These values agree closely with those that we observed for both ].Having a small mitochondrial genome would seem to have the obvious benefit of being less costly and time-consuming to replicate.
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genomes shared a novel gene order that differs substantially from the ancestral chelicerate pattern, with transfer RNA (t RNA) genes apparently having moved much more often than other genes.
Mitochondrial t RNA genes of both species were unusually short, with most of them unable to encode t RNAs that could fold into the canonical cloverleaf structure; indeed, several examples lacked both D- and T-arms.
Both species shared a novel mitochondrial gene order that has diverged extensively from the ancestral chelicerate pattern, with t RNA genes apparently having moved much more often than other genes.
Furthermore, the mitochondrial genomes of both species possessed extremely truncated t RNA genes, with several of these lacking the sequence necessary to code for both D- and T-arms.
Finally, we estimated the divergence time between the two human-associated genome [Genbank accession number: KM114226] length was 14,150 bp and AT-percentage was 71.1%.
For comparison, the 15 other species of Acariformes with complete mitochondrial genomes available in Gen Bank exhibited an average genome size of 14,240 bp (SE 281 bp) and an average AT-percentage of 74.9% (SE 1.7%).
are found on a wide diversity of mammals, including humans; surprisingly little is known, however, about the evolution of this association.
Additional sequence information promises to facilitate studies of —which are the first such genomes available for any member of the genus.
Indeed, the observed levels of sequence divergence suggest that they are not closely related species, although no estimate of divergence time is currently available.