Cargando…

A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat

Fusarium head blight (FHB) is a highly detrimental disease of wheat. A quantitative trait locus for FHB resistance, Qfhb1, is the most utilized source of resistance in wheat-breeding programs, but very little is known about its resistance mechanism. In this study, we elucidated a prospective FHB res...

Descripción completa

Detalles Bibliográficos
Autores principales: Eldakak, Moustafa, Das, Aayudh, Zhuang, Yongbin, Rohila, Jai S., Glover, Karl, Yen, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161305/
https://www.ncbi.nlm.nih.gov/pubmed/29932155
http://dx.doi.org/10.3390/pathogens7030058
_version_ 1783358959405498368
author Eldakak, Moustafa
Das, Aayudh
Zhuang, Yongbin
Rohila, Jai S.
Glover, Karl
Yen, Yang
author_facet Eldakak, Moustafa
Das, Aayudh
Zhuang, Yongbin
Rohila, Jai S.
Glover, Karl
Yen, Yang
author_sort Eldakak, Moustafa
collection PubMed
description Fusarium head blight (FHB) is a highly detrimental disease of wheat. A quantitative trait locus for FHB resistance, Qfhb1, is the most utilized source of resistance in wheat-breeding programs, but very little is known about its resistance mechanism. In this study, we elucidated a prospective FHB resistance mechanism by investigating the proteomic signatures of Qfhb1 in a pair of contrasting wheat near-isogenic lines (NIL) after 24 h of inoculation of wheat florets by Fusarium graminearum. Statistical comparisons of the abundances of protein spots on the 2D-DIGE gels of contrasting NILs (fhb1+ NIL = Qfhb1 present; fhb1- NIL = Qfhb1 absent) enabled us to select 80 high-ranking differentially accumulated protein (DAP) spots. An additional evaluation confirmed that the DAP spots were specific to the spikelet from fhb1- NIL (50 spots), and fhb1+ NIL (seven spots). The proteomic data also suggest that the absence of Qfhb1 makes the fhb1- NIL vulnerable to Fusarium attack by constitutively impairing several mechanisms including sucrose homeostasis by enhancing starch synthesis from sucrose. In the absence of Qfhb1, Fusarium inoculations severely damaged photosynthetic machinery; altered the metabolism of carbohydrates, nitrogen and phenylpropanoids; disrupted the balance of proton gradients across relevant membranes; disturbed the homeostasis of many important signaling molecules induced the mobility of cellular repair; and reduced translational activities. These changes in the fhb1- NIL led to strong defense responses centered on the hypersensitive response (HSR), resulting in infected cells suicide and the consequent initiation of FHB development. Therefore, the results of this study suggest that Qfhb1 largely functions to either alleviate HSR or to manipulate the host cells to not respond to Fusarium infection.
format Online
Article
Text
id pubmed-6161305
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-61613052018-10-01 A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat Eldakak, Moustafa Das, Aayudh Zhuang, Yongbin Rohila, Jai S. Glover, Karl Yen, Yang Pathogens Article Fusarium head blight (FHB) is a highly detrimental disease of wheat. A quantitative trait locus for FHB resistance, Qfhb1, is the most utilized source of resistance in wheat-breeding programs, but very little is known about its resistance mechanism. In this study, we elucidated a prospective FHB resistance mechanism by investigating the proteomic signatures of Qfhb1 in a pair of contrasting wheat near-isogenic lines (NIL) after 24 h of inoculation of wheat florets by Fusarium graminearum. Statistical comparisons of the abundances of protein spots on the 2D-DIGE gels of contrasting NILs (fhb1+ NIL = Qfhb1 present; fhb1- NIL = Qfhb1 absent) enabled us to select 80 high-ranking differentially accumulated protein (DAP) spots. An additional evaluation confirmed that the DAP spots were specific to the spikelet from fhb1- NIL (50 spots), and fhb1+ NIL (seven spots). The proteomic data also suggest that the absence of Qfhb1 makes the fhb1- NIL vulnerable to Fusarium attack by constitutively impairing several mechanisms including sucrose homeostasis by enhancing starch synthesis from sucrose. In the absence of Qfhb1, Fusarium inoculations severely damaged photosynthetic machinery; altered the metabolism of carbohydrates, nitrogen and phenylpropanoids; disrupted the balance of proton gradients across relevant membranes; disturbed the homeostasis of many important signaling molecules induced the mobility of cellular repair; and reduced translational activities. These changes in the fhb1- NIL led to strong defense responses centered on the hypersensitive response (HSR), resulting in infected cells suicide and the consequent initiation of FHB development. Therefore, the results of this study suggest that Qfhb1 largely functions to either alleviate HSR or to manipulate the host cells to not respond to Fusarium infection. MDPI 2018-06-22 /pmc/articles/PMC6161305/ /pubmed/29932155 http://dx.doi.org/10.3390/pathogens7030058 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Eldakak, Moustafa
Das, Aayudh
Zhuang, Yongbin
Rohila, Jai S.
Glover, Karl
Yen, Yang
A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title_full A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title_fullStr A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title_full_unstemmed A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title_short A Quantitative Proteomics View on the Function of Qfhb1, a Major QTL for Fusarium Head Blight Resistance in Wheat
title_sort quantitative proteomics view on the function of qfhb1, a major qtl for fusarium head blight resistance in wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6161305/
https://www.ncbi.nlm.nih.gov/pubmed/29932155
http://dx.doi.org/10.3390/pathogens7030058
work_keys_str_mv AT eldakakmoustafa aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT dasaayudh aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT zhuangyongbin aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT rohilajais aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT gloverkarl aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT yenyang aquantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT eldakakmoustafa quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT dasaayudh quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT zhuangyongbin quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT rohilajais quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT gloverkarl quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat
AT yenyang quantitativeproteomicsviewonthefunctionofqfhb1amajorqtlforfusariumheadblightresistanceinwheat