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The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination

Aspergillus flavus is an opportunistic plant pathogen that colonizes and produces the toxic and carcinogenic secondary metabolites, aflatoxins, in oil-rich crops such as maize (Zea mays ssp. mays L.). Pathogenesis-related (PR) proteins serve as an important defense mechanism against invading pathoge...

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Autores principales: Majumdar, Rajtilak, Rajasekaran, Kanniah, Sickler, Christine, Lebar, Matthew, Musungu, Bryan M., Fakhoury, Ahmad M., Payne, Gary A., Geisler, Matt, Carter-Wientjes, Carol, Wei, Qijian, Bhatnagar, Deepak, Cary, Jeffrey W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5651032/
https://www.ncbi.nlm.nih.gov/pubmed/29089952
http://dx.doi.org/10.3389/fpls.2017.01758
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author Majumdar, Rajtilak
Rajasekaran, Kanniah
Sickler, Christine
Lebar, Matthew
Musungu, Bryan M.
Fakhoury, Ahmad M.
Payne, Gary A.
Geisler, Matt
Carter-Wientjes, Carol
Wei, Qijian
Bhatnagar, Deepak
Cary, Jeffrey W.
author_facet Majumdar, Rajtilak
Rajasekaran, Kanniah
Sickler, Christine
Lebar, Matthew
Musungu, Bryan M.
Fakhoury, Ahmad M.
Payne, Gary A.
Geisler, Matt
Carter-Wientjes, Carol
Wei, Qijian
Bhatnagar, Deepak
Cary, Jeffrey W.
author_sort Majumdar, Rajtilak
collection PubMed
description Aspergillus flavus is an opportunistic plant pathogen that colonizes and produces the toxic and carcinogenic secondary metabolites, aflatoxins, in oil-rich crops such as maize (Zea mays ssp. mays L.). Pathogenesis-related (PR) proteins serve as an important defense mechanism against invading pathogens by conferring systemic acquired resistance in plants. Among these, production of the PR maize seed protein, ZmPRms (AC205274.3_FG001), has been speculated to be involved in resistance to infection by A. flavus and other pathogens. To better understand the relative contribution of ZmPRms to A. flavus resistance and aflatoxin production, a seed-specific RNA interference (RNAi)-based gene silencing approach was used to develop transgenic maize lines expressing hairpin RNAs to target ZmPRms. Downregulation of ZmPRms in transgenic kernels resulted in a ∼250–350% increase in A. flavus infection accompanied by a ∼4.5–7.5-fold higher accumulation of aflatoxins than control plants. Gene co-expression network analysis of RNA-seq data during the A. flavus-maize interaction identified ZmPRms as a network hub possibly responsible for regulating several downstream candidate genes associated with disease resistance and other biochemical functions. Expression analysis of these candidate genes in the ZmPRms–RNAi lines demonstrated downregulation (vs. control) of a majority of these ZmPRms-regulated genes during A. flavus infection. These results are consistent with a key role of ZmPRms in resistance to A. flavus infection and aflatoxin accumulation in maize kernels.
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spelling pubmed-56510322017-10-31 The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination Majumdar, Rajtilak Rajasekaran, Kanniah Sickler, Christine Lebar, Matthew Musungu, Bryan M. Fakhoury, Ahmad M. Payne, Gary A. Geisler, Matt Carter-Wientjes, Carol Wei, Qijian Bhatnagar, Deepak Cary, Jeffrey W. Front Plant Sci Plant Science Aspergillus flavus is an opportunistic plant pathogen that colonizes and produces the toxic and carcinogenic secondary metabolites, aflatoxins, in oil-rich crops such as maize (Zea mays ssp. mays L.). Pathogenesis-related (PR) proteins serve as an important defense mechanism against invading pathogens by conferring systemic acquired resistance in plants. Among these, production of the PR maize seed protein, ZmPRms (AC205274.3_FG001), has been speculated to be involved in resistance to infection by A. flavus and other pathogens. To better understand the relative contribution of ZmPRms to A. flavus resistance and aflatoxin production, a seed-specific RNA interference (RNAi)-based gene silencing approach was used to develop transgenic maize lines expressing hairpin RNAs to target ZmPRms. Downregulation of ZmPRms in transgenic kernels resulted in a ∼250–350% increase in A. flavus infection accompanied by a ∼4.5–7.5-fold higher accumulation of aflatoxins than control plants. Gene co-expression network analysis of RNA-seq data during the A. flavus-maize interaction identified ZmPRms as a network hub possibly responsible for regulating several downstream candidate genes associated with disease resistance and other biochemical functions. Expression analysis of these candidate genes in the ZmPRms–RNAi lines demonstrated downregulation (vs. control) of a majority of these ZmPRms-regulated genes during A. flavus infection. These results are consistent with a key role of ZmPRms in resistance to A. flavus infection and aflatoxin accumulation in maize kernels. Frontiers Media S.A. 2017-10-17 /pmc/articles/PMC5651032/ /pubmed/29089952 http://dx.doi.org/10.3389/fpls.2017.01758 Text en Copyright © 2017 Majumdar, Rajasekaran, Sickler, Lebar, Musungu, Fakhoury, Payne, Geisler, Carter-Wientjes, Wei, Bhatnagar and Cary. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Majumdar, Rajtilak
Rajasekaran, Kanniah
Sickler, Christine
Lebar, Matthew
Musungu, Bryan M.
Fakhoury, Ahmad M.
Payne, Gary A.
Geisler, Matt
Carter-Wientjes, Carol
Wei, Qijian
Bhatnagar, Deepak
Cary, Jeffrey W.
The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title_full The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title_fullStr The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title_full_unstemmed The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title_short The Pathogenesis-Related Maize Seed (PRms) Gene Plays a Role in Resistance to Aspergillus flavus Infection and Aflatoxin Contamination
title_sort pathogenesis-related maize seed (prms) gene plays a role in resistance to aspergillus flavus infection and aflatoxin contamination
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5651032/
https://www.ncbi.nlm.nih.gov/pubmed/29089952
http://dx.doi.org/10.3389/fpls.2017.01758
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