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Transcriptomic Insights into Benzenamine Effects on the Development, Aflatoxin Biosynthesis, and Virulence of . | LitMetric

Transcriptomic Insights into Benzenamine Effects on the Development, Aflatoxin Biosynthesis, and Virulence of .

Toxins (Basel)

State Key Laboratory of Food Nutrition and Safety, Key Laboratory of Food Nutrition and Safety, Ministry of Education, College of Food Engineering and Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.

Published: January 2019

AI Article Synopsis

  • A soilborne pathogenic fungus is a significant health risk due to its production of carcinogenic aflatoxins in food, and benzenamine has shown strong inhibitory effects on its growth.
  • The study found that at a concentration of 100 µL/L, benzenamine significantly reduced aflatoxin levels and the fungus's ability to colonize maize, affecting the expression of thousands of genes related to amino acid and protein metabolism.
  • The research suggests benzenamine may be effective as a fumigant and offers insights into its antifungal mechanisms, potentially aiding the development of new strategies to prevent aflatoxin contamination.

Article Abstract

is a soilborne pathogenic fungus that poses a serious public health threat due to it contamination of food with carcinogenic aflatoxins. Our previous studies have demonstrated that benzenamine displayed strong inhibitory effects on the mycelial growth of . In this study, we systematically investigated the inhibitory effects of benzenamine on the development, aflatoxin biosynthesis, and virulence in , as well as the underlying mechanism. The results indicated that benzenamine exhibited great capacity to combat at a concentration of 100 µL/L, leading to significantly decreased aflatoxin accumulation and colonization capacity in maize. The transcriptional profile revealed that 3589 genes show altered mRNA levels in the after treatment with benzenamine, including 1890 down-regulated and 1699 up-regulated genes. Most of the differentially expressed genes participated in the biosynthesis and metabolism of amino acid, purine metabolism, and protein processing in endoplasmic reticulum. Additionally, the results brought us to a suggestion that benzenamine affects the development, aflatoxin biosynthesis, and pathogenicity of via down-regulating related genes by depressing the expression of the global regulatory factor . Overall, this study indicates that benzenamine have tremendous potential to act as a fumigant against pathogenic . Furthermore, this work offers valuable information regarding the underlying antifungal mechanism of benzenamine against at the level of transcription, and these potential targets may be conducive in developing new strategies for preventing aflatoxin contamination.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6410012PMC
http://dx.doi.org/10.3390/toxins11020070DOI Listing

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