Mitochondrial DNA Genomes Reveal Relaxed Purifying Selection During Human Population Expansion after the Last Glacial Maximum

Author:

Zheng Hong-Xiang12ORCID,Yan Shi34ORCID,Zhang Menghan56ORCID,Gu Zhenglong17ORCID,Wang Jiucun128ORCID,Jin Li128ORCID

Affiliation:

1. State Key Laboratory of Genetic Engineering, School of Life Sciences, Human Phenome Institute and Center for Evolutionary Biology, Fudan University , Shanghai , China

2. Collaborative Innovation Center for Genetics and Development, Fudan University , Shanghai , China

3. Ministry of Education Key Laboratory of Contemporary Anthropology, Department of Anthropology and Human Genetics, School of Life Sciences, Fudan University , Shanghai , China

4. School of Ethnology and Sociology, Minzu University of China , Beijing , China

5. Institute of Modern Languages and Linguistics, Fudan University , Shanghai , China

6. Research Institute of Intelligent Complex Systems, Fudan University , Shanghai , China

7. Greater Bay Area Institute of Precision Medicine (Guangzhou), Fudan University , Guangzhou , China

8. Research Unit of Dissecting Population Genetics and Developing New Technologies for Treatment and Prevention of Skin Phenotypes and Dermatological Diseases (2019RU058), Chinese Academy of Medical Sciences , Beijing , China

Abstract

Abstract Modern humans have experienced explosive population growth in the past thousand years. We hypothesized that recent human populations have inhabited environments with relaxation of selective constraints, possibly due to the more abundant food supply after the Last Glacial Maximum. The ratio of nonsynonymous to synonymous mutations (N/S ratio) is a useful and common statistic for measuring selective constraints. In this study, we reconstructed a high-resolution phylogenetic tree using a total of 26,419 East Eurasian mitochondrial DNA genomes, which were further classified into expansion and nonexpansion groups on the basis of the frequencies of their founder lineages. We observed a much higher N/S ratio in the expansion group, especially for nonsynonymous mutations with moderately deleterious effects, indicating a weaker effect of purifying selection in the expanded clades. However, this observation on N/S ratio was unlikely in computer simulations where all individuals were under the same selective constraints. Thus, we argue that the expanded populations were subjected to weaker selective constraints than the nonexpanded populations were. The mildly deleterious mutations were retained during population expansion, which could have a profound impact on present-day disease patterns.

Funder

National Natural Science Foundation of China

CAMS Innovation Fund for Medical Sciences

Publisher

Oxford University Press (OUP)

Reference70 articles.

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