By using this site, you agree to the Privacy Policy and Terms of Use.
Accept
Online Tech Guru
  • News
  • PC/Windows
  • Mobile
  • Apps
  • Gadgets
  • More
    • Gaming
    • Accessories
    • Editor’s Choice
    • Press Release
Reading: Tiny Hairs That Help Corals Breathe May Malfunction in Warming Oceans
Best Deal
Font ResizerAa
Online Tech GuruOnline Tech Guru
  • News
  • Mobile
  • PC/Windows
  • Gaming
  • Apps
  • Gadgets
  • Accessories
Search
  • News
  • PC/Windows
  • Mobile
  • Apps
  • Gadgets
  • More
    • Gaming
    • Accessories
    • Editor’s Choice
    • Press Release

Meta’s Muse Is Better at Surveilling Than Helping Me

News Room News Room 20 September 2026
FacebookLike
InstagramFollow
YoutubeSubscribe
TiktokFollow
  • Subscribe
  • Privacy Policy
  • Contact
  • Terms of Use
© Foxiz News Network. Ruby Design Company. All Rights Reserved.
Online Tech Guru > News > Tiny Hairs That Help Corals Breathe May Malfunction in Warming Oceans
News

Tiny Hairs That Help Corals Breathe May Malfunction in Warming Oceans

News Room
Last updated: 20 September 2026 10:20
By News Room 4 Min Read
Share
SHARE

Every coral colony is cushioned by a thin boundary layer of water whose movement is slowed by friction at the coral’s surface. Researchers assumed that corals were passive with respect to the slow-moving boundary layer, simply relying on natural diffusion through it to provide nutrients and oxygen.

Then, in 2014, a team from the Massachusetts Institute of Technology and the Weizmann Institute of Science published a groundbreaking study showing that coral cilia interact with the boundary layer by rapidly whipping about to generate swirls of fresh, oxygenated seawater. Until a decade ago, scientists thought of these cilia merely as brooms that move mucus and sweep away waste particles and other debris. The research not only modeled the tiny vortices created by the cilia for the first time, but also revealed the cilia’s importance for survival and metabolism.

At first, the microbiologist and environmental engineer Orr Shapiro, who led the 2014 work at MIT as a postdoctoral fellow, was interested in how microbes that infect corals and cause disease follow concentration gradients, a process called chemotaxis. Under the microscope, he noticed something weird: In the boundary layer, particles were swirling around and mixing together—not at all like the passive diffusion he had been expecting.

“That was to me, and I think later on to the entire field, sort of a paradigm shift,” said Shapiro, now a researcher at the Volcani Institute in Israel. It became clear that the boundary layer wasn’t static, but rather a dynamic zone, and one where cilia were creating their own turbulence. The realization inspired Shapiro’s team to go off on a tangent, mapping the flow of oxygen to coral tissues via cilia. “It really transformed how we understand this [micro]environment, because suddenly the diffusion is no longer really important,” Shapiro said.

Diffusion is the default route for nutrients traveling through water, but it’s painfully slow. It can take as long as four minutes for oxygen to travel just 1 millimeter. That’s why the fast-moving flows created by cilia are so important: because naturally flowing water slows down near the coral’s surface, and corals consume oxygen faster than diffusion can supply it.

It is a system that delivers enough oxygen, despite the cilia’s energy consumption. But there’s a downside: Oxygen dwindles as temperature climbs. That’s when corals run into trouble.

Scientists have a clear understanding of one thing that happens to corals when water gets too hot: bleaching. As water temperatures rise, a coral’s symbiotic algae become stressed and release molecules that are toxic to the coral in large quantities. To protect itself, the coral expels its own algae—a primary food, energy, and oxygen source—and soon loses its color. It’s a slow death and an increasingly common occurrence as heat waves sweep across the world’s reefs.

But sometimes, some corals on a reef bleach while others don’t, and in other cases corals under heat stress die without expelling their algae. An international team of microbiologists, engineers, and physiologists was eager to understand how heat affects cilia, and whether this could explain different types of coral death.

Share This Article
Facebook Twitter Copy Link
Leave a comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

It’s Donald Trump Versus MAGA on Data Centers

News Room News Room 20 September 2026
FacebookLike
InstagramFollow
YoutubeSubscribe
TiktokFollow

Trending

Welcome to Dogs Anonymous, the Online Support Group for People With Difficult Dogs

Just past 6 pm on a recent Wednesday night, half a dozen pet owners logged…

20 September 2026

A great new video game movie

Hi, friends! Welcome to Installer No. 144, your guide to the best and Verge-iest stuff…

20 September 2026

Review: Thermacell LIV Smart Mosquito Repellent System 2.0

Four years ago, I moved back to Texas from California. After two weeks of living…

20 September 2026
Gaming

Hideo Kojima Exclusive Interview on PlayStation Ditching Physint and Moving to Xbox

In June, Sony asked Hideo Kojima to attend a Zoom call. At the time, he was busy working on Xbox game OD and PlayStation game Physint, the latter a spiritual…

News Room 20 September 2026

Your may also like!

News

Meet the Academics Trying to Stop You From Having Sex in Robotaxis

News Room 20 September 2026
Gaming

Best Buy Is Having a Massive Sale on Microsoft-Published Physical Video Games (Today Only)

News Room 20 September 2026
Gaming

Pokémon TCG 30th Celebration — The Coolest Cards Ranked

News Room 20 September 2026
Gaming

We Played as Proto Man This Time

News Room 20 September 2026

Our website stores cookies on your computer. They allow us to remember you and help personalize your experience with our site.

Read our privacy policy for more information.

Quick Links

  • Subscribe
  • Privacy Policy
  • Contact
  • Terms of Use
Advertise with us

Socials

Follow US
Welcome Back!

Sign in to your account

Lost your password?