Editorial Standards

Latest News Today maintains rigorous editorial standards. Our team verifies information from trusted sources and provides context to help readers understand complex stories.

Last Updated: Thursday, October 1, 2026 at 03:50 PM
Category: Id

Editor's Note

Latest News Today provides comprehensive coverage and analysis of breaking news stories. This article is part of our ongoing coverage of wbna14945375, bringing you verified information from trusted sources with added context and expert perspective.

Why This Matters: Understanding the full context of this story helps readers make informed decisions and stay updated on developments that impact our community.

Tiny ocean creatures may have big impact

Swarms of tiny shrimp-like crustaceans known as krill, which churn the waters and bring up nutrients from the depths, could have a big impact on ocean life.
Krill are tiny crustaceans and an important food source for whales, seals and other larger sea creatures.
Krill are tiny crustaceans and an important food source for whales, seals and other larger sea creatures. Jamie Hall / NOAA

Swarms of tiny shrimp-like crustaceans known as krill, which churn the waters and bring up nutrients from the depths, could have a big impact on ocean life.

The discovery also suggest that sea life could contribute to mixing gases in the ocean. This might influence how gases such as carbon dioxide, linked to global warming, get trapped underwater.

The windswept surface layers of the open seas can teem with life, but scientists could not completely explain why, since predictions suggested not enough nutrients rise up from the abyss below to account for such abundance.

The researchers, from the University of Victoria in Canada, investigated swarms of krill in Saanich Inlet, a fjord on Vancouver Island. The crustaceans migrate to the surface daily as night approaches and retreat downward as day breaks.

Over the course of three dusks and two dawns, using data gathered in boat expeditions, the researchers discovered that in the roughly 10-minute bursts in which the krill migrated, they increased turbulence by up to thousands of times.

"I was initially skeptical that biologically linked turbulence could be significant. I was surprised at just how large it could be," researcher Eric Kunze, an ocean physicist, told LiveScience.

These findings suggest krill and other sea life could prove critical in bringing nourishment up from the ocean depths, which are loaded with nutrients released by surface organisms that died and sank.

"The question now is how frequently and how significant any biologically linked turbulence really is," Kunze said. The most likely animals to generate large amounts of ocean turbulence are roughly inch-sized creatures that travel together in large schools or swarms, he speculated, such as anchovies, sardines, herring or squid.