The complete nucleotide sequence and multipartite organization of the tobacco mitochondrial genome: comparative analysis of mitochondrial genomes in higher plants

被引:0
|
作者
Y. Sugiyama
Y. Watase
M. Nagase
N. Makita
S. Yagura
A. Hirai
M. Sugiura
机构
[1] Nagoya University,Center for Gene Research
[2] Nagoya City University,Graduate School of Natural Sciences
[3] Meijo University,Faculty of Agriculture
来源
关键词
Mitochondrial genome; Multipartite organization; Repeated sequence; Homologous recombination;
D O I
暂无
中图分类号
学科分类号
摘要
Tobacco is a valuable model system for investigating the origin of mitochondrial DNA (mtDNA) in amphidiploid plants and studying the genetic interaction between mitochondria and chloroplasts in the various functions of the plant cell. As a first step, we have determined the complete mtDNA sequence of Nicotiana tabacum. The mtDNA of N. tabacum can be assumed to be a master circle (MC) of 430,597 bp. Sequence comparison of a large number of clones revealed that there are four classes of boundaries derived from homologous recombination, which leads to a multipartite organization with two MCs and six subgenomic circles. The mtDNA of N. tabacum contains 36 protein-coding genes, three ribosomal RNA genes and 21 tRNA genes. Among the first class, we identified the genes rps1 and ψrps14, which had previously been thought to be absent in tobacco mtDNA on the basis of Southern analysis. Tobacco mtDNA was compared with those of Arabidopsis thaliana, Beta vulgaris, Oryza sativa and Brassica napus. Since repeated sequences show no homology to each other among the five angiosperms, it can be supposed that these were independently acquired by each species during the evolution of angiosperms. The gene order and the sequences of intergenic spacers in mtDNA also differ widely among the five angiosperms, indicating multiple reorganizations of genome structure during the evolution of higher plants. Among the conserved genes, the same potential conserved nonanucleotide-motif-type promoter could only be postulated for rrn18-rrn5 in four of the dicotyledonous plants, suggesting that a coding sequence does not necessarily move with the promoter upon reorganization of the mitochondrial genome.
引用
收藏
页码:603 / 615
页数:12
相关论文
共 50 条
  • [21] Complete mitochondrial genome sequence and comparative analysis of the cultivated yellow nutsedge
    Niu, Lu
    Zhang, Yuanyu
    Yang, Chunming
    Yang, Jing
    Ren, Wei
    Zhong, Xiaofang
    Zhao, Qianqian
    Xing, Guojie
    Zhao, Yongguo
    Yang, Xiangdong
    PLANT GENOME, 2022, 15 (03):
  • [22] The complete nucleotide sequence and gene organization of the mitochondrial genome of the bumblebee, Bombus ignitus (Hymenoptera: Apidae)
    Cha, So Young
    Yoon, Hyung Joo
    Lee, Eun Mee
    Yoon, Myung Hee
    Hwang, Jae Sam
    Jin, Byung Rae
    Han, Yeon Soo
    Kim, Iksoo
    GENE, 2007, 392 (1-2) : 206 - 220
  • [23] THE COMPLETE NUCLEOTIDE-SEQUENCE AND GENE ORGANIZATION OF CARP (CYPRINUS-CARPIO) MITOCHONDRIAL GENOME
    CHANG, YS
    HUANG, FL
    LO, TB
    JOURNAL OF MOLECULAR EVOLUTION, 1994, 38 (02) : 138 - 155
  • [24] Complete nucleotide sequence of the mitochondrial genome of a salamander, Mertensiella luschani
    Zardoya, R
    Malaga-Trillo, E
    Veith, M
    Meyer, A
    GENE, 2003, 317 (1-2) : 17 - 27
  • [25] The complete nucleotide sequence of the mitochondrial genome of Epicauta aptera Kaszab
    Jie, Hang
    Lei, Meiyan
    Li, Pinming
    Feng, Xiaolan
    Zeng, Dejun
    Zhao, Guijun
    Zhu, Jibin
    Zhang, Chenglu
    Yu, Mi
    Huang, Ya
    Chen, Qiang
    MITOCHONDRIAL DNA PART B-RESOURCES, 2016, 1 (01): : 489 - 490
  • [26] The chloroplast genome of mulberry: complete nucleotide sequence, gene organization and comparative analysis
    Ravi, V.
    Khurana, Jitendra P.
    Tyagi, Akhilesh K.
    Khurana, Paramjit
    TREE GENETICS & GENOMES, 2007, 3 (01) : 49 - 59
  • [27] The chloroplast genome of mulberry: complete nucleotide sequence, gene organization and comparative analysis
    V. Ravi
    Jitendra P. Khurana
    Akhilesh K. Tyagi
    Paramjit Khurana
    Tree Genetics & Genomes, 2006, 3 : 49 - 59
  • [28] Complete mitochondrial genome of compactin-producing fungus Penicillium solitum and comparative analysis of Trichocomaceae mitochondrial genomes
    Eldarov, Michael A.
    Mardanov, Andrey V.
    Beletsky, Alexey V.
    Dzhavakhiya, Vakhtang V.
    Ravin, Nikolai V.
    Skryabin, Konstantin G.
    FEMS MICROBIOLOGY LETTERS, 2012, 329 (01) : 9 - 17
  • [29] Gene organization and complete sequence of the mitochondrial genome of Linwu mallard
    Tian, Ke-Xiong
    Liu, Li-Li
    Yu, Qi-Fang
    He, Shao-Ping
    He, Jian-Hua
    MITOCHONDRIAL DNA PART A, 2016, 27 (02) : 910 - 911
  • [30] Comparative Analysis of the Complete Mitochondrial Genomes for Development Application
    Kenechukwu, Nwobodo Alexander
    Li, Man
    An, Lei
    Cui, Miaomiao
    Wang, Cailin
    Wang, Aili
    Chen, Yulin
    Du, Saijun
    Feng, Chenyao
    Zhong, Sijin
    Gao, Yuying
    Cao, Xueyan
    Wang, Li
    Obinna, Ezenwali Moses
    Mei, Xinyu
    Song, Yuanjian
    Li, Zongyun
    Qi, Dashi
    FRONTIERS IN GENETICS, 2019, 9