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🧬 This Happens 50 Million Times in Your Body Today.Every single day, millions of your cells divide β€” carefully copying 3...
04/03/2026

🧬 This Happens 50 Million Times in Your Body Today.

Every single day, millions of your cells divide β€” carefully copying 3 billion DNA letters with astonishing precision.
No noise. No spotlight. Just silent molecular perfection keeping you alive.
From healing a small cut to replacing old cells, this invisible process is the reason you grow, repair, and survive.
And the most amazing part?
It’s happening right now inside you. πŸ”¬

Tag someone who loves mind-blowing biology πŸ‘‡

DNA replication is like a beautifully choreographed molecular dance inside every living cell. As the cell prepares to di...
04/03/2026

DNA replication is like a beautifully choreographed molecular dance inside every living cell. As the cell prepares to divide, the double helix gently unzips under the action of helicase, forming a replication fork. Primase lays down tiny RNA primers, giving DNA polymerase a starting point to build new strands in the 5β€²β†’3β€² direction. One strand, the leading strand, grows smoothly and continuously, while the lagging strand forms in short Okazaki fragments, carefully assembled piece by piece. Finally, the primers are removed, gaps are filled, and DNA ligase seals everything togetherβ€”resulting in two identical DNA molecules, each carrying one old strand and one newly created strand, ready to pass on the blueprint of life. 🧬✨

Human Anatomy – Front & Back View The human body is a masterpiece of biological engineering. This detailed illustration ...
04/03/2026

Human Anatomy – Front & Back View

The human body is a masterpiece of biological engineering. This detailed illustration highlights major organs, bones, and muscle groups from both anterior and posterior views β€” helping us better understand structure, function, and coordination within the body.
From the brain and heart to the femur and Achilles tendon, every part plays a vital role in maintaining life and movement.

πŸ“š Perfect for students, educators, and anyone passionate about biology and health sciences.

Spirogyra as seen under the Microscope.Spirogyra is a filamentous type of green algae, it is named as so because of the ...
09/06/2021

Spirogyra as seen under the Microscope.
Spirogyra is a filamentous type of green algae, it is named as so because of the helical or spiral arrangement of the chloroplasts that can be visible through the microscope. It is characteristic of the genus. It is commonly found in freshwater habitats, and there are more than 400 species of Spirogyra in the world

Different stages of Meiosis in Onion flower buds
26/04/2021

Different stages of Meiosis in Onion flower buds

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15/08/2020

Anyone interested can register for free.

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20/07/2020

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Our last video reached 1.1k views... If u haven't watched d video... Do watch it. Thanks
17/07/2020

Our last video reached 1.1k views... If u haven't watched d video... Do watch it. Thanks

17/07/2020

RNA Processing in eukaryotes || RNA splicing || RNA Capping and Adenylation |

In this video lecture we will be talking about the three modes of RNA processing in Eukaryotes. You know RNA processing is much complicated in eukaryotes compared to the prokaryotes. Because prokaryotic DNA is present in the cytosol as they don’t bear any defined nucleus and so the rna is also made in the cytosol. And the rna that is made in the prokaryotes thay carry all the necessary genes that makes the protein. But in eukaryotes The transcription takes place inside the nucleus and when the RNA is made from the DNA the rna contains two times of units one is known as the INTRONS and the other one is known as the EXONS. EXons are the only coding element while INTRONS don’t code for any protein. So what we need to do in eukaryotes is that they need to cut all those introns out and join the rest of the EXONS together. That process is known as splicing. After splicing the MRNA is called as the mature mrna And before splicing there are two more processes that should be carried out to finally transport the MRNA into the cytosol. So before transporting the newly made mrna to the cytosol in eukaryotes. Three major steps occurs. One is known as the 5 prime modification. Or 5 prime capping that is the guanine residues addition in the 5 prime terminal of that mrna, second is the 3 prime adenylation where repeated adenine residues are being added one after another in the 3 prime section of the newly made MRNA. And then the splicing are carried out when the introns are cut out while the exons are joined together. That is known as the mature mrna ready for translation in the Cytosol.

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02/07/2020

Next video on my page processing of Precursor mRNA coming soon.

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