Genome analysis of Erwinia persicina reveals implications for soft rot pathogenicity in plants

被引:6
|
作者
Wasendorf, Chloe [1 ,2 ]
Schmitz-Esser, Stephan [3 ,4 ]
Eischeid, Carter J. [5 ]
Leyhe, Martin J. [6 ]
Nelson, Erika N. [6 ]
Rahic-Seggerman, Faith M. [3 ,4 ]
Sullivan, Kasey E. [6 ]
Peters, Nick T. [1 ,4 ]
机构
[1] Iowa State Univ, Dept Plant Pathol & Microbiol, Ames, IA 50011 USA
[2] Alfred Univ, Biol Div, Alfred, NY USA
[3] Iowa State Univ, Dept Anim Sci, Ames, IA USA
[4] Iowa State Univ, Interdept Microbiol Grad Program, Ames, IA 50011 USA
[5] Iowa State Univ, Dept Chem, Ames, IA USA
[6] Iowa State Univ, Undergrad Microbiol Program, Ames, IA USA
关键词
soft rot; Erwinia persicina; sequencing; plant pathogen; genome; CAROTOVORA SUBSP ATROSEPTICA; VI SECRETION SYSTEM; ESCHERICHIA-COLI; MOLECULAR CHARACTERIZATION; ACID DECARBOXYLASE; 1ST REPORT; GENE; AMYLOVORA; CHRYSANTHEMI; EXPRESSION;
D O I
10.3389/fmicb.2022.1001139
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Soft rot disease causes devastating losses to crop plants all over the world, with up to 90% loss in tropical climates. To better understand this economically important disease, we isolated four soft rot-causing Erwinia persicina strains from rotted vegetables. Notably, E. persicina has only recently been identified as a soft rot pathogen and a comprehensive genomic analysis and comparison has yet to be conducted. Here, we provide the first genomic analysis of E. persicina, compared to Pectobacterium carotovorum, P. carotovorum, and associated Erwinia plant pathogens. We found that E. persicina shares common genomic features with other Erwinia species and P. carotovorum, while having its own unique characteristics as well. The E. persicina strains examined here lack Type II and Type III secretion systems, commonly used to secrete pectolytic enzymes and evade the host immune response, respectively. E. persicina contains fewer putative pectolytic enzymes than P. carotovorum and lacks the Out cluster of the Type II secretion system while harboring a siderophore that causes a unique pink pigmentation during soft rot infections. Interestingly, a putative phenolic acid decarboxylase is present in the E. persicina strains and some soft rot pathogens, but absent in other Erwinia species, thus potentially providing an important factor for soft rot. All four E. persicina isolates obtained here and many other E. persicina genomes contain plasmids larger than 100 kbp that encode proteins likely important for adaptation to plant hosts. This research provides new insights into the possible mechanisms of soft rot disease by E. persicina and potential targets for diagnostic tools and control measures.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Analysis of missense variants in the human genome reveals widespread gene-specific clustering and improves prediction of pathogenicity
    Quinodoz, Mathieu
    Peter, Virginie G.
    Cisarova, Katarina
    Royer-Bertrand, Beryl
    Stenson, Peter D.
    Cooper, David N.
    Unger, Sheila
    Superti-Furga, Andrea
    Rivolta, Carlo
    AMERICAN JOURNAL OF HUMAN GENETICS, 2022, 109 (03) : 457 - 470
  • [32] Analysis of conductance responses during depolymerization of pectate by soft rot Erwinia spp. and other pectolytic bacteria isolated from potato tubers
    Fraaije, BA
    Bosveld, M
    VandenBulk, RW
    Rombouts, FM
    JOURNAL OF APPLIED MICROBIOLOGY, 1997, 83 (01) : 17 - 24
  • [33] Complete Genome Sequence Resource of the Pathogen Pectobacterium cacticida CFCC 10813T Causing Soft Rot Diseases of Cactus Plants
    Xie, Ting
    Zhu, Huajie
    Liao, Tianlan
    Liang, Yan
    An, Qianli
    PHYTOFRONTIERS, 2023, 3 (02): : 456 - 460
  • [34] Genome-wide identification and expression analysis of WRKY family genes under soft rot in Chinese cabbage
    Yan, Jinghui
    Yu, Xinle
    Ma, Wei
    Sun, Xiaoxue
    Ge, Yunjia
    Yue, Xiaonan
    Han, Jing
    Zhao, Jianjun
    Lu, Yin
    Liu, Mengyang
    FRONTIERS IN GENETICS, 2022, 13
  • [35] Genome-wide analysis reveals the evolution and structural features of WRINKLED1 in plants
    Tang, Tong
    Du, Chang
    Song, Huan
    Aziz, Usman
    Wang, Lili
    Zhao, Cuizhu
    Zhang, Meng
    MOLECULAR GENETICS AND GENOMICS, 2019, 294 (02) : 329 - 341
  • [36] Genome-wide analysis reveals the evolution and structural features of WRINKLED1 in plants
    Tong Tang
    Chang Du
    Huan Song
    Usman Aziz
    Lili Wang
    Cuizhu Zhao
    Meng Zhang
    Molecular Genetics and Genomics, 2019, 294 : 329 - 341
  • [37] Comprehensive Genome Analysis of Neisseria meningitidis from South America Reveals a Distinctive Pathogenicity-Related Prophage Repertoire
    Madariaga-Troncoso, David
    Leyton-Carcaman, Benjamin
    Garcia, Matias
    Kawai, Mikihiko
    Abanto Marin, Michel
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (24)
  • [38] Comparative Transcriptome Analysis Reveals Differential Mechanisms of Soft Rot Resistance in Lettuce Grown Under White and Blue Light
    Wang, Yong
    Ma, Xiaojing
    Shang, Wenkai
    Luo, Hengbin
    Wang, Longyu
    Sun, Kaile
    Dong, Han
    An, Guanghui
    Shen, Shunshan
    Guo, Zhixin
    Dong, Xiaoxing
    Li, Xinzheng
    Piao, Fengzhi
    Zhang, Tao
    FOOD AND ENERGY SECURITY, 2025, 14 (01):
  • [39] Proteomic analysis of the carbonate insoluble outer membrane fraction of the soft-rot pathogen Dickeya dadantii (syn. Erwinia chrysanthemi) strain 3937
    Babujee, Lavanya
    Venkatesh, Balakrishnan
    Yamazaki, Akihiro
    Tsuyumu, Shinji
    JOURNAL OF PROTEOME RESEARCH, 2007, 6 (01) : 62 - 69
  • [40] A genome-wide analysis of desferrioxamine mediated iron uptake in Erwinia spp. reveals genes exclusive of the Rosaceae infecting strains
    Ivan Polsinelli
    Luigimaria Borruso
    Rosanna Caliandro
    Luca Triboli
    Alfonso Esposito
    Stefano Benini
    Scientific Reports, 9