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Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines

Southern corn leaf blight is one of the most widespread foliar diseases in maize-producing areas worldwide and can seriously reduce the yield and quality of sweet corn. However, the molecular mechanisms underlying the disease in sweet corn have not been widely reported. In this study, two sweet corn...

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Autores principales: Xiong, Caiyun, Mo, Haiwei, Fan, Jingsheng, Ren, Wenchuang, Pei, Hu, Zhang, Yahui, Ma, Ziwei, Wang, Wenyi, Huang, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499663/
https://www.ncbi.nlm.nih.gov/pubmed/36142144
http://dx.doi.org/10.3390/ijms231810236
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author Xiong, Caiyun
Mo, Haiwei
Fan, Jingsheng
Ren, Wenchuang
Pei, Hu
Zhang, Yahui
Ma, Ziwei
Wang, Wenyi
Huang, Jun
author_facet Xiong, Caiyun
Mo, Haiwei
Fan, Jingsheng
Ren, Wenchuang
Pei, Hu
Zhang, Yahui
Ma, Ziwei
Wang, Wenyi
Huang, Jun
author_sort Xiong, Caiyun
collection PubMed
description Southern corn leaf blight is one of the most widespread foliar diseases in maize-producing areas worldwide and can seriously reduce the yield and quality of sweet corn. However, the molecular mechanisms underlying the disease in sweet corn have not been widely reported. In this study, two sweet corn inbred lines, resistant K13 (RK13) and susceptible K39 (SK39), were used to explore the disease resistance mechanism of southern leaf blight. We observed morphological characteristics and assessed the changes in protective enzymatic activity in sweet corn leaves after inoculation of C. heterostrophus. RNA-seq was performed to elucidate the transcriptional dynamics and reveal the key pathways involved in southern leaf blight resistance without pathogens (Mock) and at 1 and 3 days post inoculation (1 and 3 dpi). Differentially expressed genes (DEGs) were identified in the SK39 group (including three pairwise combinations: SK39−0d_vs_SK39−1d, SK39−1d_vs_SK39−3d and SK39−1d_vs_SK39−3d), the RK13 group (including three pairwise combinations: RK13−0d_vs_RK13−1d, RK13−1d_vs_RK13−3d and RK13−1d_vs_RK13−3d), and the SK39_vs_RK13 group (including three pairwise combinations: SK39−0d_vs_RK13−0d, SK39−1d_vs_RK13−1d, and SK39−3d_vs_RK13−3d). In our study, 9455 DEGs from the RK13 group, 9626 from the SK39 group, and 9051 DEGs from the SK39_vs_RK13 group were obtained. Furthermore, 2775, 163, and 185 DEGs were co-expressed at SK39_vs_RK13, RK13, and SK39, respectively. A functional analysis of the DEGs revealed that five pathways—i.e., photosynthesis, plant hormone signal transduction, MAPK signaling pathway, phenylpropanoid biosynthesis, and biosynthesis of secondary metabolites—and transcription factor families play crucial roles in disease resistance. The results from the present study enabled the identification of the JA and SA signaling pathways, which are potentially involved in the response to southern leaf blight in maize. Our findings also highlight the significance of ZIM transcription factors and pathogenesis-related (PR) genes during pathogen infection. This study preliminarily explored the molecular mechanisms of the interaction between sweet corn and C. heterostrophus and provides a reference for identifying southern leaf blight resistance genes in the future.
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spelling pubmed-94996632022-09-23 Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines Xiong, Caiyun Mo, Haiwei Fan, Jingsheng Ren, Wenchuang Pei, Hu Zhang, Yahui Ma, Ziwei Wang, Wenyi Huang, Jun Int J Mol Sci Article Southern corn leaf blight is one of the most widespread foliar diseases in maize-producing areas worldwide and can seriously reduce the yield and quality of sweet corn. However, the molecular mechanisms underlying the disease in sweet corn have not been widely reported. In this study, two sweet corn inbred lines, resistant K13 (RK13) and susceptible K39 (SK39), were used to explore the disease resistance mechanism of southern leaf blight. We observed morphological characteristics and assessed the changes in protective enzymatic activity in sweet corn leaves after inoculation of C. heterostrophus. RNA-seq was performed to elucidate the transcriptional dynamics and reveal the key pathways involved in southern leaf blight resistance without pathogens (Mock) and at 1 and 3 days post inoculation (1 and 3 dpi). Differentially expressed genes (DEGs) were identified in the SK39 group (including three pairwise combinations: SK39−0d_vs_SK39−1d, SK39−1d_vs_SK39−3d and SK39−1d_vs_SK39−3d), the RK13 group (including three pairwise combinations: RK13−0d_vs_RK13−1d, RK13−1d_vs_RK13−3d and RK13−1d_vs_RK13−3d), and the SK39_vs_RK13 group (including three pairwise combinations: SK39−0d_vs_RK13−0d, SK39−1d_vs_RK13−1d, and SK39−3d_vs_RK13−3d). In our study, 9455 DEGs from the RK13 group, 9626 from the SK39 group, and 9051 DEGs from the SK39_vs_RK13 group were obtained. Furthermore, 2775, 163, and 185 DEGs were co-expressed at SK39_vs_RK13, RK13, and SK39, respectively. A functional analysis of the DEGs revealed that five pathways—i.e., photosynthesis, plant hormone signal transduction, MAPK signaling pathway, phenylpropanoid biosynthesis, and biosynthesis of secondary metabolites—and transcription factor families play crucial roles in disease resistance. The results from the present study enabled the identification of the JA and SA signaling pathways, which are potentially involved in the response to southern leaf blight in maize. Our findings also highlight the significance of ZIM transcription factors and pathogenesis-related (PR) genes during pathogen infection. This study preliminarily explored the molecular mechanisms of the interaction between sweet corn and C. heterostrophus and provides a reference for identifying southern leaf blight resistance genes in the future. MDPI 2022-09-06 /pmc/articles/PMC9499663/ /pubmed/36142144 http://dx.doi.org/10.3390/ijms231810236 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiong, Caiyun
Mo, Haiwei
Fan, Jingsheng
Ren, Wenchuang
Pei, Hu
Zhang, Yahui
Ma, Ziwei
Wang, Wenyi
Huang, Jun
Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title_full Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title_fullStr Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title_full_unstemmed Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title_short Physiological and Molecular Characteristics of Southern Leaf Blight Resistance in Sweet Corn Inbred Lines
title_sort physiological and molecular characteristics of southern leaf blight resistance in sweet corn inbred lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499663/
https://www.ncbi.nlm.nih.gov/pubmed/36142144
http://dx.doi.org/10.3390/ijms231810236
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