Literature DB >> 33021883

Genome Sequencing of Ciboria shiraiana Provides Insights into the Pathogenic Mechanisms of Hypertrophy Sorosis Scleroteniosis.

Panpan Zhu1,2, Min Kou1, Changying Liu1, Shuai Zhang1, Ruihua Lü1,3, Zhongqiang Xia1, Maode Yu1, Aichun Zhao1.   

Abstract

Ciboria shiraiana causes hypertrophy sorosis scleroteniosis in mulberry trees, resulting in huge economic losses, and exploring its pathogenic mechanism at a genomic level is important for developing new control methods. Here, genome sequencing of C. shiraiana based on PacBio RSII and Illumina HiSeq 2500 platform as well as manual gap filling was performed. Synteny analysis with Sclerotinia sclerotiorum revealed 16 putative chromosomes corresponding to 16 chromosomes of C. shiraiana. Screening of rapid-evolution genes revealed that 97 and 2.4% of genes had undergone purifying selection and positive selection, respectively. When compared with S. sclerotiorum, fewer secreted effector proteins were found in C. shiraiana. The number of genes involved in pathogenicity, including secondary metabolites, carbohydrate active enzymes, and P450s, in the C. shiraiana genome was comparable with that of other necrotrophs but higher than that of biotrophs and saprotrophs. The growth-related genes and plant cell-wall-degradation-related genes in C. shiraiana were expressed in different developmental and infection stages, and may be potential targets for prevention and control of this pathogen. These results provide new insights into C. shiraiana pathogenic mechanisms, especially host range and necrotrophy features, and lay the foundation for further study of the underlying molecular mechanisms.[Formula: see text] The author(s) have dedicated the work to the public domain under the Creative Commons CC0 "No Rights Reserved" license by waiving all of his or her rights to the work worldwide under copyright law, including all related and neighboring rights, to the extent allowed by law.

Entities:  

Keywords:  Ciboria shiraiana; fungal development; genome; genomics; mechanisms of pathogenicity; metabolomics; mulberry; pathogenicity; plant cell wall–degrading enzymes; proteomics

Year:  2020        PMID: 33021883     DOI: 10.1094/MPMI-07-20-0201-R

Source DB:  PubMed          Journal:  Mol Plant Microbe Interact        ISSN: 0894-0282            Impact factor:   4.171


  3 in total

1.  Genomic Characterization Provides an Insight into the Pathogenicity of the Poplar Canker Bacterium Lonsdalea populi.

Authors:  Xiaomeng Chen; Rui Li; Yonglin Wang; Aining Li
Journal:  Genes (Basel)       Date:  2021-02-09       Impact factor: 4.096

2.  A New Ciboria sp. for Soil Mycoremediation and the Bacterial Contribution to the Depletion of Total Petroleum Hydrocarbons.

Authors:  Simone Becarelli; Ilaria Chicca; Salvatore La China; Giovanna Siracusa; Alessandra Bardi; Maria Gullo; Giulio Petroni; David Bernard Levin; Simona Di Gregorio
Journal:  Front Microbiol       Date:  2021-06-08       Impact factor: 5.640

3.  Host-Induced Gene Silencing of a G Protein α Subunit Gene CsGpa1 Involved in Pathogen Appressoria Formation and Virulence Improves Tobacco Resistance to Ciboria shiraiana.

Authors:  Panpan Zhu; Shuai Zhang; Ruolan Li; Changying Liu; Wei Fan; Tingzhang Hu; Aichun Zhao
Journal:  J Fungi (Basel)       Date:  2021-12-08
  3 in total

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