because I want to take a look how mutation rate, generation time an selection pressure interacts with the rate of evolution (evolution velocity) I need different measurements:
* generation times of any species * mutation rates of any species and * the number of species in a population that came to reproduction and the number of the reproducted organism that also came to reproduction. With this two data I can calculate the selection pressure as the ratio of (number of reproducters)/(number of childs that also came to reproduction).
If you could give me some of needed information I would be very happy.
because I want to take a look how mutation rate, generation time an selection pressure interacts with the rate of evolution (evolution velocity) I need different measurements:
* generation times of any species * mutation rates of any species and * the number of species in a population that came to reproduction and the number of the reproducted organism that also came to reproduction. With this two data I can calculate the selection pressure as the ratio of (number of reproducters)/(number of childs that also came to reproduction).
If you could give me some of needed information I would be very happy.
It gets very complicated. The most important thing you need to know is probably that evoution is measured in generations, so generation time gives a linear response. The next most important thing is the selection coefficient, s, of a new mutation. The most fit genotype is assumed to have a fitness of 1, so other genotypes have fitness of less than one, and s is basically the difference between the most fit genotype and the least fit genotype. The chance of an advantageous mutation being fixed is 2s, regardless of the size of the population (beyond a certain minimum of course). The problem is that if the mutation rate is too high then drift will dominate. In natural populations the equilibrium frequency for recessive detrimental alleles is fairly low, because the mutation rate is low, but in simulated evolution this can destroy adaptive progress.