Comparative analysis of chimpanzee and human Y chromosomes unveils complex evolutionary pathway

被引:0
|
作者
Yoko Kuroki
Atsushi Toyoda
Hideki Noguchi
Todd D Taylor
Takehiko Itoh
Dae-Soo Kim
Dae-Won Kim
Sang-Haeng Choi
Il-Chul Kim
Han Ho Choi
Yong Sung Kim
Yoko Satta
Naruya Saitou
Tomoyuki Yamada
Shinichi Morishita
Masahira Hattori
Yoshiyuki Sakaki
Hong-Seog Park
Asao Fujiyama
机构
[1] RIKEN Genomic Sciences Center,
[2] Graduate School of Frontier Sciences,undefined
[3] The University of Tokyo,undefined
[4] Mitsubishi Research Institute,undefined
[5] Genome Research Center,undefined
[6] Korea Research Institute of Bioscience and Biotechnology,undefined
[7] University of Science and Technology,undefined
[8] The Graduate University for Advanced Studies,undefined
[9] National Institute of Genetics,undefined
[10] Kitasato University,undefined
[11] National Institute of Informatics,undefined
来源
Nature Genetics | 2006年 / 38卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The mammalian Y chromosome has unique characteristics compared with the autosomes or X chromosomes. Here we report the finished sequence of the chimpanzee Y chromosome (PTRY), including 271 kb of the Y-specific pseudoautosomal region 1 and 12.7 Mb of the male-specific region of the Y chromosome. Greater sequence divergence between the human Y chromosome (HSAY) and PTRY (1.78%) than between their respective whole genomes (1.23%) confirmed the accelerated evolutionary rate of the Y chromosome. Each of the 19 PTRY protein-coding genes analyzed had at least one nonsynonymous substitution, and 11 genes had higher nonsynonymous substitution rates than synonymous ones, suggesting relaxation of selective constraint, positive selection or both. We also identified lineage-specific changes, including deletion of a 200-kb fragment from the pericentromeric region of HSAY, expansion of young Alu families in HSAY and accumulation of young L1 elements and long terminal repeat retrotransposons in PTRY. Reconstruction of the common ancestral Y chromosome reflects the dynamic changes in our genomes in the 5–6 million years since speciation.
引用
收藏
页码:158 / 167
页数:9
相关论文
共 50 条
  • [31] Discovery of human inversion polymorphisms by comparative analysis of human and chimpanzee DNA sequence assemblies
    Feuk, L
    MacDonald, JR
    Tang, T
    Carson, AR
    Li, M
    Rao, G
    Khaja, R
    Scherer, SW
    PLOS GENETICS, 2005, 1 (04): : 489 - 498
  • [32] Comparative analysis of human and chimpanzee full-length genomic MHC class I a sequences revealed unreported signatures of evolutionary relationships
    Heijmans, Corrine
    Bontrop, Ronald E.
    Sanchez-Mazas, Alicia
    de Groot, Natasja G.
    HLA, 2022, 99 (05) : 439 - 439
  • [33] Evolutionary breakpoints through a high-resolution comparative map between porcine chromosomes 2 and 16 and human chromosomes
    Lahbib-Mansais, Yvette
    Mompart, Florence
    Milan, Denis
    Leroux, Sophie
    Faraut, Thomas
    Delcros, Chantal
    Yerle, Martine
    GENOMICS, 2006, 88 (04) : 504 - 512
  • [34] KALLMANN SYNDROME GENE ON THE X-CHROMOSOME AND Y-CHROMOSOMES - IMPLICATIONS FOR EVOLUTIONARY DIVERGENCE OF HUMAN SEX-CHROMOSOMES
    INCERTI, B
    GUIOLI, S
    PRAGLIOLA, A
    ZANARIA, E
    BORSANI, G
    TONLORENZI, R
    BARDONI, B
    FRANCO, B
    WHEELER, D
    BALLABIO, A
    CAMERINO, G
    NATURE GENETICS, 1992, 2 (04) : 311 - 314
  • [35] A comparative analysis of regulatory regions of the transthyretin gene in the mouse, human, and chimpanzee genomes
    Nadezhdin, EV
    Vinogradova, TV
    Sverdlov, ED
    RUSSIAN JOURNAL OF BIOORGANIC CHEMISTRY, 2004, 30 (04) : 344 - 348
  • [36] Comparative Bioinformatic Analysis of the Proteomes of Rabbit and Human Sex Chromosomes
    Pinto-Pinho, Patricia
    Soares, Joao
    Esteves, Pedro
    Pinto-Leite, Rosario
    Fardilha, Margarida
    Colaco, Bruno
    Low, Waiyee
    Hua, Guohua
    ANIMALS, 2024, 14 (02):
  • [37] COMPARATIVE MAPPING OF HUMAN CHROMOSOME-SPECIFIC ALPHA-SATELLITE DNA-SEQUENCES ON THE CHROMOSOMES OF CHIMPANZEE AND MAN
    YUROV, YB
    ALEXANDROV, IA
    SOLOVIEV, IV
    VORSANOVA, SG
    CYTOGENETICS AND CELL GENETICS, 1991, 58 (3-4): : 2132 - 2133
  • [38] A Comparative Analysis of Regulatory Regions of the Transthyretin Gene in the Mouse, Human, and Chimpanzee Genomes
    E. V. Nadezhdin
    T. V. Vinogradova
    E. D. Sverdlov
    Russian Journal of Bioorganic Chemistry, 2004, 30 : 344 - 348
  • [39] A comparative genomic analysis at the chromosomal-level reveals evolutionary patterns of aphid chromosomes
    Huang, Chen
    Ji, Bingru
    Shi, Zhaohui
    Wang, Jiangyue
    Yuan, Jiaqing
    Yang, Peng
    Xu, Xiao
    Jing, Haohao
    Xu, Lulu
    Fu, Jing
    Zhao, Le
    Ren, Yandong
    Guo, Kun
    Li, Gang
    COMMUNICATIONS BIOLOGY, 2025, 8 (01)
  • [40] A comparative analysis of evolutionary changes in human physiological traits
    Vining, Alexander Q.
    Nunn, Charles L.
    AMERICAN JOURNAL OF PHYSICAL ANTHROPOLOGY, 2016, 159 : 324 - 324