作者
Francisco Roberto Quiroz-Figueroa, Abraham Cruz-Mendívil, Enrique Ibarra-Laclette, Luz María García-Pérez, Rosa Luz Gómez-Peraza, Greta Hanako-Rosas, Eliel Ruíz-May, Apolinar Santamaría-Miranda, Rupesh Kumar Singh, Gerardo Campos-Rivero, Elpidio García-Ramírez, José Alberto Narváez-Zapata
发表日期
2023/6/27
期刊
Frontiers in Plant Science
卷号
14
页码范围
1195794
出版商
Frontiers Media SA
简介
Introduction
The fungal pathogen Fusarium verticillioides (Sacc.) Nirenberg (Fv) causes considerable agricultural and economic losses and is harmful to animal and human health. Fv can infect maize throughout its long agricultural cycle, and root infection drastically affects maize growth and yield.
Methods
The root cell wall is the first physical and defensive barrier against soilborne pathogens such as Fv. This study compares two contrasting genotypes of maize (Zea mays L.) roots that are resistant (RES) or susceptible (SUS) to Fv infection by using transcriptomics, fluorescence, scanning electron microscopy analyses, and ddPCR.
Results
Seeds were infected with a highly virulent local Fv isolate. Although Fv infected both the RES and SUS genotypes, infection occurred faster in SUS, notably showing a difference of three to four days. In addition, root infections in RES were less severe in comparison to SUS infections. Comparative transcriptomics (rate +Fv/control) were performed seven days after inoculation (DAI). The analysis of differentially expressed genes (DEGs) in each rate revealed 733 and 559 unique transcripts that were significantly (P ≤0.05) up and downregulated in RES (+Fv/C) and SUS (+Fv/C), respectively. KEGG pathway enrichment analysis identified coumarin and furanocoumarin biosynthesis, phenylpropanoid biosynthesis, and plant-pathogen interaction pathways as being highly enriched with specific genes involved in cell wall modifications in the RES genotype, whereas the SUS genotype mainly displayed a repressed plant–pathogen interaction pathway and did not show any enriched cell wall genes. In particular, cell …
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