A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus

Aspergillus flavus (A. flavus) is one of the most important model environmental fungi which can produce a potent toxin and carcinogen known as aflatoxin. Aflatoxin contamination causes massive agricultural economic loss and a critical human health issue each year. Although a functional vacuole has b...

Full description

Bibliographic Details
Main Authors: Mingkun Yang, Zhuo Zhu, Youhuang Bai, Zhenhong Zhuang, Feng Ge, Mingzhu Li, Shihua Wang
Format: Article
Language:English
Published: Taylor & Francis Group 2021-01-01
Series:Virulence
Subjects:
Online Access:http://dx.doi.org/10.1080/21505594.2020.1859820
id doaj-5fea9c9669614e43a46bca0258539971
record_format Article
spelling doaj-5fea9c9669614e43a46bca02585399712021-01-04T18:22:07ZengTaylor & Francis GroupVirulence2150-55942150-56082021-01-011219611310.1080/21505594.2020.18598201859820A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavusMingkun Yang0Zhuo Zhu1Youhuang Bai2Zhenhong Zhuang3Feng Ge4Mingzhu Li5Shihua Wang6Fujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityInstitute of Hydrobiology, Chinese Academy of SciencesFujian Agriculture and Forestry UniversityFujian Agriculture and Forestry UniversityAspergillus flavus (A. flavus) is one of the most important model environmental fungi which can produce a potent toxin and carcinogen known as aflatoxin. Aflatoxin contamination causes massive agricultural economic loss and a critical human health issue each year. Although a functional vacuole has been highlighted for its fundamental importance in fungal virulence, the molecular mechanisms of the vacuole in regulating the virulence of A. flavus remain largely unknown. Here, we identified a novel vacuole-related protein in A. flavus, the ortholog of phosphatidylinositol-3-phosphate-5-kinase (Fab1) in Saccharomyces cerevisiae. This kinase was located at the vacuolar membrane, and loss of fab1 function was found to affect the growth, conidia and sclerotial development, cellular acidification and metal ion homeostasis, aflatoxin production and pathogenicity of A. flavus. Further functional analysis revealed that Fab1 was required to maintain the vacuole size and cell morphology. Additional quantitative proteomic analysis suggested that Fab1 was likely to play an important role in maintaining vacuolar/cellular homeostasis, with vacuolar dysregulation upon fab1 deletion leading to impaired aflatoxin synthesis in this fungus. Together, these results provide insight into the molecular mechanisms by which this pathogen produces aflatoxin and mediates its pathogenicity, and may facilitate dissection of the vacuole-mediated regulatory network in A. flavus.http://dx.doi.org/10.1080/21505594.2020.1859820aspergillus flavusfab1vacuoleaflatoxin productionpathogenicity
collection DOAJ
language English
format Article
sources DOAJ
author Mingkun Yang
Zhuo Zhu
Youhuang Bai
Zhenhong Zhuang
Feng Ge
Mingzhu Li
Shihua Wang
spellingShingle Mingkun Yang
Zhuo Zhu
Youhuang Bai
Zhenhong Zhuang
Feng Ge
Mingzhu Li
Shihua Wang
A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
Virulence
aspergillus flavus
fab1
vacuole
aflatoxin production
pathogenicity
author_facet Mingkun Yang
Zhuo Zhu
Youhuang Bai
Zhenhong Zhuang
Feng Ge
Mingzhu Li
Shihua Wang
author_sort Mingkun Yang
title A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
title_short A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
title_full A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
title_fullStr A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
title_full_unstemmed A novel phosphoinositide kinase Fab1 regulates biosynthesis of pathogenic aflatoxin in Aspergillus flavus
title_sort novel phosphoinositide kinase fab1 regulates biosynthesis of pathogenic aflatoxin in aspergillus flavus
publisher Taylor & Francis Group
series Virulence
issn 2150-5594
2150-5608
publishDate 2021-01-01
description Aspergillus flavus (A. flavus) is one of the most important model environmental fungi which can produce a potent toxin and carcinogen known as aflatoxin. Aflatoxin contamination causes massive agricultural economic loss and a critical human health issue each year. Although a functional vacuole has been highlighted for its fundamental importance in fungal virulence, the molecular mechanisms of the vacuole in regulating the virulence of A. flavus remain largely unknown. Here, we identified a novel vacuole-related protein in A. flavus, the ortholog of phosphatidylinositol-3-phosphate-5-kinase (Fab1) in Saccharomyces cerevisiae. This kinase was located at the vacuolar membrane, and loss of fab1 function was found to affect the growth, conidia and sclerotial development, cellular acidification and metal ion homeostasis, aflatoxin production and pathogenicity of A. flavus. Further functional analysis revealed that Fab1 was required to maintain the vacuole size and cell morphology. Additional quantitative proteomic analysis suggested that Fab1 was likely to play an important role in maintaining vacuolar/cellular homeostasis, with vacuolar dysregulation upon fab1 deletion leading to impaired aflatoxin synthesis in this fungus. Together, these results provide insight into the molecular mechanisms by which this pathogen produces aflatoxin and mediates its pathogenicity, and may facilitate dissection of the vacuole-mediated regulatory network in A. flavus.
topic aspergillus flavus
fab1
vacuole
aflatoxin production
pathogenicity
url http://dx.doi.org/10.1080/21505594.2020.1859820
work_keys_str_mv AT mingkunyang anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT zhuozhu anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT youhuangbai anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT zhenhongzhuang anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT fengge anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT mingzhuli anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT shihuawang anovelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT mingkunyang novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT zhuozhu novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT youhuangbai novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT zhenhongzhuang novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT fengge novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT mingzhuli novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
AT shihuawang novelphosphoinositidekinasefab1regulatesbiosynthesisofpathogenicaflatoxininaspergillusflavus
_version_ 1724349098341957632