First next-generation sequencing data for Haploporidae (Digenea: Haploporata): characterization of complete mitochondrial genome and ribosomal operon for Parasaccocoelium mugili Zhukov, 1971

被引:10
|
作者
Atopkin, Dmitry M. [1 ,2 ]
Semenchenko, Alexander A. [3 ]
Solodovnik, Daria A. [1 ]
Ivashko, Yana I. [1 ,2 ]
Vinnikov, Kirill A. [3 ,4 ]
机构
[1] RAS, Fed Sci Ctr East Asia Terr Biodivers, Far Eastern Branch, Vladivostok, Russia
[2] Far Eastern Fed Univ, Dept Cell Biol & Genet, Vladivostok, Russia
[3] Far Eastern Fed Univ, Lab Ecol & Evolutionary Biol Aquat Organisms, Vladivostok, Russia
[4] RAS, Far Eastern Branch, Lab Genet, Natl Sci Ctr Marine Biol, Vladivostok, Russia
基金
俄罗斯科学基金会;
关键词
Haploporidae; NGS; Digenea; Mitochondrial genome; Codon usage; TREMATODA OPISTHORCHIIDAE; CAUSATIVE AGENT; LUNG FLUKE; PLATYHELMINTHES; PHYLOGENY; DNA;
D O I
10.1007/s00436-021-07159-y
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
The first data on a whole mitochondrial genome of Haploporidae, Parasaccocoelium mugili (Digenea: Haploporata: Haploporidae) was generated using the next-generation sequencing (NGS) approach. We sequenced the complete mitochondrial DNA (mtDNA) and ribosomal operon of Parasaccocoelium mugili, intestine parasite of mullet fish. The mtDNA of P. mugili contained 14,021 bp, including 12 protein-coding genes, two ribosomal genes, 22 tRNA genes, and non-coding region. The ribosomal operon of P. mugili was 8308 bp in length, including 18S rRNA gene (1981 bp), ITS1 rDNA (955 bp), 5.8S rRNA gene (157 bp), ITS2 rDNA (268 bp), 28S rRNA gene (4180 bp), and ETS (767 bp). We used the mtDNA protein-coding regions to make phylogenetic reconstructions of Haploporidae. Additionally, we performed the sequence cluster analysis based on codon usage bias of most of currently available mitochondrial genome data for trematodes. The observed gene arrangement in mtDNA sequence of P. mugili is identical to those of Plagiorchis maculosus (Rudolphi, 1802). Results of maximum likelihood (ML) phylogenetic analysis showed that P. mugili was closely related to Paragonimus species from the suborder Xiphidiata. The results of sequence cluster analysis based on codon usage bias showed that P. mugili has the highest similarity with Plagiorchis maculosus (Xiphidiata). Our results do not contradict to proposing a new suborder for Haploporoidea-Haploporata. On the basis of obtained results, the relationship between mitochondrial protein-coding gene rearrangements and synonymous nucleotide substitutions in mitochondrial genomes has been suggested.
引用
收藏
页码:2037 / 2046
页数:10
相关论文
共 50 条
  • [21] The complete mitochondrial genome of Toxotes chatareus (Toxotes; Toxotidae; Carangaria) assembled by the next-generation sequencing data and phylogenetic analysis of Carangaria
    Zhu, Liang
    Jiang, Hui
    Zhang, Longlong
    Cha, Jingmei
    Mao, Bingyu
    Li, Yongxin
    MITOCHONDRIAL DNA PART B-RESOURCES, 2021, 6 (11): : 3233 - 3235
  • [22] Complete mitochondrial genome of Membranipora grandicella (Bryozoa: Cheilostomatida) determined with next-generation sequencing: The first representative of the suborder Malacostegina
    Shen, Xin
    Tian, Mei
    Meng, Xueping
    Liu, Huilian
    Cheng, Hanliang
    Zhu, Changbao
    Zhao, Fangqing
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY D-GENOMICS & PROTEOMICS, 2012, 7 (03): : 248 - 253
  • [23] Complete mitochondrial genome of Siamese cobra (Naja kaouthia) determined using next-generation sequencing
    Singchat, Worapong
    Areesirisuk, Prapatsorn
    Sillapaprayoon, Siwapech
    Muangmai, Narongrit
    Baicharoen, Sudarath
    Suntrarachun, Sunutcha
    Chanhome, Lawan
    Peyachoknagul, Surin
    Srikulnath, Kornsorn
    MITOCHONDRIAL DNA PART B-RESOURCES, 2019, 4 (01): : 577 - 578
  • [24] The complete mitochondrial genome of Kele pig (Sus scrofa) using next-generation deep sequencing
    Ya Tan
    Kai-zhi Shi
    Jing Wang
    Chun-lin Du
    Chun-ping Zhao
    Xiong Zhang
    Li Zhu
    Yi-shun Shang
    Conservation Genetics Resources, 2018, 10 : 195 - 199
  • [25] Complete mitochondrial genome of Opisthotropis andersonii (Serpentes: Colubridae) determined using next-generation sequencing
    Zhang, Liang
    Jiang, Haiying
    Li, Linmiao
    Chen, Jinping
    MITOCHONDRIAL DNA PART B-RESOURCES, 2019, 4 (01): : 1012 - 1013
  • [26] The complete mitochondrial genome of the Hainan Glass Lizard (Dopasia hainanensis) determined by next-generation sequencing
    Cai, Bo
    Guo, Xianguang
    Song, Zhaobin
    Chen, Dali
    MITOCHONDRIAL DNA PART B-RESOURCES, 2020, 5 (01): : 246 - 247
  • [27] The complete mitochondrial genome of Xizicus (Haploxizicus) maculatus revealed by Next-Generation Sequencing and phylogenetic implication (Orthoptera, Meconematinae)
    Mao Shaoli
    Yuan Hao
    Lu Chao
    Zhou Yafu
    Shi Fuming
    Wang Yuchao
    ZOOKEYS, 2018, (773) : 57 - 67
  • [28] Characterization and phylogenetic analysis of the complete mitochondrial genome from Rock Scallop (Crassadoma gigantea) using next-generation sequencing
    Liao, Dejie
    Zhou, Ying
    Tong, Jingou
    Cao, Shanmao
    Yu, Xiaomu
    Fu, Beide
    Yang, Dazuo
    MITOCHONDRIAL DNA PART B-RESOURCES, 2018, 3 (02): : 827 - 828
  • [29] The complete mitochondrial genome ofSturisomatichthys panamense(Siluriformes: Loricariidae) analysed by next-generation sequencing and phylogeny of the catfish subfamily Loricariinae (Siluriformes: Loricariidae)
    Ren, Fang
    Chen, Dunxue
    Ma, Xiuhui
    BIOLOGIA, 2020, 75 (09) : 1365 - 1372
  • [30] Complete mitochondrial genome of Sinogastromyzon szechuanensis (Teleostei, Cypriniformes, Balitoridae) obtained using next-generation sequencing
    Li, Wei
    Chen, Xiaggojiang
    Zheng, Mengmeng
    Wang, Yin
    Zhou, Xingchen
    Li, Haiyang
    Zhou, Guolong
    Li, Bichun
    MITOCHONDRIAL DNA PART B-RESOURCES, 2021, 6 (01): : 69 - 70