
Humans began sleeping as a way to partly help reduce DNA damage in nerve cells, scientists at Bar-Ilan University in Israel discovered while studying jellyfish and sea anemones.
Researchers reached this conclusion by observing restful behaviors in the upside-down jellyfish Cassiopea andromeda and the starlet sea anemone Nematostella vectensis. The animals are known to have sleep patterns similar to humans, according to a study published in Nature Communications on Jan. 6."These results demonstrate that DNA damage accumulates during wakefulness and decreases during sleep," the researchers added. "Furthermore, these findings suggest that decreasing DNA damage during sleep is an evolutionarily conserved cellular function that may have contributed to the emergence of sleep in early metazoans."
More: How many hours of sleep do I need? The real numbers to know.
Both species sleep for about one-third of the day, irrespective of the timing of daily sleep. Melatonin also promoted sleep in the animals and scientists observed them sleeping at night and taking midday naps.
Though neither species has a brain, they do have neurons and react to light and when presented with food. The animals were observed sleeping in a dark-light environment and awake during the day.
How could scientists determine when the animals were asleep?
To determine when the animals were asleep, researchers measured their pulsation rates. To do that, an infrared camera was used to track the simultaneous behavior of multiple jellyfish during the day and night. The motions were recorded by monitoring the changes in pixel intensity.
Researchers found that when jellyfish pulsed fewer than 37 times per minute for more than 3 minutes, they responded more slowly to stimuli. Based on the biometric data, they used the pulsation rate as an indicator of when the animals were asleep.
What happened when the animals were sleep-deprived?
Sleep deprivation, ultraviolet radiation and mutagens increased neuronal DNA damage and sleep pressure, the study notes. Scientists later found that the sleep-deprived animals slept more than those that had not been sleep-deprived.
More: Scientists plan to save whales by collecting their snot
However, spontaneous and induced sleep promoted genome stability, suggesting that the evolution of sleep may have occurred to repair DNA damage and reduce cellular stress in simple nerve nets.
Researchers discovered that the light/dark cycle and the need to maintain stable conditions regulate sleep in jellyfish, whereas the circadian clock and internal timings primarily regulate sleep in sea anemones.
“We suggest that sleep may have evolved to enable consolidated periods of neural maintenance,” the researchers wrote.
Michelle Del Rey is a trending news reporter at USA TODAY. Reach her at [email protected]
This article originally appeared on USA TODAY: Jellyfish and humans may have one thing in common, new study says
NEUESTE BEITRÄGE
- 1
Best Augmented Simulation Ride: Which One Feels Generally Genuine?01.01.1 - 2
High velocity Internet services for Metropolitan Regions06.06.2024 - 3
Soldiers seize power in Guinea-Bissau and detain the president26.11.2025 - 4
Scientists sent a menstrual cup to space. This is how it went07.12.2025 - 5
Liste des pr\u00eats qui ne n\u00e9cessitent pas de remboursement25.09.2023
Ähnliche Artikel
How stripping diversity, equity and inclusion from health care may make Americans sicker21.12.2025
WHO issues guidance on GLP-1 drugs for obesity01.12.2025
7 Logically Demonstrated Techniques for Better Rest11.08.2023
A Couple of Modest Guitars for 202405.06.2024
Journalist reported killed in the Gaza Strip02.12.2025
A Sweet Choice: Pick Your #1 Cake!06.06.2024
Addiction-stricken community struggles to keep a syringe program going after Trump's order22.12.2025
NASA’s Pandora telescope will study stars in detail to learn about the exoplanets orbiting them11.01.2026
Doritos and Cheetos debut 'NKD' options, without artificial colors or flavors13.11.2025
Ukrainian Army Converts E38 BMW 7-Series Into Multiple Rocket Launch Platform18.12.2025













