Understanding genetics

🎬201964h 38mUnited KingdomTED

English,Français,Indonesian,Português,Русский,اَلْعَرَبِيَّةُ,मराठी,हिन्दी,বাংলা

Watch Video

Description

The TV series Understanding genetics, created by an unlisted creator and produced by an unlisted studio, first premiered on January 8, 2019 in the United Kingdom. The series spans 1 season with 13 episodes, featuring the voices of an unlisted voice cast. It follows the story of View full lesson: When life emerged on Earth about 4 billion years ago, the earliest microbes had a set of basic genes that succeeded in keeping them alive. In the age of humans and other large organisms, there are a lot more genes to go around. Where did all of those new genes come from? Carl Zimmer examines the mutation and multiplication of genes. Lesson by Carl Zimmer, animation by TOGETHER. This is a TED series and has received a rating of 0/10 from 0 viewers.

Where to Watch

ugc-kid-edu.comElozonam

Availability may vary by country, language, and release window. Some titles are included with platform subscriptions, while others may require rental, purchase, or app-based access. Streaming catalogs and licensing agreements are updated regularly, so playback options can change over time. For the most accurate viewing experience, check the latest listing on your selected service and confirm regional support, subtitle options, and device compatibility before starting.

Filming Location

127A Smithfield Road, Frederiksted, Virgin Islands

Production

Castle Rock Entertainment

Award

21 wins & 43 nominations total

Get MovieBox / FM / TV APK

Download the latest MovieBox packages for mobile, FM builds, and TV-compatible APK versions. Choose the package that matches your device and region, then follow the official install guide for best compatibility and security.

User Review

la meuf de tiktok03/07/26 06:39

Dig into the science of how a single genetic mutation alters the structure of hemoglobin and leads to sickle-cell disease. -- What shape are your cells? Squishy cylinders? Jagged zig-zags? You might not spend a lot of time thinking about the bodies of these building blocks, but microscopically, small variations can have huge consequences. And while some adaptations change these shapes for the better, others can spark debilitating complications. Amber Yates dives into the science of the malignant sickle-cell mutation. Lesson by Amber M. Yates, directed by Axon Animation LLC. Sign up for our newsletter: http://bit.ly/TEDEdNewsletter Support us on Patreon: http://bit.ly/TEDEdPatreon Follow us on Facebook: http://bit.ly/TEDEdFacebook Find us on Twitter: http://bit.ly/TEDEdTwitter Peep us on Instagram: http://bit.ly/TEDEdInstagram View full lesson: https://ed.ted.com/lessons/how-this-disease-changes-the-shape-of-your-cells-amber-m-yates Thank you so much to our patrons for your suppor

Bhavin Patel03/07/26 06:39

Dig into the science of how a single genetic mutation alters the structure of hemoglobin and leads to sickle-cell disease. -- What shape are your cells? Squishy cylinders? Jagged zig-zags? You might not spend a lot of time thinking about the bodies of these building blocks, but microscopically, small variations can have huge consequences. And while some adaptations change these shapes for the better, others can spark debilitating complications. Amber Yates dives into the science of the malignant sickle-cell mutation. Lesson by Amber M. Yates, directed by Axon Animation LLC. Sign up for our newsletter: http://bit.ly/TEDEdNewsletter Support us on Patreon: http://bit.ly/TEDEdPatreon Follow us on Facebook: http://bit.ly/TEDEdFacebook Find us on Twitter: http://bit.ly/TEDEdTwitter Peep us on Instagram: http://bit.ly/TEDEdInstagram View full lesson: https://ed.ted.com/lessons/how-this-disease-changes-the-shape-of-your-cells-amber-m-yates Thank you so much to our patrons for your suppor

mariama rella Njie 217/06/26 13:29

Dig into why ethnic diversity is so important to medical research when creating new treatments and medicines for diseases. -- While all humans share 99.9% of our DNA, differences in the remaining 0.1% hold important clues about the causes of diseases—and their potential treatments. The problem is, the genetics that researchers are combing through are heavily biased to those of people from European descent, and often overlook other ethnicities. Greg Foot explains the importance of ethnic diversity in medical research. Lesson by Greg Foot, directed by Kirk Zamieroski. This video was produced for TED-Ed by NIHR, the National Institute for Health and Care Research Learn more about how TED-Ed partnerships work: https://bit.ly/TEDEdPartners Support Our Non-Profit Mission ---------------------------------------------- Support us on Patreon: http://bit.ly/TEDEdPatreon Check out our merch: http://bit.ly/TEDEDShop ---------------------------------------------- Connect With Us -------------

Marget-bae-2005🤧17/06/26 13:29

Dig into why ethnic diversity is so important to medical research when creating new treatments and medicines for diseases. -- While all humans share 99.9% of our DNA, differences in the remaining 0.1% hold important clues about the causes of diseases—and their potential treatments. The problem is, the genetics that researchers are combing through are heavily biased to those of people from European descent, and often overlook other ethnicities. Greg Foot explains the importance of ethnic diversity in medical research. Lesson by Greg Foot, directed by Kirk Zamieroski. This video was produced for TED-Ed by NIHR, the National Institute for Health and Care Research Learn more about how TED-Ed partnerships work: https://bit.ly/TEDEdPartners Support Our Non-Profit Mission ---------------------------------------------- Support us on Patreon: http://bit.ly/TEDEdPatreon Check out our merch: http://bit.ly/TEDEDShop ---------------------------------------------- Connect With Us -------------

