Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes

Aflatoxin is a threatening mycotoxin primarily present in the agricultural environment, especially in food and feedstuff, and poses significant global health risks. Aflatoxins are produced mainly by <i>Aspergillus flavus</i>. Conidia germination is the first step for <i>A. flavus&l...

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Main Authors: Chong Li, Sifan Jia, Shahid Ali Rajput, Desheng Qi, Shuai Wang
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Toxins
Subjects:
Online Access:https://www.mdpi.com/2072-6651/14/8/560
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author Chong Li
Sifan Jia
Shahid Ali Rajput
Desheng Qi
Shuai Wang
author_facet Chong Li
Sifan Jia
Shahid Ali Rajput
Desheng Qi
Shuai Wang
author_sort Chong Li
collection DOAJ
description Aflatoxin is a threatening mycotoxin primarily present in the agricultural environment, especially in food and feedstuff, and poses significant global health risks. Aflatoxins are produced mainly by <i>Aspergillus flavus</i>. Conidia germination is the first step for <i>A. flavus</i> development. In this study, the transcriptome of <i>A. flavus</i> conidia was analyzed at three different stages of conidia germination, which were characterized by two different microscopes. Dormant conidia grew isotropically with the cell size increasing up to 5 h of after being inoculated in a liquid medium. Conidia changed towards polarized growth from 5 to 10 h of germination, during which germ tubes formed. Moreover, transcriptome analyses revealed that a larger number of genes changed in the isotropic growth stages compared to polarized growth, with 1910 differentially expressed genes (DEGs) up-regulated and 969 DEGs down-regulated in isotropic growth. GO and KEGG pathway analyses and pathway enrichment demonstrated that, in the isotropic growth stage, the top three pathways were translation, amino acid and carbohydrate metabolism. The ribosome was a key pathway in translation, as <i>RPS28e</i>, <i>RPL53</i> and <i>RPL36e</i> were the top three DEGs. For polarized growth stage, lipid metabolism, amino acid metabolism and carbohydrate metabolism were the top three most active pathways. <i>POX1</i> from alpha-linolenic acid metabolism was a DEG in lipid metabolism as well. Genes related to the antioxidant system were crucial for conidia germination. Furthermore, RT-PCR results showed the same trends as the transcriptome for redox genes, and essential oils have a significant inhibitory effect on germination rate and redox gene expression. Therefore, redox genes play an important role during germination, and the disruption of redox genes is involved in the mechanism of action of coumalic acid and geraniol against <i>A. flavus</i> spore germination.
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spelling doaj.art-62c1fe539db344a48db559c1f7544add2023-12-03T14:35:37ZengMDPI AGToxins2072-66512022-08-0114856010.3390/toxins14080560Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox GenesChong Li0Sifan Jia1Shahid Ali Rajput2Desheng Qi3Shuai Wang4Department of Animal Nutrition and Feed Science, Huazhong Agricultural University, Wuhan 430070, ChinaDepartment of Animal Nutrition and Feed Science, Huazhong Agricultural University, Wuhan 430070, ChinaDepartment of Animal Feed and Production, Faculty of Veterinary and Animal Sciences, Muhammad Nawaz Shareef University of Agriculture, Multan 66000, PakistanDepartment of Animal Nutrition and Feed Science, Huazhong Agricultural University, Wuhan 430070, ChinaDepartment of Animal Nutrition and Feed Science, Huazhong Agricultural University, Wuhan 430070, ChinaAflatoxin is a threatening mycotoxin primarily present in the agricultural environment, especially in food and feedstuff, and poses significant global health risks. Aflatoxins are produced mainly by <i>Aspergillus flavus</i>. Conidia germination is the first step for <i>A. flavus</i> development. In this study, the transcriptome of <i>A. flavus</i> conidia was analyzed at three different stages of conidia germination, which were characterized by two different microscopes. Dormant conidia grew isotropically with the cell size increasing up to 5 h of after being inoculated in a liquid medium. Conidia changed towards polarized growth from 5 to 10 h of germination, during which germ tubes formed. Moreover, transcriptome analyses revealed that a larger number of genes changed in the isotropic growth stages compared to polarized growth, with 1910 differentially expressed genes (DEGs) up-regulated and 969 DEGs down-regulated in isotropic growth. GO and KEGG pathway analyses and pathway enrichment demonstrated that, in the isotropic growth stage, the top three pathways were translation, amino acid and carbohydrate metabolism. The ribosome was a key pathway in translation, as <i>RPS28e</i>, <i>RPL53</i> and <i>RPL36e</i> were the top three DEGs. For polarized growth stage, lipid metabolism, amino acid metabolism and carbohydrate metabolism were the top three most active pathways. <i>POX1</i> from alpha-linolenic acid metabolism was a DEG in lipid metabolism as well. Genes related to the antioxidant system were crucial for conidia germination. Furthermore, RT-PCR results showed the same trends as the transcriptome for redox genes, and essential oils have a significant inhibitory effect on germination rate and redox gene expression. Therefore, redox genes play an important role during germination, and the disruption of redox genes is involved in the mechanism of action of coumalic acid and geraniol against <i>A. flavus</i> spore germination.https://www.mdpi.com/2072-6651/14/8/560<i>Aspergillus flavus</i>conidiagerminationtranscriptomeredox genes
spellingShingle Chong Li
Sifan Jia
Shahid Ali Rajput
Desheng Qi
Shuai Wang
Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
Toxins
<i>Aspergillus flavus</i>
conidia
germination
transcriptome
redox genes
title Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
title_full Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
title_fullStr Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
title_full_unstemmed Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
title_short Transcriptional Stages of Conidia Germination and Associated Genes in <em>Aspergillus flavus</em>: An Essential Role for Redox Genes
title_sort transcriptional stages of conidia germination and associated genes in em aspergillus flavus em an essential role for redox genes
topic <i>Aspergillus flavus</i>
conidia
germination
transcriptome
redox genes
url https://www.mdpi.com/2072-6651/14/8/560
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