Cargando…

The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8

Loquat fruit accumulates lignin in its flesh when undergoing chilling injury during postharvest storage, making it a suitable model for the study of flesh lignification. Transcriptional regulation of lignin biosynthesis is principally controlled by the NAC-MYB transcriptional cascade in model plants...

Descripción completa

Detalles Bibliográficos
Autores principales: Ge, Hang, Shi, Yan-na, Zhang, Meng-xue, Li, Xian, Yin, Xue-ren, Chen, Kun-song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8058365/
https://www.ncbi.nlm.nih.gov/pubmed/33897744
http://dx.doi.org/10.3389/fpls.2021.652959
_version_ 1783680998580420608
author Ge, Hang
Shi, Yan-na
Zhang, Meng-xue
Li, Xian
Yin, Xue-ren
Chen, Kun-song
author_facet Ge, Hang
Shi, Yan-na
Zhang, Meng-xue
Li, Xian
Yin, Xue-ren
Chen, Kun-song
author_sort Ge, Hang
collection PubMed
description Loquat fruit accumulates lignin in its flesh when undergoing chilling injury during postharvest storage, making it a suitable model for the study of flesh lignification. Transcriptional regulation of lignin biosynthesis is principally controlled by the NAC-MYB transcriptional cascade in model plants. Previous research has demonstrated that EjMYB8 activates lignin biosynthesis through direct interaction with the promoter of Ej4CL1. However, the classic NAC-MYB gene regulation network has not been established. Here, the MADS-box gene EjAGL65 was discovered by screening a cDNA library using the EjMYB8 promoter as bait in yeast. A phylogenetic analysis and structural comparisons revealed that EjAGL65 belongs to the Mδ subgroup of the MADS-box family, whose members have not been reported as being involved in the regulation of lignin deposition. EjAGL65 transcription was downregulated at 0°C compared to 5°C, indicating a negative correlation with the change of lignin content. A dual-luciferase assay indicated that EjAGL65 is capable of inhibiting the promoter activity of EjMYB8 in vivo. These results showed that the Mδ MADS-box gene EjAGL65 transcriptionally regulates EjMYB8 during postharvest chilling induced flesh lignification, which differs from the classical regulation model of lignin biosynthesis that has been illustrated for developmental lignin accumulation.
format Online
Article
Text
id pubmed-8058365
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-80583652021-04-22 The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8 Ge, Hang Shi, Yan-na Zhang, Meng-xue Li, Xian Yin, Xue-ren Chen, Kun-song Front Plant Sci Plant Science Loquat fruit accumulates lignin in its flesh when undergoing chilling injury during postharvest storage, making it a suitable model for the study of flesh lignification. Transcriptional regulation of lignin biosynthesis is principally controlled by the NAC-MYB transcriptional cascade in model plants. Previous research has demonstrated that EjMYB8 activates lignin biosynthesis through direct interaction with the promoter of Ej4CL1. However, the classic NAC-MYB gene regulation network has not been established. Here, the MADS-box gene EjAGL65 was discovered by screening a cDNA library using the EjMYB8 promoter as bait in yeast. A phylogenetic analysis and structural comparisons revealed that EjAGL65 belongs to the Mδ subgroup of the MADS-box family, whose members have not been reported as being involved in the regulation of lignin deposition. EjAGL65 transcription was downregulated at 0°C compared to 5°C, indicating a negative correlation with the change of lignin content. A dual-luciferase assay indicated that EjAGL65 is capable of inhibiting the promoter activity of EjMYB8 in vivo. These results showed that the Mδ MADS-box gene EjAGL65 transcriptionally regulates EjMYB8 during postharvest chilling induced flesh lignification, which differs from the classical regulation model of lignin biosynthesis that has been illustrated for developmental lignin accumulation. Frontiers Media S.A. 2021-04-07 /pmc/articles/PMC8058365/ /pubmed/33897744 http://dx.doi.org/10.3389/fpls.2021.652959 Text en Copyright © 2021 Ge, Shi, Zhang, Li, Yin and Chen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Ge, Hang
Shi, Yan-na
Zhang, Meng-xue
Li, Xian
Yin, Xue-ren
Chen, Kun-song
The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title_full The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title_fullStr The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title_full_unstemmed The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title_short The MADS-Box Transcription Factor EjAGL65 Controls Loquat Flesh Lignification via Direct Transcriptional Inhibition of EjMYB8
title_sort mads-box transcription factor ejagl65 controls loquat flesh lignification via direct transcriptional inhibition of ejmyb8
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8058365/
https://www.ncbi.nlm.nih.gov/pubmed/33897744
http://dx.doi.org/10.3389/fpls.2021.652959
work_keys_str_mv AT gehang themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT shiyanna themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT zhangmengxue themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT lixian themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT yinxueren themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT chenkunsong themadsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT gehang madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT shiyanna madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT zhangmengxue madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT lixian madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT yinxueren madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8
AT chenkunsong madsboxtranscriptionfactorejagl65controlsloquatfleshlignificationviadirecttranscriptionalinhibitionofejmyb8