because RNA depend to DNA.
because they where on shrooms when they said that
DNA I think
It is believed that RNA predates DNA in the evolution of life on Earth. RNA is thought to have played a crucial role in early life processes, such as catalyzing chemical reactions and storing genetic information. Over time, DNA likely evolved from RNA as a more stable and efficient means of storing genetic information.
yes
In the theory of how life began, scientists have theorized that DNA evolved through natural selection. The challenge remains to develop a theory to explain how RNA developed from the primordial soup which scientists believe constituted the Earth's surface 3.8 billion years ago. Did evolution start in space, in oceans, salt pans, volcanic exhalatives or in underground cavities?
If you think about it, it sort of is. But what scientists can't replicate is the creation of the original DNA. What scientists do is twist god's creation by taking the DNA of another creature, sticking that DNA in an egg cell, and place the egg cell in the original DNA doner.
Scientists discovered chromosomes in DNA
Yes. Recent DNA testing has proved that interbreeding did occur.
Human DNA is very similar to that of animals, as we share a common ancestry with many species. In fact, humans share about 98 of their DNA with chimpanzees, our closest living relatives. This similarity in DNA helps scientists understand the relationships between different species and how they have evolved over time.
I think it has to be an embryo or it won't work. Plant embryos are inside the seed.
DNA is used as evidence to support the theory of evolution by comparing the genetic similarities and differences between different species. By analyzing the DNA sequences of organisms, scientists can trace evolutionary relationships and determine how species have evolved over time. This genetic evidence provides strong support for the idea that all living things are related and have evolved from a common ancestor.
By comparing the DNA of monkeys and humans, scientists can identify similarities and differences that provide clues about the evolutionary relationship between the two species. The more similar the DNA sequences are, the more closely related the species are believed to be in terms of their evolutionary history. This comparison helps scientists understand how monkeys and humans are related and how they have evolved over time.