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Posted on Originally published at qivorane.blog

Brain Evolved From Two Nervous Systems

Introduction To Brain Evolution

Our brain is a complex and highly developed organ, responsible for controlling various functions of the body, from basic life-sustaining processes to higher-level thought. Recent research has shed light on the evolutionary origins of the brain, suggesting that it may have developed from two primitive nervous systems that merged hundreds of millions of years ago. This finding has significant implications for our understanding of brain development and function, and may also have important consequences for the treatment of neurological disorders.

Developmental Origins Of The Brain

Studies of early-stage embryos have revealed that the front and back parts of the brain develop from two distinct cell types, known as progenitor cells. These cells have a limited capacity for self-renewal and express different genes, which determine their fate as either forebrain or hindbrain neurons. The forebrain, which comprises the forebrain and midbrain, develops from cells that express the OTX2 gene, while the hindbrain develops from cells that express the GBX2 gene. This separation of developmental origins suggests that the brain may have evolved from two separate neural systems that were later merged.

Experimental Evidence And Implications

Researchers have conducted experiments using human cells in a dish to confirm the findings from embryonic studies. They found that the neurons of the hindbrain and those of the forebrain and midbrain develop from different progenitor cells, which explains why it has been challenging to grow human hindbrain tissue in a lab. By using the correct type of progenitor cell, the team was able to grow functional human hindbrain motor neurons in a dish for the first time. This breakthrough has significant implications for the study of neurological disorders, such as amyotrophic lateral sclerosis (ALS) and spinal muscular atrophy, which affect the hindbrain and cause speech and swallowing difficulties.

Evolutionary History And Future Outlook

The discovery that our brain developed from two primitive nervous systems has important implications for our understanding of evolutionary history. Studies of early-stage embryos from other species, including chickens, zebrafish, and acorn worms, have revealed that their nervous systems are similarly derived from two different types of progenitor cells. This suggests that our shared two-origin brain system arose at least 550 million years ago. The merging of these two neural systems may have improved overall processing power and facilitated the evolution of complex thought. Further research is needed to fully understand the mechanisms underlying brain development and function, but this finding has opened up new avenues for investigation and may lead to important advances in the treatment of neurological disorders.

Conclusion And Future Directions

In conclusion, the discovery that our brain evolved from two primitive nervous systems that merged has significant implications for our understanding of brain development and function. The finding that the front and back parts of the brain develop from two distinct cell types has important consequences for the study of neurological disorders and may lead to new avenues for treatment. Further research is needed to fully understand the mechanisms underlying brain development and function, but this breakthrough has opened up new possibilities for investigation and may lead to important advances in the field of neuroscience.

Sources

This is an original synthesis by Qivorane based on reporting from the outlets below.

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