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The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity

Phytoplasmas are uncultivable, phloem-limited, phytopathogenic bacteria that represent a major threat to agriculture worldwide. Phytoplasma membrane proteins are in direct contact with hosts and presumably play a crucial role in phytoplasma spread within the plant as well as by the insect vector. Th...

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Autores principales: Wang, Zhiyi, Yang, Xiaorong, Zhou, Siqi, Zhang, Xishan, Zhu, Yingzhi, Chen, Biao, Huang, Xiuqin, Yang, Xin, Zhou, Guohui, Zhang, Tong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003417/
https://www.ncbi.nlm.nih.gov/pubmed/36901925
http://dx.doi.org/10.3390/ijms24054494
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author Wang, Zhiyi
Yang, Xiaorong
Zhou, Siqi
Zhang, Xishan
Zhu, Yingzhi
Chen, Biao
Huang, Xiuqin
Yang, Xin
Zhou, Guohui
Zhang, Tong
author_facet Wang, Zhiyi
Yang, Xiaorong
Zhou, Siqi
Zhang, Xishan
Zhu, Yingzhi
Chen, Biao
Huang, Xiuqin
Yang, Xin
Zhou, Guohui
Zhang, Tong
author_sort Wang, Zhiyi
collection PubMed
description Phytoplasmas are uncultivable, phloem-limited, phytopathogenic bacteria that represent a major threat to agriculture worldwide. Phytoplasma membrane proteins are in direct contact with hosts and presumably play a crucial role in phytoplasma spread within the plant as well as by the insect vector. Three highly abundant types of immunodominant membrane proteins (IDP) have been identified within the phytoplasmas: immunodominant membrane protein (Imp), immunodominant membrane protein A (IdpA), and antigenic membrane protein (Amp). Although recent results indicate that Amp is involved in host specificity by interacting with host proteins such as actin, little is known about the pathogenicity of IDP in plants. In this study, we identified an antigenic membrane protein (Amp) of rice orange leaf phytoplasma (ROLP), which interacts with the actin of its vector. In addition, we generated Amp-transgenic lines of rice and expressed Amp in tobacco leaves by the potato virus X (PVX) expression system. Our results showed that the Amp of ROLP can induce the accumulation of ROLP and PVX in rice and tobacco plants, respectively. Although several studies have reported interactions between major phytoplasma antigenic membrane protein (Amp) and insect vector proteins, this example demonstrates that Amp protein can not only interact with the actin protein of its insect vector but can also directly inhibit host defense responses to promote the infection. The function of ROLP Amp provides new insights into the phytoplasma-host interaction.
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spelling pubmed-100034172023-03-11 The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity Wang, Zhiyi Yang, Xiaorong Zhou, Siqi Zhang, Xishan Zhu, Yingzhi Chen, Biao Huang, Xiuqin Yang, Xin Zhou, Guohui Zhang, Tong Int J Mol Sci Article Phytoplasmas are uncultivable, phloem-limited, phytopathogenic bacteria that represent a major threat to agriculture worldwide. Phytoplasma membrane proteins are in direct contact with hosts and presumably play a crucial role in phytoplasma spread within the plant as well as by the insect vector. Three highly abundant types of immunodominant membrane proteins (IDP) have been identified within the phytoplasmas: immunodominant membrane protein (Imp), immunodominant membrane protein A (IdpA), and antigenic membrane protein (Amp). Although recent results indicate that Amp is involved in host specificity by interacting with host proteins such as actin, little is known about the pathogenicity of IDP in plants. In this study, we identified an antigenic membrane protein (Amp) of rice orange leaf phytoplasma (ROLP), which interacts with the actin of its vector. In addition, we generated Amp-transgenic lines of rice and expressed Amp in tobacco leaves by the potato virus X (PVX) expression system. Our results showed that the Amp of ROLP can induce the accumulation of ROLP and PVX in rice and tobacco plants, respectively. Although several studies have reported interactions between major phytoplasma antigenic membrane protein (Amp) and insect vector proteins, this example demonstrates that Amp protein can not only interact with the actin protein of its insect vector but can also directly inhibit host defense responses to promote the infection. The function of ROLP Amp provides new insights into the phytoplasma-host interaction. MDPI 2023-02-24 /pmc/articles/PMC10003417/ /pubmed/36901925 http://dx.doi.org/10.3390/ijms24054494 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Zhiyi
Yang, Xiaorong
Zhou, Siqi
Zhang, Xishan
Zhu, Yingzhi
Chen, Biao
Huang, Xiuqin
Yang, Xin
Zhou, Guohui
Zhang, Tong
The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title_full The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title_fullStr The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title_full_unstemmed The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title_short The Antigenic Membrane Protein (Amp) of Rice Orange Leaf Phytoplasma Suppresses Host Defenses and Is Involved in Pathogenicity
title_sort antigenic membrane protein (amp) of rice orange leaf phytoplasma suppresses host defenses and is involved in pathogenicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003417/
https://www.ncbi.nlm.nih.gov/pubmed/36901925
http://dx.doi.org/10.3390/ijms24054494
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