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A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance

SSITL (SS1G_14133) of Sclerotinia sclerotiorum encodes a protein with 302 amino acid residues including a signal peptide, its secretion property was confirmed with immunolocalization and immunofluorescence techniques. SSITL was classified in the integrin alpha N-terminal domain superfamily, and its...

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Autores principales: Zhu, Wenjun, Wei, Wei, Fu, Yanping, Cheng, Jiasen, Xie, Jiatao, Li, Guoqing, Yi, Xianhong, Kang, Zhensheng, Dickman, Martin B., Jiang, Daohong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544710/
https://www.ncbi.nlm.nih.gov/pubmed/23342034
http://dx.doi.org/10.1371/journal.pone.0053901
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author Zhu, Wenjun
Wei, Wei
Fu, Yanping
Cheng, Jiasen
Xie, Jiatao
Li, Guoqing
Yi, Xianhong
Kang, Zhensheng
Dickman, Martin B.
Jiang, Daohong
author_facet Zhu, Wenjun
Wei, Wei
Fu, Yanping
Cheng, Jiasen
Xie, Jiatao
Li, Guoqing
Yi, Xianhong
Kang, Zhensheng
Dickman, Martin B.
Jiang, Daohong
author_sort Zhu, Wenjun
collection PubMed
description SSITL (SS1G_14133) of Sclerotinia sclerotiorum encodes a protein with 302 amino acid residues including a signal peptide, its secretion property was confirmed with immunolocalization and immunofluorescence techniques. SSITL was classified in the integrin alpha N-terminal domain superfamily, and its 3D structure is similar to those of human integrin α4-subunit and a fungal integrin-like protein. When S. sclerotiorum was inoculated to its host, high expression of SSITL was detected during the initial stages of infection (1.5–3.0 hpi). Targeted silencing of SSITL resulted in a significant reduction in virulence; on the other hand, inoculation of SSITL silenced transformant A10 initiated strong and rapid defense response in Arabidopsis, the highest expressions of defense genes PDF1.2 and PR-1 appeared at 3 hpi which was 9 hr earlier than that time when plants were inoculated with the wild-type strain of S. sclerotiorum. Systemic resistance induced by A10 was detected by analysis of the expression of PDF1.2 and PR-1, and confirmed following inoculation with Botrytis cinerea. A10 induced much larger lesions on Arabidopsis mutant ein2 and jar1, and slightly larger lesions on mutant pad4 and NahG in comparison with the wild-type plants. Furthermore, both transient and constitutive expression of SSITL in Arabidopsis suppressed the expression of PDF1.2 and led to be more susceptible to A10 and the wild-type strain of S. sclerotiorum and B. cinerea. Our results suggested that SSITL is an effector possibly and plays significant role in the suppression of jasmonic/ethylene (JA/ET) signal pathway mediated resistance at the early stage of infection.
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spelling pubmed-35447102013-01-22 A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance Zhu, Wenjun Wei, Wei Fu, Yanping Cheng, Jiasen Xie, Jiatao Li, Guoqing Yi, Xianhong Kang, Zhensheng Dickman, Martin B. Jiang, Daohong PLoS One Research Article SSITL (SS1G_14133) of Sclerotinia sclerotiorum encodes a protein with 302 amino acid residues including a signal peptide, its secretion property was confirmed with immunolocalization and immunofluorescence techniques. SSITL was classified in the integrin alpha N-terminal domain superfamily, and its 3D structure is similar to those of human integrin α4-subunit and a fungal integrin-like protein. When S. sclerotiorum was inoculated to its host, high expression of SSITL was detected during the initial stages of infection (1.5–3.0 hpi). Targeted silencing of SSITL resulted in a significant reduction in virulence; on the other hand, inoculation of SSITL silenced transformant A10 initiated strong and rapid defense response in Arabidopsis, the highest expressions of defense genes PDF1.2 and PR-1 appeared at 3 hpi which was 9 hr earlier than that time when plants were inoculated with the wild-type strain of S. sclerotiorum. Systemic resistance induced by A10 was detected by analysis of the expression of PDF1.2 and PR-1, and confirmed following inoculation with Botrytis cinerea. A10 induced much larger lesions on Arabidopsis mutant ein2 and jar1, and slightly larger lesions on mutant pad4 and NahG in comparison with the wild-type plants. Furthermore, both transient and constitutive expression of SSITL in Arabidopsis suppressed the expression of PDF1.2 and led to be more susceptible to A10 and the wild-type strain of S. sclerotiorum and B. cinerea. Our results suggested that SSITL is an effector possibly and plays significant role in the suppression of jasmonic/ethylene (JA/ET) signal pathway mediated resistance at the early stage of infection. Public Library of Science 2013-01-14 /pmc/articles/PMC3544710/ /pubmed/23342034 http://dx.doi.org/10.1371/journal.pone.0053901 Text en © 2013 Zhu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhu, Wenjun
Wei, Wei
Fu, Yanping
Cheng, Jiasen
Xie, Jiatao
Li, Guoqing
Yi, Xianhong
Kang, Zhensheng
Dickman, Martin B.
Jiang, Daohong
A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title_full A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title_fullStr A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title_full_unstemmed A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title_short A Secretory Protein of Necrotrophic Fungus Sclerotinia sclerotiorum That Suppresses Host Resistance
title_sort secretory protein of necrotrophic fungus sclerotinia sclerotiorum that suppresses host resistance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3544710/
https://www.ncbi.nlm.nih.gov/pubmed/23342034
http://dx.doi.org/10.1371/journal.pone.0053901
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