Cargando…

The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae

Isoprothiolane (IPT) resistance has emerged in Magnaporthe oryzae, due to the long-term usage of IPT to control rice blast in China, yet the mechanisms of the resistance remain largely unknown. Through IPT adaptation on PDA medium, we obtained a variety of IPT-resistant mutants. Based on their EC(50...

Descripción completa

Detalles Bibliográficos
Autores principales: Meng, Fan-Zhu, Wang, Zuo-Qian, Luo, Mei, Wei, Wen-Kai, Yin, Liang-Fen, Yin, Wei-Xiao, Schnabel, Guido, Luo, Chao-Xi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10270592/
https://www.ncbi.nlm.nih.gov/pubmed/37276223
http://dx.doi.org/10.1371/journal.ppat.1011011
_version_ 1785059346376294400
author Meng, Fan-Zhu
Wang, Zuo-Qian
Luo, Mei
Wei, Wen-Kai
Yin, Liang-Fen
Yin, Wei-Xiao
Schnabel, Guido
Luo, Chao-Xi
author_facet Meng, Fan-Zhu
Wang, Zuo-Qian
Luo, Mei
Wei, Wen-Kai
Yin, Liang-Fen
Yin, Wei-Xiao
Schnabel, Guido
Luo, Chao-Xi
author_sort Meng, Fan-Zhu
collection PubMed
description Isoprothiolane (IPT) resistance has emerged in Magnaporthe oryzae, due to the long-term usage of IPT to control rice blast in China, yet the mechanisms of the resistance remain largely unknown. Through IPT adaptation on PDA medium, we obtained a variety of IPT-resistant mutants. Based on their EC(50) values to IPT, the resistant mutants were mainly divided into three distinct categories, i.e., low resistance (LR, 6.5 ≤ EC(50) < 13.0 μg/mL), moderate resistance 1 (MR-1, 13.0 ≤ EC(50) < 25.0 μg/mL), and moderate resistance 2 (MR-2, 25.0 ≤ EC(50) < 35.0 μg/mL). Molecular analysis of MoIRR (Magnaporthe oryzae isoprothiolane resistance related) gene demonstrated that it was associated only with the moderate resistance in MR-2 mutants, indicating that other mechanisms were associated with resistance in LR and MR-1 mutants. In this study, we mainly focused on the characterization of low resistance to IPT in M. oryzae. Mycelial growth and conidial germination were significantly reduced, indicating fitness penalties in LR mutants. Based on the differences of whole genome sequences between parental isolate and LR mutants, we identified a conserved MoVelB gene, encoding the velvet family transcription factor, and genetic transformation of wild type isolate verified that MoVelB gene was associated with the low resistance. Based on molecular analysis, we further demonstrated that the velvet family proteins VelB and VeA were indispensable for IPT toxicity and the deformation of the VelB-VeA-LaeA complex played a vital role for the low IPT-resistance in M. oryzae, most likely through the down-regulation of the secondary metabolism-related genes or CYP450 genes to reduce the toxicity of IPT.
format Online
Article
Text
id pubmed-10270592
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-102705922023-06-16 The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae Meng, Fan-Zhu Wang, Zuo-Qian Luo, Mei Wei, Wen-Kai Yin, Liang-Fen Yin, Wei-Xiao Schnabel, Guido Luo, Chao-Xi PLoS Pathog Research Article Isoprothiolane (IPT) resistance has emerged in Magnaporthe oryzae, due to the long-term usage of IPT to control rice blast in China, yet the mechanisms of the resistance remain largely unknown. Through IPT adaptation on PDA medium, we obtained a variety of IPT-resistant mutants. Based on their EC(50) values to IPT, the resistant mutants were mainly divided into three distinct categories, i.e., low resistance (LR, 6.5 ≤ EC(50) < 13.0 μg/mL), moderate resistance 1 (MR-1, 13.0 ≤ EC(50) < 25.0 μg/mL), and moderate resistance 2 (MR-2, 25.0 ≤ EC(50) < 35.0 μg/mL). Molecular analysis of MoIRR (Magnaporthe oryzae isoprothiolane resistance related) gene demonstrated that it was associated only with the moderate resistance in MR-2 mutants, indicating that other mechanisms were associated with resistance in LR and MR-1 mutants. In this study, we mainly focused on the characterization of low resistance to IPT in M. oryzae. Mycelial growth and conidial germination were significantly reduced, indicating fitness penalties in LR mutants. Based on the differences of whole genome sequences between parental isolate and LR mutants, we identified a conserved MoVelB gene, encoding the velvet family transcription factor, and genetic transformation of wild type isolate verified that MoVelB gene was associated with the low resistance. Based on molecular analysis, we further demonstrated that the velvet family proteins VelB and VeA were indispensable for IPT toxicity and the deformation of the VelB-VeA-LaeA complex played a vital role for the low IPT-resistance in M. oryzae, most likely through the down-regulation of the secondary metabolism-related genes or CYP450 genes to reduce the toxicity of IPT. Public Library of Science 2023-06-05 /pmc/articles/PMC10270592/ /pubmed/37276223 http://dx.doi.org/10.1371/journal.ppat.1011011 Text en © 2023 Meng et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Meng, Fan-Zhu
Wang, Zuo-Qian
Luo, Mei
Wei, Wen-Kai
Yin, Liang-Fen
Yin, Wei-Xiao
Schnabel, Guido
Luo, Chao-Xi
The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title_full The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title_fullStr The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title_full_unstemmed The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title_short The velvet family proteins mediate low resistance to isoprothiolane in Magnaporthe oryzae
title_sort velvet family proteins mediate low resistance to isoprothiolane in magnaporthe oryzae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10270592/
https://www.ncbi.nlm.nih.gov/pubmed/37276223
http://dx.doi.org/10.1371/journal.ppat.1011011
work_keys_str_mv AT mengfanzhu thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT wangzuoqian thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT luomei thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT weiwenkai thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT yinliangfen thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT yinweixiao thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT schnabelguido thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT luochaoxi thevelvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT mengfanzhu velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT wangzuoqian velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT luomei velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT weiwenkai velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT yinliangfen velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT yinweixiao velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT schnabelguido velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae
AT luochaoxi velvetfamilyproteinsmediatelowresistancetoisoprothiolaneinmagnaportheoryzae