Research traces vertebrate eyes to ancient one-eyed ancestor

Scientists propose that a tiny one-eyed creature that lived nearly 600 million years ago shaped the evolution of eyes in all vertebrates, including humans. The study also links the modern pineal gland to that ancient median eye.

Researchers from Lund University and the University of Sussex examined light-detecting cells across animal groups. They concluded that an early vertebrate ancestor lost its paired eyes after adopting a stationary lifestyle filtering plankton in the ocean.

The creature retained a central cluster of light-sensitive cells that formed a simple median eye. This structure later contributed to the development of image-forming paired eyes when descendants became mobile again.

Dan-E Nilsson, professor emeritus at Lund University, said the results turn understanding of eye and brain evolution upside down. He noted that the vertebrate retina developed from brain tissue, unlike eyes in insects and squid.

The researchers argue that the pineal gland, which regulates sleep through light response, is the surviving remnant of the ancient median eye.

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Microscopic view of lab-grown retina illustrating foveola development guided by vitamin A and thyroid hormones.
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Vitamin A-related signals and thyroid hormones found to steer foveola development in lab-grown human retinas

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Johns Hopkins University researchers report that a vitamin A-derived molecule and thyroid hormones help shape the fetal development of the foveola—the small central retinal region responsible for the sharpest human vision—by guiding how cone cells are specified and later change identity.

A new theory from scientists at Cold Spring Harbor Laboratory suggests that brain cells use their cellular family tree to organize into a complex organ. The model explains how a single starting cell can form a brain with roughly 170 billion precisely positioned neurons.

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Newly examined fossils indicate that the earliest four-limbed vertebrates developed directly into adults without a larval phase featuring external gills.

Skulls of Japanese people have grown rounder with wider jaws and other changes in the past 100 years, according to a new study. Researchers attribute the shifts to improvements in health, diet, and environment rather than genetics. The findings challenge traditional references for modern human anatomy.

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Researchers have kept human donor eyes active outside the body for up to 10 hours after death by perfusing them with blood and oxygen. The technique preserved retinal structure for 24 hours and allowed electrical responses to light in some cases. This marks progress toward potential whole-eye transplants.

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