues examine the krill that they collected from a hydrothermal vent some 3,600 feet below the surface.

Biological oceanographer Kim Bernard and her colleagues examine the krill that they collected from a hydrothermal vent some 3,600 feet below the surface.
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It’s a seemingly inhospitable place. Bernard wasn’t studying the vent but she was eager to observe the sampling nevertheless.

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