Serveur d'exploration sur les récepteurs immunitaires végétaux

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Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.

Identifieur interne : 000101 ( Main/Exploration ); précédent : 000100; suivant : 000102

Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.

Auteurs : Xin Zhang [République populaire de Chine] ; Huan Peng [République populaire de Chine] ; Sirui Zhu [République populaire de Chine] ; Junjie Xing [République populaire de Chine] ; Xin Li [République populaire de Chine] ; Zhaozhong Zhu [République populaire de Chine] ; Jingyuan Zheng [République populaire de Chine] ; Long Wang [République populaire de Chine] ; Bingqian Wang [République populaire de Chine] ; Jia Chen [République populaire de Chine] ; Zhenhua Ming [République populaire de Chine] ; Ke Yao [République populaire de Chine] ; Jinzhuo Jian [République populaire de Chine] ; Sheng Luan [États-Unis] ; Devin Coleman-Derr [États-Unis] ; Hongdong Liao [République populaire de Chine] ; Yousong Peng [République populaire de Chine] ; Deliang Peng [République populaire de Chine] ; Feng Yu [République populaire de Chine]

Source :

RBID : pubmed:32896643

Abstract

The molecular mechanism by which plants defend against plant root-knot nematodes (RKNs) is largely unknown. The plant receptor kinase FERONIA and its peptide ligands, rapid alkalinization factors (RALFs), regulate plant immune responses and cell expansion, which are two important factors for successful RKN parasitism. In this study, we found that mutation of FERONIA in Arabidopsis thaliana resulted in plants showing low susceptibility to the RKN Meloidogyne incognita. To identify the underlying mechanisms associated with this phenomenon, we identified 18 novel RALF-likes from multiple species of RKNs and showed that two RALF-likes (i.e., MiRALF1 and MiRALF3) from M. incognita were expressed in the esophageal gland with high expression during the parasitic stages of nematode development. These nematode RALF-likes also possess the typical activities of plant RALFs and can directly bind to the extracellular domain of FERONIA to modulate specific steps of nematode parasitism-related immune responses and cell expansion. Genetically, both MiRALF1/3 and FERONIA are required for RKN parasitism in Arabidopsis and rice. Collectively, our study suggests that nematode-encoded RALFs facilitate parasitism via plant-encoded FERONIA and provides a novel paradigm for studying host-pathogen interactions.

DOI: 10.1016/j.molp.2020.08.014
PubMed: 32896643


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<title xml:lang="en">Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.</title>
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<name sortKey="Zhang, Xin" sort="Zhang, Xin" uniqKey="Zhang X" first="Xin" last="Zhang">Xin Zhang</name>
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<name sortKey="Peng, Huan" sort="Peng, Huan" uniqKey="Peng H" first="Huan" last="Peng">Huan Peng</name>
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<name sortKey="Zhu, Sirui" sort="Zhu, Sirui" uniqKey="Zhu S" first="Sirui" last="Zhu">Sirui Zhu</name>
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<name sortKey="Li, Xin" sort="Li, Xin" uniqKey="Li X" first="Xin" last="Li">Xin Li</name>
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<name sortKey="Zhu, Zhaozhong" sort="Zhu, Zhaozhong" uniqKey="Zhu Z" first="Zhaozhong" last="Zhu">Zhaozhong Zhu</name>
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<name sortKey="Wang, Long" sort="Wang, Long" uniqKey="Wang L" first="Long" last="Wang">Long Wang</name>
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<name sortKey="Wang, Bingqian" sort="Wang, Bingqian" uniqKey="Wang B" first="Bingqian" last="Wang">Bingqian Wang</name>
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<country xml:lang="fr" wicri:curation="lc">République populaire de Chine</country>
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<name sortKey="Chen, Jia" sort="Chen, Jia" uniqKey="Chen J" first="Jia" last="Chen">Jia Chen</name>
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<country xml:lang="fr" wicri:curation="lc">République populaire de Chine</country>
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<name sortKey="Yao, Ke" sort="Yao, Ke" uniqKey="Yao K" first="Ke" last="Yao">Ke Yao</name>
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<div type="abstract" xml:lang="en">The molecular mechanism by which plants defend against plant root-knot nematodes (RKNs) is largely unknown. The plant receptor kinase FERONIA and its peptide ligands, rapid alkalinization factors (RALFs), regulate plant immune responses and cell expansion, which are two important factors for successful RKN parasitism. In this study, we found that mutation of FERONIA in Arabidopsis thaliana resulted in plants showing low susceptibility to the RKN Meloidogyne incognita. To identify the underlying mechanisms associated with this phenomenon, we identified 18 novel RALF-likes from multiple species of RKNs and showed that two RALF-likes (i.e., MiRALF1 and MiRALF3) from M. incognita were expressed in the esophageal gland with high expression during the parasitic stages of nematode development. These nematode RALF-likes also possess the typical activities of plant RALFs and can directly bind to the extracellular domain of FERONIA to modulate specific steps of nematode parasitism-related immune responses and cell expansion. Genetically, both MiRALF1/3 and FERONIA are required for RKN parasitism in Arabidopsis and rice. Collectively, our study suggests that nematode-encoded RALFs facilitate parasitism via plant-encoded FERONIA and provides a novel paradigm for studying host-pathogen interactions.</div>
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<Month>Oct</Month>
<Day>05</Day>
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<Title>Molecular plant</Title>
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<ArticleTitle>Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.</ArticleTitle>
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<AbstractText>The molecular mechanism by which plants defend against plant root-knot nematodes (RKNs) is largely unknown. The plant receptor kinase FERONIA and its peptide ligands, rapid alkalinization factors (RALFs), regulate plant immune responses and cell expansion, which are two important factors for successful RKN parasitism. In this study, we found that mutation of FERONIA in Arabidopsis thaliana resulted in plants showing low susceptibility to the RKN Meloidogyne incognita. To identify the underlying mechanisms associated with this phenomenon, we identified 18 novel RALF-likes from multiple species of RKNs and showed that two RALF-likes (i.e., MiRALF1 and MiRALF3) from M. incognita were expressed in the esophageal gland with high expression during the parasitic stages of nematode development. These nematode RALF-likes also possess the typical activities of plant RALFs and can directly bind to the extracellular domain of FERONIA to modulate specific steps of nematode parasitism-related immune responses and cell expansion. Genetically, both MiRALF1/3 and FERONIA are required for RKN parasitism in Arabidopsis and rice. Collectively, our study suggests that nematode-encoded RALFs facilitate parasitism via plant-encoded FERONIA and provides a novel paradigm for studying host-pathogen interactions.</AbstractText>
<CopyrightInformation>Copyright © 2020 The Author. Published by Elsevier Inc. All rights reserved.</CopyrightInformation>
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