> [...] Furthermore, mutations happen on the level of DNA, not on the level of either organelles or organs.
This is all besides the point. Mitochondria are just an easy example because of the marked difference in mutation rate, and my loosely worded bit about fingers evolving should obviously be taken as "some parts of the genome associated with the development of fingers."
> Apart from that, mutation rate is (not quite, but more or less) uniform across the whole genome (the exceptions, due to e.g. GC bias, are not relevant here).
Not my field, but I'm pretty sure you're incorrect. Here's a citation:
https://www.ncbi.nlm.nih.gov/pubmed/11057667?dopt=Abstract
>> A few patterns have been found: proteins involved in antagonistic co-evolution (for example, immune genes, parasite antigens and reproductive conflict genes) tend to be rapidly evolving, and there is a correlation between the rate of protein evolution and the mutation rate of the gene. Here we report a new highly statistically significant predictor of a protein's rate of evolution, and show that linked genes have similar rates of protein evolution.
>This is virtually certainly not the case, because of what I’ve just described. Selection is sufficient to describe the outcome, and there is no evidence whatsoever to point to the mechanism you postulate.
This is virtually certainly not the case, because of what I've just cited.
> Evolutionary mutation rate is governed by effective population size and generation time.
I'm not arguing that these aren't factors, but we do have good reason to believe that the rate of change for some subsets of the genome can itself change.
Here's another source:
https://www.ncbi.nlm.nih.gov/pubmed/10469563?dopt=Abstract
>> Our results provide the first substantial statistical evidence for the existence of a regional variation in the synonymous substitution rate within the mammalian genome, indicating that different chromosomal regions evolve at different rates. This regional phenomenon which shapes gene evolution could reflect the existence of 'evolutionary rate units' along the chromosome.