Cargando…
A functional analysis of mitochondrial respiratory chain cytochrome bc (1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone
Gaeumannomyces tritici, an ascomycete soilborne fungus, causes a devastating root disease in wheat. Carabrone, a botanical bicyclic sesquiterpenic lactone, is a promising fungicidal agent that can effectively control G. tritici. However, the mechanism of action of carabrone against G. tritici remain...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7694678/ https://www.ncbi.nlm.nih.gov/pubmed/32997435 http://dx.doi.org/10.1111/mpp.12993 |
_version_ | 1783615030689792000 |
---|---|
author | Wang, Mei Ren, Xingyu Wang, Lanying Lu, Xiang Han, Lirong Zhang, Xing Feng, Juntao |
author_facet | Wang, Mei Ren, Xingyu Wang, Lanying Lu, Xiang Han, Lirong Zhang, Xing Feng, Juntao |
author_sort | Wang, Mei |
collection | PubMed |
description | Gaeumannomyces tritici, an ascomycete soilborne fungus, causes a devastating root disease in wheat. Carabrone, a botanical bicyclic sesquiterpenic lactone, is a promising fungicidal agent that can effectively control G. tritici. However, the mechanism of action of carabrone against G. tritici remains largely unclear. Here, we used immunogold for subcellular localization of carabrone and the results showed that carabrone is subcellularly localized in the mitochondria of G. tritici. We then explored the functional analysis of genes GtCytc (1), GtCytb, and GtIsp of the mitochondrial respiratory chain cytochrome bc (1) complex in G. tritici by RNA silencing as a possible target of carabrone. The results showed that the silenced mutant ∆GtIsp is less sensitive to carabrone compared to ∆GtCytc(1) and ∆GtCytb. Compared with the control, the activities of complex III in all the strains, except ∆GtIsp and carabrone‐resistant isolate 24‐HN‐1, were significantly decreased following treatment with carabrone at EC(20) and EC(80) in vitro (40%–50% and 70%–80%, respectively). The activities of mitochondrial respiratory chain complex III and the mitochondrial respiration oxygen consumption rates in all the strains, except ∆GtIsp and 24‐HN‐1, were higher with respect to the control when treated with carabrone at EC(20) in vivo. The rates of mitochondrial respiration of all strains, except ∆GtIsp, were significantly inhibited following treatment with carabrone at EC(80) (ranging from 57% to 81%). This study reveals that the targeting of the iron–sulphur protein encoded by GtIsp is highly sensitive to carabrone and provides a direction for the research of carabrone's target. |
format | Online Article Text |
id | pubmed-7694678 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-76946782020-12-07 A functional analysis of mitochondrial respiratory chain cytochrome bc (1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone Wang, Mei Ren, Xingyu Wang, Lanying Lu, Xiang Han, Lirong Zhang, Xing Feng, Juntao Mol Plant Pathol Original Articles Gaeumannomyces tritici, an ascomycete soilborne fungus, causes a devastating root disease in wheat. Carabrone, a botanical bicyclic sesquiterpenic lactone, is a promising fungicidal agent that can effectively control G. tritici. However, the mechanism of action of carabrone against G. tritici remains largely unclear. Here, we used immunogold for subcellular localization of carabrone and the results showed that carabrone is subcellularly localized in the mitochondria of G. tritici. We then explored the functional analysis of genes GtCytc (1), GtCytb, and GtIsp of the mitochondrial respiratory chain cytochrome bc (1) complex in G. tritici by RNA silencing as a possible target of carabrone. The results showed that the silenced mutant ∆GtIsp is less sensitive to carabrone compared to ∆GtCytc(1) and ∆GtCytb. Compared with the control, the activities of complex III in all the strains, except ∆GtIsp and carabrone‐resistant isolate 24‐HN‐1, were significantly decreased following treatment with carabrone at EC(20) and EC(80) in vitro (40%–50% and 70%–80%, respectively). The activities of mitochondrial respiratory chain complex III and the mitochondrial respiration oxygen consumption rates in all the strains, except ∆GtIsp and 24‐HN‐1, were higher with respect to the control when treated with carabrone at EC(20) in vivo. The rates of mitochondrial respiration of all strains, except ∆GtIsp, were significantly inhibited following treatment with carabrone at EC(80) (ranging from 57% to 81%). This study reveals that the targeting of the iron–sulphur protein encoded by GtIsp is highly sensitive to carabrone and provides a direction for the research of carabrone's target. John Wiley and Sons Inc. 2020-09-30 /pmc/articles/PMC7694678/ /pubmed/32997435 http://dx.doi.org/10.1111/mpp.12993 Text en © 2020 The Authors. Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes. |
spellingShingle | Original Articles Wang, Mei Ren, Xingyu Wang, Lanying Lu, Xiang Han, Lirong Zhang, Xing Feng, Juntao A functional analysis of mitochondrial respiratory chain cytochrome bc (1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title | A functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title_full | A functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title_fullStr | A functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title_full_unstemmed | A functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title_short | A functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in Gaeumannomyces tritici by RNA silencing as a possible target of carabrone |
title_sort | functional analysis of mitochondrial respiratory chain cytochrome bc
(1) complex in gaeumannomyces tritici by rna silencing as a possible target of carabrone |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7694678/ https://www.ncbi.nlm.nih.gov/pubmed/32997435 http://dx.doi.org/10.1111/mpp.12993 |
work_keys_str_mv | AT wangmei afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT renxingyu afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT wanglanying afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT luxiang afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT hanlirong afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT zhangxing afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT fengjuntao afunctionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT wangmei functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT renxingyu functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT wanglanying functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT luxiang functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT hanlirong functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT zhangxing functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone AT fengjuntao functionalanalysisofmitochondrialrespiratorychaincytochromebc1complexingaeumannomycestriticibyrnasilencingasapossibletargetofcarabrone |