Cargando…

Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings

Fusarium verticillioides is one of the most relevant fungal species in maize responsible for ear, stalk and seedling rot, as well as the fumonisin contamination of kernels. Plant lipoxygenases (LOX) synthesize oxylipins that play a crucial role in the regulation of defense mechanisms against pathoge...

Descripción completa

Detalles Bibliográficos
Autores principales: Lanubile, Alessandra, Borrelli, Virginia Maria Grazia, Soccio, Mario, Giorni, Paola, Stagnati, Lorenzo, Busconi, Matteo, Marocco, Adriano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996282/
https://www.ncbi.nlm.nih.gov/pubmed/33668883
http://dx.doi.org/10.3390/genes12030335
_version_ 1783670082708176896
author Lanubile, Alessandra
Borrelli, Virginia Maria Grazia
Soccio, Mario
Giorni, Paola
Stagnati, Lorenzo
Busconi, Matteo
Marocco, Adriano
author_facet Lanubile, Alessandra
Borrelli, Virginia Maria Grazia
Soccio, Mario
Giorni, Paola
Stagnati, Lorenzo
Busconi, Matteo
Marocco, Adriano
author_sort Lanubile, Alessandra
collection PubMed
description Fusarium verticillioides is one of the most relevant fungal species in maize responsible for ear, stalk and seedling rot, as well as the fumonisin contamination of kernels. Plant lipoxygenases (LOX) synthesize oxylipins that play a crucial role in the regulation of defense mechanisms against pathogens and influence the outcome of pathogenesis. To better uncover the role of these signaling molecules in maize resistance against F. verticillioides, the functional characterization of the 9-LOX gene, ZmLOX4, was carried out in this study by employing mutants carrying Mu insertions in this gene (named as UFMulox4). In this regard, the genotyping of five UFMulox4 identified the mutant UFMu10924 as the only one having an insertion in the coding region of the gene. The impact of ZmLOX4 mutagenesis on kernel defense against F. verticillioides and fumonisin accumulation were investigated, resulting in an increased fungal susceptibility compared to the inbred lines W22 and Tzi18. Moreover, the expression of most of the genes involved in the LOX, jasmonic acid (JA) and green leaf volatiles (GLV) pathways, as well as LOX enzymatic activity, decreased or were unaffected by fungal inoculation in the mutant UFMu10924. These results confirm the strategic role of ZmLOX4 in controlling defense against F. verticillioides and its influence on the expression of several LOX, JA and GLV genes.
format Online
Article
Text
id pubmed-7996282
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-79962822021-03-27 Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings Lanubile, Alessandra Borrelli, Virginia Maria Grazia Soccio, Mario Giorni, Paola Stagnati, Lorenzo Busconi, Matteo Marocco, Adriano Genes (Basel) Article Fusarium verticillioides is one of the most relevant fungal species in maize responsible for ear, stalk and seedling rot, as well as the fumonisin contamination of kernels. Plant lipoxygenases (LOX) synthesize oxylipins that play a crucial role in the regulation of defense mechanisms against pathogens and influence the outcome of pathogenesis. To better uncover the role of these signaling molecules in maize resistance against F. verticillioides, the functional characterization of the 9-LOX gene, ZmLOX4, was carried out in this study by employing mutants carrying Mu insertions in this gene (named as UFMulox4). In this regard, the genotyping of five UFMulox4 identified the mutant UFMu10924 as the only one having an insertion in the coding region of the gene. The impact of ZmLOX4 mutagenesis on kernel defense against F. verticillioides and fumonisin accumulation were investigated, resulting in an increased fungal susceptibility compared to the inbred lines W22 and Tzi18. Moreover, the expression of most of the genes involved in the LOX, jasmonic acid (JA) and green leaf volatiles (GLV) pathways, as well as LOX enzymatic activity, decreased or were unaffected by fungal inoculation in the mutant UFMu10924. These results confirm the strategic role of ZmLOX4 in controlling defense against F. verticillioides and its influence on the expression of several LOX, JA and GLV genes. MDPI 2021-02-25 /pmc/articles/PMC7996282/ /pubmed/33668883 http://dx.doi.org/10.3390/genes12030335 Text en © 2021 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Lanubile, Alessandra
Borrelli, Virginia Maria Grazia
Soccio, Mario
Giorni, Paola
Stagnati, Lorenzo
Busconi, Matteo
Marocco, Adriano
Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title_full Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title_fullStr Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title_full_unstemmed Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title_short Loss of ZmLIPOXYGENASE4 Decreases Fusarium verticillioides Resistance in Maize Seedlings
title_sort loss of zmlipoxygenase4 decreases fusarium verticillioides resistance in maize seedlings
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7996282/
https://www.ncbi.nlm.nih.gov/pubmed/33668883
http://dx.doi.org/10.3390/genes12030335
work_keys_str_mv AT lanubilealessandra lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT borrellivirginiamariagrazia lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT socciomario lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT giornipaola lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT stagnatilorenzo lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT busconimatteo lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings
AT maroccoadriano lossofzmlipoxygenase4decreasesfusariumverticillioidesresistanceinmaizeseedlings