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R-SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum
by
Zheng, Wenhui
, Zhang, Jing
, Lu, Guo-dong
, Zheng, Yangling
, Abubakar, Yakubu Saddeeq
, Fang, Wenqin
, Sun, Peng
, Adnan, Muhammad
, Lou, Yi
in
barley
/ Biochemistry
/ Biomedical and Life Sciences
/ Biosynthesis
/ Blight
/ Cell Biology
/ Cell fusion
/ Clonal deletion
/ conidia
/ conidiation
/ Deletion mutant
/ Deoxynivalenol
/ Down-regulation
/ Endoplasmic reticulum
/ Eukaryotes
/ Fungal Proteins - metabolism
/ Fungal Proteins - physiology
/ Fusarium - metabolism
/ Fusarium - pathogenicity
/ Fusarium - physiology
/ Fusarium graminearum
/ Fusarium head blight
/ Gene expression
/ Gene regulation
/ Genes
/ Homology
/ Insects
/ Life Sciences
/ Membrane Fusion
/ Membrane trafficking
/ Membranes
/ Microbial Genetics and Genomics
/ Microbiology
/ Morphology
/ Mutants
/ Mycotoxins
/ N-Ethylmaleimide
/ N-Ethylmaleimide-sensitive protein
/ Original Article
/ Pathogenesis
/ Pathogenicity
/ Pathogens
/ Phytopathogenic fungi
/ Plant Diseases
/ plant pathogenic fungi
/ Plant resistance
/ Plant Sciences
/ Protein Transport
/ Proteins
/ Proteomics
/ R-SNARE Proteins - metabolism
/ R-SNARE Proteins - physiology
/ Receptors
/ SNAP receptors
/ Trichothecenes - metabolism
/ Triticum - microbiology
/ vegetative growth
/ Virulence
/ Virulence - genetics
/ wheat
/ Yeast
2020
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R-SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum
by
Zheng, Wenhui
, Zhang, Jing
, Lu, Guo-dong
, Zheng, Yangling
, Abubakar, Yakubu Saddeeq
, Fang, Wenqin
, Sun, Peng
, Adnan, Muhammad
, Lou, Yi
in
barley
/ Biochemistry
/ Biomedical and Life Sciences
/ Biosynthesis
/ Blight
/ Cell Biology
/ Cell fusion
/ Clonal deletion
/ conidia
/ conidiation
/ Deletion mutant
/ Deoxynivalenol
/ Down-regulation
/ Endoplasmic reticulum
/ Eukaryotes
/ Fungal Proteins - metabolism
/ Fungal Proteins - physiology
/ Fusarium - metabolism
/ Fusarium - pathogenicity
/ Fusarium - physiology
/ Fusarium graminearum
/ Fusarium head blight
/ Gene expression
/ Gene regulation
/ Genes
/ Homology
/ Insects
/ Life Sciences
/ Membrane Fusion
/ Membrane trafficking
/ Membranes
/ Microbial Genetics and Genomics
/ Microbiology
/ Morphology
/ Mutants
/ Mycotoxins
/ N-Ethylmaleimide
/ N-Ethylmaleimide-sensitive protein
/ Original Article
/ Pathogenesis
/ Pathogenicity
/ Pathogens
/ Phytopathogenic fungi
/ Plant Diseases
/ plant pathogenic fungi
/ Plant resistance
/ Plant Sciences
/ Protein Transport
/ Proteins
/ Proteomics
/ R-SNARE Proteins - metabolism
/ R-SNARE Proteins - physiology
/ Receptors
/ SNAP receptors
/ Trichothecenes - metabolism
/ Triticum - microbiology
/ vegetative growth
/ Virulence
/ Virulence - genetics
/ wheat
/ Yeast
2020
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R-SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum
by
Zheng, Wenhui
, Zhang, Jing
, Lu, Guo-dong
, Zheng, Yangling
, Abubakar, Yakubu Saddeeq
, Fang, Wenqin
, Sun, Peng
, Adnan, Muhammad
, Lou, Yi
in
barley
/ Biochemistry
/ Biomedical and Life Sciences
/ Biosynthesis
/ Blight
/ Cell Biology
/ Cell fusion
/ Clonal deletion
/ conidia
/ conidiation
/ Deletion mutant
/ Deoxynivalenol
/ Down-regulation
/ Endoplasmic reticulum
/ Eukaryotes
/ Fungal Proteins - metabolism
/ Fungal Proteins - physiology
/ Fusarium - metabolism
/ Fusarium - pathogenicity
/ Fusarium - physiology
/ Fusarium graminearum
/ Fusarium head blight
/ Gene expression
/ Gene regulation
/ Genes
/ Homology
/ Insects
/ Life Sciences
/ Membrane Fusion
/ Membrane trafficking
/ Membranes
/ Microbial Genetics and Genomics
/ Microbiology
/ Morphology
/ Mutants
/ Mycotoxins
/ N-Ethylmaleimide
/ N-Ethylmaleimide-sensitive protein
/ Original Article
/ Pathogenesis
/ Pathogenicity
/ Pathogens
/ Phytopathogenic fungi
/ Plant Diseases
/ plant pathogenic fungi
/ Plant resistance
/ Plant Sciences
/ Protein Transport
/ Proteins
/ Proteomics
/ R-SNARE Proteins - metabolism
/ R-SNARE Proteins - physiology
/ Receptors
/ SNAP receptors
/ Trichothecenes - metabolism
/ Triticum - microbiology
/ vegetative growth
/ Virulence
/ Virulence - genetics
/ wheat
/ Yeast
2020
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R-SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum
Journal Article
R-SNARE FgSec22 is essential for growth, pathogenicity and DON production of Fusarium graminearum
2020
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Overview
SNAREs (soluble
N
-ethylmaleimide-sensitive factor attachment protein receptors) facilitate intracellular vesicle trafficking and membrane fusion in eukaryotic cells, and play a vital role in growth, development and pathogenicity of phytopathogens.
Fusarium
head blight (FHB) caused by
F. graminearum
is one of the most devastating diseases of wheat and barley worldwide. Sec22 is a member of the SNARE family of proteins and its homologues have been shown to have diverse biological roles in different organisms. However, the functions of this protein in the development and pathogenesis of
F. graminearum
are currently unknown. In this study, we employed integrated biochemical, microbiological and molecular genetic approaches to investigate the roles of
FgSec22
in
F. graminearum
. Our data reveal that this SNARE protein is localized to endoplasmic reticulum (ER) and is indispensable for normal conidiation, conidial morphology and pathogenesis of this phytopathogenic fungus. Our biochemical assay of deoxynivalenol (DON) reveals the active involvement of this protein in the production of this mycotoxin in
F. graminearum
. This has further been confirmed by qRT-PCR analyses of trichothecene (
TRI
) genes’ expression where the
ΔFgsec22
deletion mutant demonstrated a significant down-regulation of these genes in comparison to the wild-type PH-1. Unlike the wild-type and the complemented strain, the mutant strain presents a remarkable defect in colony formation which reflects the critical role it plays in vegetative growth. Collectively, our data support that the SNARE protein
FgSec22
is required for vegetative growth, pathogenesis and DON biosynthesis in
F. graminearum
.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
/ Biomedical and Life Sciences
/ Blight
/ conidia
/ Fungal Proteins - metabolism
/ Fungal Proteins - physiology
/ Genes
/ Homology
/ Insects
/ Microbial Genetics and Genomics
/ Mutants
/ N-Ethylmaleimide-sensitive protein
/ Proteins
/ R-SNARE Proteins - metabolism
/ R-SNARE Proteins - physiology
/ wheat
/ Yeast
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