Showing posts with label genetic manipulation. Show all posts
Showing posts with label genetic manipulation. Show all posts

Friday, September 24, 2021

The light-emitting cells are tools that can use for many purposes.



"Illumination of a book (“Paradise Lost,” by John Milton) with the first generation of nano bionic light-emitting plants. Credit: Seon-Yeong Kwak" (ScitechDaily/The Next Generation of Nanobionic Light-Emitting Plants)


As you see in the image above this text, the bioluminescence plants can produce a quite bright shine of light. That means the bio-light can use as the normal light source. Maybe in the future, we are using light-emitting cells as regular light sources. 

If the genome that makes the cell shine transfer to the cells. It makes them shine. The bioluminescence light will make it easier to follow the behavior of the cells. If in some plants is delivered the genetically engineered corn or other species. The biological light makes it easier to follow how effective those species can be. If we are thinking the bioluminescence and genetically engineered vegetables the shining meat-eating vegetables can revolutionize the biological defense of the nutrient vegetables. 


The xenomorphs are giving an interesting model for biological defense against pests. In this wild vision, the food vegetables are in the form of carnivorous plants before they would be ready for harvest. So before the vegetable is ready for the food it would be a carnivorous plant. And when it's ready for harvest it turns to regular corn of food vegetable. 


This kind of vegetable is possible to create by using genetic engineering. In the beginning, there is DNA that makes the plant carnivorous. And at a certain point of the DNA turns to the DNA of the regular vegetable. That thing requires that two bites of the DNA are connected. 

The bugs like grasshoppers are causing very big losses for corn and other nutrient vegetables. There are the visions that there would plant the carnivorous plant near those food vegetables for calling those bugs to wrong vegetables. And that thing can lower the number of bugs in that area. If those carnivorous plants are shine and smell like food vegetables. That would make an effective way to decrease the number of harmful bugs like grasshoppers in that area. 


The bioluminescence light can give electricity to the photoelectric cells. Or they can use it to replace the LED lights. 


The nano biotic plants that are emitting light can be used as bio batteries or energy sources for the nano-scale microchips that require extremely low electricity. The shining bacteria or vegetables can use to send light to the photoelectric cells and that thing can make electricity for tiny microchips and systems that need very low electricity. 

Also, the nano biotic light-emitting bacteria can use for other purposes. One of those places where that thing can be useful is light amplifiers. The light-emitting vegetables install in the light element of the light amplifier. And that thing is making it possible to use the bioluminescence light for that kind of instrument. The nutrient is the thing that adjusts the brightness of the light element. When the bio light element gets more nutrients, it will make brighter light. 


https://scitechdaily.com/the-next-generation-of-nanobionic-light-emitting-plants/


Image:()https://scitechdaily.com/the-next-generation-of-nanobionic-light-emitting-plants/


()https://visionsoftheaiandfuture.blogspot.com/

Friday, December 6, 2019

Photosynthesis and the dark reaction in the point of view of the biotechnology and medicines





Photosynthesis and the dark reaction in the point of view of the biotechnology and medicines

The light is a vital element for photosynthesis.

The dark reaction of vegan cells turns photosynthetic cells to cells, which are using some other energy source. This reaction would produce carbon dioxide in some bacteria and the dark reaction would make bacteria the thing, that uses oxygen. So this is why photosynthetic organisms need light.

What would we use with bacteria, what has the opposite metabolism? In this case, the bacteria would start to release oxygen in the dark conditions. If that kind of bacteria can be created by using advanced biotechnology that kind of organism can save human lives.

But when we are thinking about the ability to turn the metabolism of the bacteria opposite. That means the bacteria would start to produce oxygen when it goes to dark. And this thing would make those bacteria a very effective tool for medical use.

