The main driving force of evolution is natural which are useful by killing off those who haven't got them.
That is how we evolve, in a nutshell. hola family!!!
Mutations are the source of those variations. No variations, no evolution.
Without mutation there can be no evolution. Without evolution there can be no speciation.
mutation brings about variation which is the basis of evolution and the two types of variation are heritable and non-heritable
When a mutation occurs in the replication process, it changes certain features, like maybe better eyesight, and maybe bigger eyes, or bigger claws, and the meaning of evolution is when something changes into a better form.
Mutation is one of the mechanism by which new alleles enter the population gene pool. Evolution is often defined as the changing of allele frequencies in population gene pools. A mutation could change the frequency of a particular allele from zero to non-zero.
Due to genes and mutations, organisms show variation within a species. Changes in the environment can put a selective pressure on the species - certain mutations may be more beneficial, therefore more individuals with that mutation will exist, as they survive and breed. This process is called Natural Selection.
A mutation is any change in the DNA. Mutations provide the genetic variation that evolution by natural selection needs to select from.
A mutation is a change in the DNA sequence of an organism. Mutations are sources of genetic variation, and they can drive evolution by introducing new traits that may be advantageous, neutral, or harmful in different environments. Over time, beneficial mutations can be selected for, leading to changes in the population and contributing to the process of evolution.
Without mutation there can be no evolution. Without evolution there can be no speciation.
Yes, mutations are crucial for the process of evolution as they introduce genetic variation into populations. This variation allows for natural selection to act upon, leading to the adaptation and evolution of species over time.
Mutations are changes in the DNA sequence that can lead to genetic variation. These variations can result in new traits or characteristics in organisms. The randomness of mutations is important in evolution because it introduces new genetic material into a population, which can lead to adaptations that help organisms survive and reproduce in changing environments.
Yes mutations are the basis of evolution as they provide variance in the phenotype that could have evolutionary advantages
Genetic mutation does not always lead to sterilization as you point out. This however is not the way evolution happens. Evolution occurs mainly through small adaptive changes over a long period of time that are not mutations. Evolution does not happen suddenly.
Can be, but most mutations are neutral. If you had a gene that coded for a hydrophobic amino acid and it was point mutated to another gene that coded for another hydrophobic amino acid then there would be no change in the protein fold and no danger. Statistically this the the majority of mutation cases.
Not always. Mutations can have either beneficial, neutral, or harmful effects on organisms. Whether a mutation is beneficial or not depends on how it impacts the organism's ability to survive and reproduce in its environment.
The mutation theory is basically stating that mutation is one of the major factors that cause evolution. The mutation has to be a beneficial mutation, meaning that it has to help the survival of the organism that got the mutation. The mutation causes knew genes and diversity which can spread quickly throughout a population and eventually change the frequency of alleles (causes mutation) Remember the mutation has to be beneficial to the survival of the organism.
Most mutations that occur have a neutral effect, or none at all, so they would not affect evolution. Organisms with mutations that cause detrimental impact typically will not survive; therefore, they will not reproduce, and the mutation will not be passed on, so the species will not be affected overall. Beneficial mutations are typically the only mutations that will affect an organism's posterity and the evolution of its species, but good mutations are very rare. This is why most mutations have little effect on the evolution of a species.
for Plato it isn't A or B the answer is D