Micro organism brought back to life after 30 years

AI Thread Summary
The discussion centers on the potential for extracting and genetically engineering the properties of tardigrades into the human genome, particularly in the context of survival during space travel. Participants highlight the advancements in gene editing technologies, such as CRISPR, which allow for the insertion of foreign DNA into human cells. However, there are significant challenges in transferring tardigrade genes, as not all biological traits are easily modular or transferable across different organisms. The conversation also touches on the hardiness of tardigrades, attributed to their ability to dehydrate their cells, and speculates on the feasibility of modifying humans to achieve similar resilience. While the idea is intriguing, it is deemed highly improbable, with suggestions that there are simpler methods for preserving human life during long space journeys. Overall, the discussion emphasizes the complexity of genetic engineering and the limitations of current technology in achieving such ambitious goals.
Keiran OConnor
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http://gizmodo.com/frozen-tardigrade-brought-back-to-life-after-30-years-1753152359

Sorry if this is the wrong place for this post am only posting to get a few good responses if possible :).

Is there any way we could extract the properties in the gnome of the tardigrade and genetically engineer them inside of our own gnome ?

Nanotechnology could be instructed to implement the genes ?. If we could we could probably stay alive through space travel.

If anybody is doing there A-Levels don't listen to what I am saying.
 
Biology news on Phys.org
We currently have decent technology to insert foreign DNA into the genome of human cells (the newly developedhttps://www.physicsforums.com/insights/dont-fear-https://www.physicsforums.com/insights/dont-fear-crispr-new-gene-editing-technologies-wont-lead-designer-babies/-new-gene-editing-technologies-wont-lead-designer-babies/), so no need to turn to nanotechnology. However, understanding which genes allow the tardigrade genome allow it to survive extreme conditions and whether these traits could be transferred to other organisms with very different biology is not clear. Not all of biology is modular and can easily be transferred between organisms, especially properties that rely on the system-wide function of the organism.

Tardigrades are not the only organism to be revived after long periods of time, so there may be different ways of achieving such properties. For example, plants have grown from 30,000 year old seeds: http://www.nature.com/news/wild-flower-blooms-again-after-30-000-years-on-ice-1.10069
 
I'm not a tardigrade expert but I believe their hardiness stems from their ability to dehydrate their cells.
Modifying humans to do the same would likely require a complete overhaul of the genome, and may not even be possible in the case of neurons. It would be an interesting experiment to see if the tardigrades retain learning after being frozen/desiccated.
In sum, I don't think it's necessarily impossible but there's probably far easier ways to put somebody 'on ice' for space travel.
 
Keiran OConnor said:
http://gizmodo.com/frozen-tardigrade-brought-back-to-life-after-30-years-1753152359

Sorry if this is the wrong place for this post am only posting to get a few good responses if possible :).

Is there any way we could extract the properties in the gnome of the tardigrade and genetically engineer them inside of our own gnome ?

Nanotechnology could be instructed to implement the genes ?. If we could we could probably stay alive through space travel.

If anybody is doing there A-Levels don't listen to what I am saying.

Highly improbable.

Are you implying that someone "doing there A-Levels" couldn't answer the question, or that they couldn't ask a better question than you have up there? Confused here.
 
Not implying any of those things, my first post on here was speculative and I was told people studying use this forum for tangible research. Basically saying this isn't tangible just a thought. I only have a A-Level no higher :).
 
Genome not garden gnome haha
 
https://www.discovermagazine.com/the-deadliest-spider-in-the-world-ends-lives-in-hours-but-its-venom-may-inspire-medical-miracles-48107 https://en.wikipedia.org/wiki/Versutoxin#Mechanism_behind_Neurotoxic_Properties https://www.sciencedirect.com/science/article/abs/pii/S0028390817301557 (subscription or purchase requred) he structure of versutoxin (δ-atracotoxin-Hv1) provides insights into the binding of site 3 neurotoxins to the voltage-gated sodium channel...
Popular article referring to the BA.2 variant: Popular article: (many words, little data) https://www.cnn.com/2022/02/17/health/ba-2-covid-severity/index.html Preprint article referring to the BA.2 variant: Preprint article: (At 52 pages, too many words!) https://www.biorxiv.org/content/10.1101/2022.02.14.480335v1.full.pdf [edited 1hr. after posting: Added preprint Abstract] Cheers, Tom

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