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Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana

The putative ferricrocin synthetase gene ferS in the fungal entomopathogen Beauveria bassiana BCC 2660 was identified and characterized. The 14,445-bp ferS encodes a multimodular nonribosomal siderophore synthetase tightly clustered with Fusarium graminearum ferricrocin synthetase. Functional analys...

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Autores principales: Jirakkakul, Jiraporn, Wichienchote, Nuchnudda, Likhitrattanapisal, Somsak, Ingsriswang, Supawadee, Yoocha, Thippawan, Tangphatsornruang, Sithichoke, Wasuwan, Rudsamee, Cheevadhanarak, Supapon, Tanticharoen, Morakot, Amnuaykanjanasin, Alongkorn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8490459/
https://www.ncbi.nlm.nih.gov/pubmed/34608174
http://dx.doi.org/10.1038/s41598-021-99030-4
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author Jirakkakul, Jiraporn
Wichienchote, Nuchnudda
Likhitrattanapisal, Somsak
Ingsriswang, Supawadee
Yoocha, Thippawan
Tangphatsornruang, Sithichoke
Wasuwan, Rudsamee
Cheevadhanarak, Supapon
Tanticharoen, Morakot
Amnuaykanjanasin, Alongkorn
author_facet Jirakkakul, Jiraporn
Wichienchote, Nuchnudda
Likhitrattanapisal, Somsak
Ingsriswang, Supawadee
Yoocha, Thippawan
Tangphatsornruang, Sithichoke
Wasuwan, Rudsamee
Cheevadhanarak, Supapon
Tanticharoen, Morakot
Amnuaykanjanasin, Alongkorn
author_sort Jirakkakul, Jiraporn
collection PubMed
description The putative ferricrocin synthetase gene ferS in the fungal entomopathogen Beauveria bassiana BCC 2660 was identified and characterized. The 14,445-bp ferS encodes a multimodular nonribosomal siderophore synthetase tightly clustered with Fusarium graminearum ferricrocin synthetase. Functional analysis of this gene was performed by disruption with the bar cassette. ΔferS mutants were verified by Southern and PCR analyses. HPLC and TLC analyses of crude extracts indicated that biosynthesis of ferricrocin was abolished in ΔferS. Insect bioassays surprisingly indicated that ΔferS killed the Spodoptera exigua larvae faster (LT(50) 59 h) than wild type (66 h). Growth and developmental assays of the mutant and wild type demonstrated that ΔferS had a significant increase in germination under iron depletion and radial growth and a decrease in conidiation. Mitotracker staining showed that the mitochondrial activity was enriched in ΔferS under both iron excess and iron depletion. Comparative transcriptomes between wild type and ΔferS indicated that the mutant was increased in the expression of eight cytochrome P450 genes and those in iron homeostasis, ferroptosis, oxidative stress response, ergosterol biosynthesis, and TCA cycle, compared to wild type. Our data suggested that ΔferS sensed the iron excess and the oxidative stress and, in turn, was up-regulated in the antioxidant-related genes and those in ergosterol biosynthesis and TCA cycle. These increased biological pathways help ΔferS grow and germinate faster than the wild type and caused higher insect mortality than the wild type in the early phase of infection.
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spelling pubmed-84904592021-10-05 Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana Jirakkakul, Jiraporn Wichienchote, Nuchnudda Likhitrattanapisal, Somsak Ingsriswang, Supawadee Yoocha, Thippawan Tangphatsornruang, Sithichoke Wasuwan, Rudsamee Cheevadhanarak, Supapon Tanticharoen, Morakot Amnuaykanjanasin, Alongkorn Sci Rep Article The putative ferricrocin synthetase gene ferS in the fungal entomopathogen Beauveria bassiana BCC 2660 was identified and characterized. The 14,445-bp ferS encodes a multimodular nonribosomal siderophore synthetase tightly clustered with Fusarium graminearum ferricrocin synthetase. Functional analysis of this gene was performed by disruption with the bar cassette. ΔferS mutants were verified by Southern and PCR analyses. HPLC and TLC analyses of crude extracts indicated that biosynthesis of ferricrocin was abolished in ΔferS. Insect bioassays surprisingly indicated that ΔferS killed the Spodoptera exigua larvae faster (LT(50) 59 h) than wild type (66 h). Growth and developmental assays of the mutant and wild type demonstrated that ΔferS had a significant increase in germination under iron depletion and radial growth and a decrease in conidiation. Mitotracker staining showed that the mitochondrial activity was enriched in ΔferS under both iron excess and iron depletion. Comparative transcriptomes between wild type and ΔferS indicated that the mutant was increased in the expression of eight cytochrome P450 genes and those in iron homeostasis, ferroptosis, oxidative stress response, ergosterol biosynthesis, and TCA cycle, compared to wild type. Our data suggested that ΔferS sensed the iron excess and the oxidative stress and, in turn, was up-regulated in the antioxidant-related genes and those in ergosterol biosynthesis and TCA cycle. These increased biological pathways help ΔferS grow and germinate faster than the wild type and caused higher insect mortality than the wild type in the early phase of infection. Nature Publishing Group UK 2021-10-04 /pmc/articles/PMC8490459/ /pubmed/34608174 http://dx.doi.org/10.1038/s41598-021-99030-4 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Jirakkakul, Jiraporn
Wichienchote, Nuchnudda
Likhitrattanapisal, Somsak
Ingsriswang, Supawadee
Yoocha, Thippawan
Tangphatsornruang, Sithichoke
Wasuwan, Rudsamee
Cheevadhanarak, Supapon
Tanticharoen, Morakot
Amnuaykanjanasin, Alongkorn
Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title_full Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title_fullStr Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title_full_unstemmed Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title_short Iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in Beauveria bassiana
title_sort iron homeostasis in the absence of ferricrocin and its consequences in fungal development and insect virulence in beauveria bassiana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8490459/
https://www.ncbi.nlm.nih.gov/pubmed/34608174
http://dx.doi.org/10.1038/s41598-021-99030-4
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