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Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut

Aflatoxin-affected groundnut or peanut presents a major global health issue to both commercial and subsistence farming. Therefore, understanding the genetic and molecular mechanisms associated with resistance to aflatoxin production during host–pathogen interactions is crucial for breeding groundnut...

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Autores principales: Soni, Pooja, Nayak, Spurthi N., Kumar, Rakesh, Pandey, Manish K., Singh, Namita, Sudini, Hari K., Bajaj, Prasad, Fountain, Jake C., Singam, Prashant, Hong, Yanbin, Chen, Xiaoping, Zhuang, Weijian, Liao, Boshou, Guo, Baozhu, Varshney, Rajeev K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7767264/
https://www.ncbi.nlm.nih.gov/pubmed/33339393
http://dx.doi.org/10.3390/jof6040370
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author Soni, Pooja
Nayak, Spurthi N.
Kumar, Rakesh
Pandey, Manish K.
Singh, Namita
Sudini, Hari K.
Bajaj, Prasad
Fountain, Jake C.
Singam, Prashant
Hong, Yanbin
Chen, Xiaoping
Zhuang, Weijian
Liao, Boshou
Guo, Baozhu
Varshney, Rajeev K.
author_facet Soni, Pooja
Nayak, Spurthi N.
Kumar, Rakesh
Pandey, Manish K.
Singh, Namita
Sudini, Hari K.
Bajaj, Prasad
Fountain, Jake C.
Singam, Prashant
Hong, Yanbin
Chen, Xiaoping
Zhuang, Weijian
Liao, Boshou
Guo, Baozhu
Varshney, Rajeev K.
author_sort Soni, Pooja
collection PubMed
description Aflatoxin-affected groundnut or peanut presents a major global health issue to both commercial and subsistence farming. Therefore, understanding the genetic and molecular mechanisms associated with resistance to aflatoxin production during host–pathogen interactions is crucial for breeding groundnut cultivars with minimal level of aflatoxin contamination. Here, we performed gene expression profiling to better understand the mechanisms involved in reduction and prevention of aflatoxin contamination resulting from Aspergillus flavus infection in groundnut seeds. RNA sequencing (RNA-Seq) of 16 samples from different time points during infection (24 h, 48 h, 72 h and the 7th day after inoculation) in U 4-7-5 (resistant) and JL 24 (susceptible) genotypes yielded 840.5 million raw reads with an average of 52.5 million reads per sample. A total of 1779 unique differentially expressed genes (DEGs) were identified. Furthermore, comprehensive analysis revealed several pathways, such as disease resistance, hormone biosynthetic signaling, flavonoid biosynthesis, reactive oxygen species (ROS) detoxifying, cell wall metabolism and catabolizing and seed germination. We also detected several highly upregulated transcription factors, such as ARF, DBB, MYB, NAC and C2H2 in the resistant genotype in comparison to the susceptible genotype after inoculation. Moreover, RNA-Seq analysis suggested the occurrence of coordinated control of key pathways controlling cellular physiology and metabolism upon A. flavus infection, resulting in reduced aflatoxin production.
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spelling pubmed-77672642020-12-28 Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut Soni, Pooja Nayak, Spurthi N. Kumar, Rakesh Pandey, Manish K. Singh, Namita Sudini, Hari K. Bajaj, Prasad Fountain, Jake C. Singam, Prashant Hong, Yanbin Chen, Xiaoping Zhuang, Weijian Liao, Boshou Guo, Baozhu Varshney, Rajeev K. J Fungi (Basel) Article Aflatoxin-affected groundnut or peanut presents a major global health issue to both commercial and subsistence farming. Therefore, understanding the genetic and molecular mechanisms associated with resistance to aflatoxin production during host–pathogen interactions is crucial for breeding groundnut cultivars with minimal level of aflatoxin contamination. Here, we performed gene expression profiling to better understand the mechanisms involved in reduction and prevention of aflatoxin contamination resulting from Aspergillus flavus infection in groundnut seeds. RNA sequencing (RNA-Seq) of 16 samples from different time points during infection (24 h, 48 h, 72 h and the 7th day after inoculation) in U 4-7-5 (resistant) and JL 24 (susceptible) genotypes yielded 840.5 million raw reads with an average of 52.5 million reads per sample. A total of 1779 unique differentially expressed genes (DEGs) were identified. Furthermore, comprehensive analysis revealed several pathways, such as disease resistance, hormone biosynthetic signaling, flavonoid biosynthesis, reactive oxygen species (ROS) detoxifying, cell wall metabolism and catabolizing and seed germination. We also detected several highly upregulated transcription factors, such as ARF, DBB, MYB, NAC and C2H2 in the resistant genotype in comparison to the susceptible genotype after inoculation. Moreover, RNA-Seq analysis suggested the occurrence of coordinated control of key pathways controlling cellular physiology and metabolism upon A. flavus infection, resulting in reduced aflatoxin production. MDPI 2020-12-16 /pmc/articles/PMC7767264/ /pubmed/33339393 http://dx.doi.org/10.3390/jof6040370 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Soni, Pooja
Nayak, Spurthi N.
Kumar, Rakesh
Pandey, Manish K.
Singh, Namita
Sudini, Hari K.
Bajaj, Prasad
Fountain, Jake C.
Singam, Prashant
Hong, Yanbin
Chen, Xiaoping
Zhuang, Weijian
Liao, Boshou
Guo, Baozhu
Varshney, Rajeev K.
Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title_full Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title_fullStr Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title_full_unstemmed Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title_short Transcriptome Analysis Identified Coordinated Control of Key Pathways Regulating Cellular Physiology and Metabolism upon Aspergillus flavus Infection Resulting in Reduced Aflatoxin Production in Groundnut
title_sort transcriptome analysis identified coordinated control of key pathways regulating cellular physiology and metabolism upon aspergillus flavus infection resulting in reduced aflatoxin production in groundnut
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7767264/
https://www.ncbi.nlm.nih.gov/pubmed/33339393
http://dx.doi.org/10.3390/jof6040370
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