Maki Nthethe17/06/26 13:19

Check out the science of biohacking, where biologists go into a patient’s genetic code and reprogram their immune system to recognize and fight cancer cells. -- The human body is made up of about 30 trillion cells that carry a code which has been duplicated over and over for billions of years - with varying degrees of accuracy. So what happens when the system breaks down and the machinery turns on itself, leading to cancer? Greg Foot dives into the science of how biologists are biohacking the human body to try to fix the seemingly unfixable. Lesson by Greg Foot, directed by Pierangelo Pirak. Produced for TED-Ed by https://www.sciencemedia.studio and NIHR University College London Hospitals Biomedical Research Centre. Sign up for our newsletter: http://bit.ly/TEDEdNewsletter Support us on Patreon: http://bit.ly/TEDEdPatreon Follow us on Facebook: http://bit.ly/TEDEdFacebook Find us on Twitter: http://bit.ly/TEDEdTwitter Peep us on Instagram: http://bit.ly/TEDEdInstagram View full

Larhyss Ngoma André17/06/26 13:19

View full lesson: http://ed.ted.com/lessons/the-immortal-cells-of-henrietta-lacks-robin-bulleri Imagine something small enough to float on a particle of dust that holds the keys to understanding cancer, virology, and genetics. Luckily for us, such a thing exists in the form of trillions upon trillions of human, lab-grown cells called HeLa. But where did we get these cells? Robin Bulleri tells the story of Henrietta Lacks, a woman whose DNA led to countless cures, patents, and discoveries. Lesson by Robin Bulleri, animation by Brandon Denmark.

axie_baby_kik17/06/26 13:19

View full lesson: http://ed.ted.com/lessons/the-immortal-cells-of-henrietta-lacks-robin-bulleri Imagine something small enough to float on a particle of dust that holds the keys to understanding cancer, virology, and genetics. Luckily for us, such a thing exists in the form of trillions upon trillions of human, lab-grown cells called HeLa. But where did we get these cells? Robin Bulleri tells the story of Henrietta Lacks, a woman whose DNA led to countless cures, patents, and discoveries. Lesson by Robin Bulleri, animation by Brandon Denmark.

user118501838697417/06/26 13:19

View full lesson: http://ed.ted.com/lessons/how-to-sequence-the-human-genome-mark-j-kiel Your genome, every human's genome, consists of a unique DNA sequence of A's, T's, C's and G's that tell your cells how to operate. Thanks to technological advances, scientists are now able to know the sequence of letters that makes up an individual genome relatively quickly and inexpensively. Mark J. Kiel takes an in-depth look at the science behind the sequence. Lesson by Mark J. Kiel, animation by Marc Christoforidis.

mahdymasrity17/06/26 13:19

View full lesson: http://ed.ted.com/lessons/how-to-sequence-the-human-genome-mark-j-kiel Your genome, every human's genome, consists of a unique DNA sequence of A's, T's, C's and G's that tell your cells how to operate. Thanks to technological advances, scientists are now able to know the sequence of letters that makes up an individual genome relatively quickly and inexpensively. Mark J. Kiel takes an in-depth look at the science behind the sequence. Lesson by Mark J. Kiel, animation by Marc Christoforidis.

Cyrille Yova17/06/26 10:09

View full lesson on ed.ted.com http://ed.ted.com/lessons/the-twisting-tale-of-dna-judith-hauck What do a man, a mushroom, and an elephant have in common? A very long and simple double helix molecule makes us more similar and much more different than any other living thing. But, how does a simple molecule determine the form and function of so many different living things? Lesson by Judith Hauck, animation by Cameron Slayden.

Similar Movie Recommendations

Blog

Common Types

Comedy

Comedy stories are designed to entertain through humor. Popular formats include situational comedy, sketch-style humor, workplace comedy, and romantic comedy.

Action and Adventure

Action titles emphasize excitement, physical conflict, heroic characters, and fast-paced storytelling. Adventure titles often feature exploration, survival, or epic journeys.

Crime and Mystery

Crime dramas follow investigators, detectives, lawyers, or journalists as they solve criminal cases. Mystery stories encourage audiences to uncover clues alongside the characters.

Science Fiction

Science fiction explores futuristic technology, space travel, artificial intelligence, alternate realities, and scientific speculation.

Horror

Horror storytelling creates suspense through psychological tension, supernatural events, monsters, or survival scenarios.

Romance

Romantic stories focus primarily on relationships, love arcs, and emotional development between characters.

Animation

Animation includes works for children, families, and adults, ranging from educational content to complex dramatic storytelling.

Romance

Romantic stories focus primarily on relationships, love arcs, and emotional development between characters.