Characterization of the Rosellinia necatrix Transcriptome and Genes Related to Pathogenesis by Single-Molecule mRNA Sequencing

被引:5
|
作者
Kim, Hyeongmin [1 ]
Lee, Seung Jae [2 ]
Jo, Ick-Hyun [3 ]
Lee, Jinsu [1 ]
Bae, Wonsil [1 ]
Kim, Hyemin [1 ]
Won, Kyungho [4 ]
Hyun, Tae Kyung [5 ]
Ryu, Hojin [1 ]
机构
[1] Chungbuk Natl Univ, Dept Biol, Cheongju 28644, South Korea
[2] DNA Link Inc, Bioinformat Team, Seoul 03721, South Korea
[3] Rural Dev Adm, Natl Inst Hort & Herbal Sci, Dept Herbal Crop Res, Eumseong 27709, South Korea
[4] Rural Dev Adm, Natl Inst Hort & Herbal Sci, Pear Res Inst, Naju 58126, South Korea
[5] Chungbuk Natl Univ, Dept Ind Plant Sci & Technol, Cheongju 28644, South Korea
来源
PLANT PATHOLOGY JOURNAL | 2017年 / 33卷 / 04期
关键词
next-generation sequencing; pathogenic gene; phytopathogen; Rosellinia necatrix; transcriptome; RICE BLAST FUNGUS; PLANT INFECTION; ANNOTATION; SECRETION; EFFECTORS; GENOMES; ENZYMES; BIOLOGY; MODEL;
D O I
10.5423/PPJ.OA.03.2017.0046
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
White root rot disease, caused by the pathogen Rosellinia necatrix, is one of the world's most devastating plant fungal diseases and affects several commercially important species of fruit trees and crops. Recent global outbreaks of R. necatrix and advances in molecular techniques have both increased interest in this pathogen. However, the lack of information regarding the genomic structure and transcriptome of R. necatrix has been a barrier to the progress of functional genomic research and the control of this harmful pathogen. Here, we identified 10,616 novel full-length transcripts from the filamentous hyphal tissue of R. necatrix (KACC 40445 strain) using PacBio single-molecule sequencing technology. After annotation of the unigene sets, we selected 14 cell cycle-related genes, which are likely either positively or negatively involved in hyphal growth by cell cycle control. The expression of the selected genes was further compared between two strains that displayed different growth rates on nutritional media. Furthermore, we predicted pathogen related effector genes and cell wall-degrading enzymes from the annotated gene sets. These results provide the most comprehensive transcriptomal resources for R. necatrix, and could facilitate functional genomics and further analyses of this important phytopathogen.
引用
收藏
页码:362 / 369
页数:8
相关论文
共 50 条
  • [31] Single-molecule real-time sequencing of the full-length transcriptome of Halophila beccarii
    Siting Chen
    Guanglong Qiu
    Scientific Reports, 12
  • [32] The complexity of the Fragaria x ananassa (octoploid) transcriptome by single-molecule long-read sequencing
    Yuan, Huazhao
    Yu, Hongmei
    Huang, Tao
    Shen, Xinjie
    Xia, Jin
    Pang, Fuhua
    Wang, Jing
    Zhao, Mizhen
    HORTICULTURE RESEARCH, 2019, 6
  • [33] Survey of the Bradysia odoriphaga Transcriptome Using PacBio Single-Molecule Long-Read Sequencing
    Chen, Haoliang
    Lin, Lulu
    Xie, Minghui
    Zhong, Yongzhi
    Zhang, Guangling
    Su, Weihua
    GENES, 2019, 10 (06):
  • [34] A survey of transcriptome complexity in Sus scrofa using single-molecule long-read sequencing
    Li, Yao
    Fang, Chengchi
    Fu, Yuhua
    Hu, An
    Li, Cencen
    Zou, Cheng
    Li, Xinyun
    Zhao, Shuhong
    Zhang, Chengjun
    Li, Changchun
    DNA RESEARCH, 2018, 25 (04) : 421 - 437
  • [35] Single-molecule insights into mRNA dynamics in neurons
    Buxbaum, Adina R.
    Yoon, Young J.
    Singer, Robert H.
    Park, Hye Yoon
    TRENDS IN CELL BIOLOGY, 2015, 25 (08) : 468 - 475
  • [36] Single-molecule mRNA and translation imaging in neurons
    Mitchell, Jessica
    Chao, Jeffrey A.
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2021, 49 (05) : 2221 - 2227
  • [37] Paving the way to single-molecule protein sequencing
    Restrepo-Perez, Laura
    Joo, Chirlmin
    Dekker, Cees
    NATURE NANOTECHNOLOGY, 2018, 13 (09) : 786 - 796
  • [38] Engineering ClpXP for Single-Molecule Protein Sequencing
    Filius, Mike
    van Ginkel, Jetty
    Joo, Chirlmin
    BIOPHYSICAL JOURNAL, 2017, 112 (03) : 151A - 151A
  • [39] Single-molecule peptide sequencing on semiconductor chips
    Otto, Grant
    NATURE BIOTECHNOLOGY, 2022, 40 (12) : 1765 - 1765
  • [40] Single-molecule protein sequencing on a semiconductor device
    Singh, Arunima
    NATURE METHODS, 2022, 19 (12) : 1517 - 1517