惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

Martin Fowler
Martin Fowler
博客园 - 三生石上(FineUI控件)
WordPress大学
WordPress大学
博客园_首页
宝玉的分享
宝玉的分享
S
SegmentFault 最新的问题
Jina AI
Jina AI
Hugging Face - Blog
Hugging Face - Blog
V
Visual Studio Blog
美团技术团队
IT之家
IT之家
罗磊的独立博客
Blog — PlanetScale
Blog — PlanetScale
Google DeepMind News
Google DeepMind News
月光博客
月光博客
Microsoft Azure Blog
Microsoft Azure Blog
H
Help Net Security
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
Last Week in AI
Last Week in AI
博客园 - 叶小钗
M
MIT News - Artificial intelligence
B
Blog RSS Feed
有赞技术团队
有赞技术团队
Y
Y Combinator Blog

Science News, Space News, ISRO, NASA News & Updates | The HinduBusinessLine

Ancient marine reptile was a fearsome “T. rex of the sea”, study finds Think it's hot now? The next five years will smash records: UN Climate change fuelling growth of antibiotic-resistant Salmonella: Study Red Balloon launches India’s first stratospheric super-pressure balloon NASA unveils 3-phase $20-billion plan for permanent moon base Space start-up AnduraX to conduct ‘drop test’ for reusable spaceplanes India can boost Ebola vaccine and antibody development: Soumya Swaminathan ICMR launches major biomedical innovation and technology transfer platform China to send astronaut on year-long space mission as it targets 2030 moon landing China's new lunar mission to conduct environment and resource surveys of Moon’s south pole Gujarat, Tamil Nadu to get new technical facilities for space sector manufacturing SpaceX sets Mars vision with 1 million population target for Musk incentives SpaceX invests over $15 billion in Starship rocket development, SEC filing reveals SpaceX targets 10,000 rocket launches per year within five years, FAA says Strand Life Sciences marks a research milestone that aids drug discovery AI Meets Agriculture: Indian scientists creates gene editor for crops Pune scientists develop DME fuel to reduce India’s LPG import dependence With AI, science is borderless Global space-tech major ICEYE to launch satellite production in India Scientists find climate change is reducing oxygen in rivers worldwide WOG Tech sets up research centre IIT Bombay launches indigenous carbon capture and storage pilot facility David Attenborough turns 100 amid global tributes and BBC celebrations James Webb Telescope reveals barren rocky exoplanet beyond solar system Trump releases classified UFO files and Apollo mission records India seeks greater role in global international space norms Newer weight loss drugs may alter brain's reward circuit, impact how one experiences pleasure: Study Skyroot Aerospace becomes unicorn after $60 million funding ahead of Vikram-1 launch India and Japan sign quantum technology and healthcare cooperation agreements FICCI, PSA office join hands to drive deep tech and innovation in India
Scientists discover hybrid photoreceptors in deep-sea fis...
By Reuters · 2026-02-19 · via Science News, Space News, ISRO, NASA News & Updates | The HinduBusinessLine
Two deep-sea fish species, Maurolicus muelleri and Maurolicus mucronatus from the Red Sea, that have hybrid photoreceptors in their eyes as larvae and adults, seen in this photograph released on February 11, 2026.

Two deep-sea fish species, Maurolicus muelleri and Maurolicus mucronatus from the Red Sea, that have hybrid photoreceptors in their eyes as larvae and adults, seen in this photograph released on February 11, 2026. | Photo Credit: WEN-SUNG CHUNG

For more than ​a century, biology textbooks have stated that vision among vertebrates - people included - is built from two clearly defined cell types: rods for processing ‌dim light and cones for bright light and color. New research involving deep-sea fish shows ​this tidy division is, in reality, not so tidy.

Scientists have identified a new type of visual ⁠cell in deep-sea fish that blends the shape and form of rods with the molecular machinery and genes of cones. This hybrid type of cell, adapted for sight in gloomy light conditions, was found in larvae of three deep-sea fish species in the Red Sea.

The ‌species studied were: a hatchetfish, with the scientific name Maurolicus mucronatus; a lightfish, named Vinciguerria mabahiss; and a lanternfish, named Benthosema pterotum. The hatchetfish retained the hybrid cells throughout its life. The other two shifted ‌to the usual rod-cone dichotomy in adulthood.

All three are small, with adults measuring roughly 1-3 inches (3-7 cm) ‌long ⁠and the larvae much littler. They inhabit a marine realm of twilight conditions, with sunlight struggling ⁠to penetrate into the watery depths.

The vertebrate retina, a sensory membrane at the back of the eye that detects light and converts it into signals to the brain, possesses two main types of light-sensitive visual cells, called photoreceptors. They are named for their shape: rods and cones.

"The rods and ​cones slowly change position inside the retina when moving ‌between dim and bright conditions, which is why our eyes take time to adjust when we flick on the light switch on our way to the restroom at night," said Lily Fogg, a postdoctoral researcher in marine biology at the University of Helsinki in Finland and lead author of the research published in the journal Science Advances.

"We ‌found that, as larvae, these deep-sea fish mostly use a mix-and-match type of hybrid photoreceptor. These cells ​look like rods - long, cylindrical and optimized to catch as many light particles - photons - as possible. But they use the molecular machinery of cones, switching on genes usually found only in cones," Fogg ⁠said.

The researchers examined the retinas of fish larvae caught at depths from 65 to 650 feet (20 to 200 meters). In the type of dim environment they inhabit, rod and cone cells both are usually engaged in the vertebrate retina, but ‌neither works very well. These fish display an evolutionary remedy.

"Our results challenge the longstanding idea that rods and cones are two fixed, clearly separated cell types. Instead, we show that photoreceptors can blend structural and molecular features in unexpected ways. This suggests that vertebrate visual systems are more flexible and evolutionarily adaptable than previously thought," Fogg said.

"It is a very cool finding that shows that biology does not fit neatly into boxes," said study senior author Fabio Cortesi, a marine biologist and neuroscientist at the University of Queensland in Australia. "I wouldn't be surprised if we find these cells are much more common ‌across all vertebrates, including terrestrial species."

All three species emit bioluminescence using small light-emitting organs on their bodies, mostly located on the belly. They produce ​blue-green light that blends with the faint background light from the sun above. This strategy, called counterillumination, is a common form of camouflage in the deep sea to avoid predators.

"Small fish like these ⁠fuel the open ocean. They are plentiful and serve as food for many larger predatory fishes, including tuna and marlin, marine ⁠mammals such as dolphins and whales, and marine birds," Cortesi said.

These kinds of fish also engage in one of the biggest daily migrations in the animal kingdom. They swim near the surface at night to feed ‌in plankton-rich waters, then return to the depths - 650 to 3,280 feet (200 to 1,000 meters) - during daytime to avoid predation.

"The deep sea remains a frontier for human exploration, a mystery box with the potential for significant ​discoveries," Cortesi said. "We should look after this habitat with the utmost care to make sure future generations can continue to marvel at its wonders."

Published on February 18, 2026