| ▲ | bethekind an hour ago | ||||||||||||||||||||||
> They identified two different brain progenitor cells. One, which expresses a gene called Otx2, is destined to become the forebrain and midbrain. The other, which expresses a gene called Gbx2, is committed to forming the hindbrain. They showed that these two cell populations never overlap; they are mutually exclusive from the earliest stages of development. Very cool. Never thought the brain could have two completely different ancestors | |||||||||||||||||||||||
| ▲ | kazinator an hour ago | parent | next [-] | ||||||||||||||||||||||
Fun fact: the hindbrain progenitor cell is shaped like a little lizard. | |||||||||||||||||||||||
| ▲ | trhway an hour ago | parent | prev [-] | ||||||||||||||||||||||
and from another post on the front page right now https://news.ycombinator.com/item?id=49735541 : "Nervous systems are typically defined as networks of neurons that communicate across synapses. But Burkhardt’s lab found something unique in ctenophores: Beneath the animal’s outer surface is a nerve net (pink mesh in this 3D reconstruction) whose neurons are connected by continuous cytoplasm — but with no synapses between them. “I don’t think any other animal has a nervous system like that,” Burkhardt said. Because ctenophores are one of the earliest branches of the animal family tree, the finding indicates that evolution may have crafted nervous systems twice: in ctenophores, and separately in jellyfish and all other animals." | |||||||||||||||||||||||
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