Genetic landscape of human mitochondrial genome using whole-genome sequencing

Author:

Wang Yijing,Zhao Guihu,Fang Zhenghuan,Pan Hongxu,Zhao Yuwen,Wang Yige,Zhou Xun,Wang Xiaomeng,Luo Tengfei,Zhang Yi,Wang Zheng,Chen Qian,Dong Lijie,Huang Yuanfeng,Zhou Qiao,Xia Lu,Li Bin,Guo JifengORCID,Xia Kun,Tang BeishaORCID,Li JinchenORCID

Abstract

Abstract Increasing evidences suggest that mitochondrial dysfunction is implicated in diseases and aging, and whole-genome sequencing (WGS) is the most unbiased method in analyzing the mitochondrial genome (mtDNA). However, the genetic landscape of mtDNA in the Chinese population has not been fully examined. Here, we described the genetic landscape of mtDNA using WGS data from Chinese individuals (n = 3241). We identified 3892 mtDNA variants, of which 3349 (86%) were rare variants. Interestingly, we observed a trend toward extreme heterogeneity of mtDNA variants. Our study observed a distinct purifying selection on mtDNA, which inhibits the accumulation of harmful heteroplasmies at the individual level: (1) mitochondrial dN/dS ratios were much <1; (2) the dN/dS ratio of heteroplasmies was higher than homoplasmies; (3) heteroplasmies had more indels and predicted deleterious variants than homoplasmies. Furthermore, we found that haplogroup M (20.27%) and D (20.15%) had the highest frequencies in the Chinese population, followed by B (18.51%) and F (16.45%). The number of variants per individual differed across haplogroup groups, with a higher number of homoplasmies for the M lineage. Meanwhile, mtDNA copy number was negatively correlated with age but positively correlated with the female sex. Finally, we developed an mtDNA variation database of Chinese populations called MTCards (http://genemed.tech/mtcards/) to facilitate the query of mtDNA variants in this study. In summary, these findings contribute to different aspects of understanding mtDNA, providing a better understanding of the genetic basis of mitochondrial-related diseases.

Funder

Innovation-Driven Project of Central South University

Young Elite Scientist Sponsorship Program

Hunan Science and Technology Innovation Platform and Talent Program

National Natural Science Foundation of China

Hunan Innovative Province Construction Project

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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