Cookies on this website

We use cookies to ensure that we give you the best experience on our website. If you click 'Accept all cookies' we'll assume that you are happy to receive all cookies and you won't see this message again. If you click 'Reject all non-essential cookies' only necessary cookies providing core functionality such as security, network management, and accessibility will be enabled. Click 'Find out more' for information on how to change your cookie settings.

Resolving the absolute timescale of phylogenetic trees stipulates reliable estimates for the rate of DNA sequence evolution. For this end, various calibration methods have been developed and studied intensively. Intraspecific rate variation among distinct genetic lineages, however, has gained less attention. Here, we have assessed lineage-specific molecular rates of human mitochondrial DNA (mtDNA) by performing tip-calibrated Bayesian phylogenetic analyses. Tip-calibration, as opposed to traditional nodal time stamps from dated fossil evidence or geological events, is based on sample ages and becoming ever more feasible as ancient DNA data from radiocarbon-dated samples accumulate. We focus on subhaplogroups U2, U4, U5a, and U5b, the data including ancient mtDNA genomes from 14C-dated samples (n = 234), contemporary genomes (n = 301), and two outgroup sequences from haplogroup R. The obtained molecular rates depended on the data sets (with or without contemporary sequences), suggesting time-dependency. More notable was the rate variation between haplogroups: U4 and U5a stand out having a substantially higher rate than U5b. This is also reflected in the divergence times obtained (U5a: 17,700 years and U5b: 29,700 years), a disparity not reported previously. After ruling out various alternative causes (e.g., selection, sampling, and sequence quality), we propose that the substitution rates have been influenced by demographic histories, widely different among populations where U4/U5a or U5b are frequent. As with the Y-chromosomal subhaplogroup R1b, the mitochondrial U4 and U5a have been associated with remarkable range extensions of the Yamnaya culture in the Bronze Age.

More information Original publication

DOI

10.1093/gbe/evac097

Type

Journal article

Publication Date

2022-07-01T00:00:00+00:00

Volume

14

Addresses

T, r, a, n, s, m, i, s, s, i, o, n, ,, , I, n, f, e, c, t, i, o, n, ,, , D, i, v, e, r, s, i, f, i, c, a, t, i, o, n, , a, n, d, , E, v, o, l, u, t, i, o, n, , G, r, o, u, p, ,, , M, a, x, , P, l, a, n, c, k, , I, n, s, t, i, t, u, t, e, , f, o, r, , t, h, e, , S, c, i, e, n, c, e, , o, f, , H, u, m, a, n, , H, i, s, t, o, r, y, ,, , K, a, h, l, a, i, s, c, h, e, , S, t, r, a, ß, e, , 1, 0, ,, , G, e, r, m, a, n, y, .

Keywords

Humans, DNA, Mitochondrial, Bayes Theorem, Evolution, Molecular, Phylogeny, Haplotypes, Fossils, Genetic Variation, DNA, Ancient