If we are thinking about the cases, where the person has faced injuries, and the loss of oxygen is huge, this kind of bacteria can save the life of the victim. In this case, the bacteria would start to oxygenize the blood, and it would make possible to avoid the brain and other neural damages. That kind of innovation, where the cells would start to produce oxygen is based on the opposite version of photosynthesis.

Innovations like would be really good to think because if the medicines can replace by some biological solutions, that thing would make a cheap and more effective method to make sure for saving human lives. This kind of bacteria would be a thing, what lives only when it is needed. When the need for that bacteria would be needed, that thing can be destroyed with antibiotics, which is created for it.

RNA virus can create artificial bone marrow.

The O- blood can be created by using cell cultures, but by using genetic manipulation the bacteria can transform to create the blood cells. The genetically manipulated bacteria can be used to create the "Green blood" or even create artificial bone marrow by using RNA-virus, which bases the "Chimera virus". And that thing makes possible to create very much blood cells that are specially designed for some person. If the RNA virus would be created by using the genomes of some certain person, the antigenes of those blood cells are fitting perfectly to that certain individual.

When people are thinking about this kind of bacteria, it can be used as the universal blood, which replaces the normal blood. If we would use the artificial retroviruses for adjusting the proteins of the cells, those cells can create the protein core, which is similar to the human own antigenes. In the most advanced and theoretical models, the human DNA would be transformed into RNA, which manipulates bacteria to create the blood cells. But that kind of technology is only in the research stage. The thing is that bio- and nanotechnology has many opportunities in medical care.

Image:

https://image.freepik.com/free-photo/dna_1048-4880.jpg

Friday, October 25, 2019

Could this be the thing, that some people don't want you to know about zombies?

Could this be the thing, that some people don't want you to know about zombies?

The simplest way to control zombies, which are made by using tetrodotoxin, which is called "zombie poison" is to use the automatic dispenser, which is normally used in diabetes treatment. In this case, the dispenser would be loaded by using tetrodotoxin. If the level of this poison is right, the person would be totally under the control of other people.

And if the system cannot detect this poison there is a possibility to make the laboratory experiment when the staff will follow the decrease of the tetrodotoxin, and then the system can use a simple clock, which will inject poison to the body of a victim after a certain time. This would be an effective tool in the hands of military and counter-terror operators. Those zombies can be captured enemy operators, who will send back, and then they just kill their ex-partners.

By using genetically engineered bacteria could be possible to create the bacteria, what would create tetrodotoxin, the nervous poison, what can kill somebody. There is one more feared influence of this poison, and that is the so-called zombie-effect. If the tetrodotoxin would be given in a certain dose, the person would turn to a robot, who would follow every order, what the master gives to that victim.

That poison is normally in the liver of ball fish, and it is used in some voodoo rituals. Normally the effect of this poison would disappear when the poison is left from the blood.  But there is a possibility that somebody would create genetically engineered bacteria, which could cause a long term effect on the victim.

The bacteria would be the combination of the bacteria, and the genomes, which are taken from the ball fish liver, and what controls the production of the tetrodotoxin. Also, those bacteria can have the genomes, which can keep the tetrodotoxin at a certain level in the blood system. That thing can base that the production of this poison begins when the level is low and stops when the level of this poison is too high.

That thing can base a similar thing, which controls the level of immunological antibody, what the B-immune cells are producing. So this kind of bacteria can be produced by using advanced bio- and nanotechnology, which allows combinate the DNA bites together in certain points of DNA.  That kind of genetical engineered bacteria would be the next-generation biological weapon. The thing, what the actor needs are the laboratory, and things that can be used in that operation.

The most difficult thing is to create the genetic regulator, which will adjust the level of the poison. It would make people robots, what are following the orders and never say no. Commanding those victims can happen by telling them what to do, and if that thing would be made to some bank director, that person would transfer all money from the bank to the criminals.

Six clicks separate people from each other.

“A long-observed social phenomenon suggests that people across the globe are separated by surprisingly few connections. Credit: Stock” (Scit...