Cargando…

A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance

Class 2 KNOX homeobox transcription factors (KNOX2) play a role in promoting cell differentiation in several plant developmental processes. In Arabidopsis, they antagonize the meristematic KNOX1 function during leaf development through the modulation of phytohormones. In Medicago truncatula, three K...

Descripción completa

Detalles Bibliográficos
Autores principales: Iannelli, Maria Adelaide, Nicolodi, Chiara, Coraggio, Immacolata, Fabriani, Marco, Baldoni, Elena, Frugis, Giovanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454132/
https://www.ncbi.nlm.nih.gov/pubmed/37628847
http://dx.doi.org/10.3390/ijms241612668
_version_ 1785096114083463168
author Iannelli, Maria Adelaide
Nicolodi, Chiara
Coraggio, Immacolata
Fabriani, Marco
Baldoni, Elena
Frugis, Giovanna
author_facet Iannelli, Maria Adelaide
Nicolodi, Chiara
Coraggio, Immacolata
Fabriani, Marco
Baldoni, Elena
Frugis, Giovanna
author_sort Iannelli, Maria Adelaide
collection PubMed
description Class 2 KNOX homeobox transcription factors (KNOX2) play a role in promoting cell differentiation in several plant developmental processes. In Arabidopsis, they antagonize the meristematic KNOX1 function during leaf development through the modulation of phytohormones. In Medicago truncatula, three KNOX2 genes belonging to the KNAT3/4/5-like subclass (Mt KNAT3/4/5-like or MtKNOX3-like) redundantly works upstream of a cytokinin-signaling module to control the symbiotic root nodule formation. Their possible role in the response to abiotic stress is as-of-yet unknown. We produced transgenic M. truncatula lines, in which the expression of four MtKNOX3-like genes was knocked down by RNA interference. When tested for response to water withdrawal in the soil, RNAi lines displayed a lower tolerance to drought conditions compared to the control lines, measured as increased leaf water loss, accelerated leaf wilting time, and faster chlorophyll loss. Reanalysis of a transcriptomic M. truncatula drought stress experiment via cluster analysis and gene co-expression networks pointed to a possible role of MtKNOX3-like transcription factors in repressing a proline dehydrogenase gene (MtPDH), specifically at 4 days after water withdrawal. Proline measurement and gene expression analysis of transgenic RNAi plants compared to the controls confirmed the role of KNOX3-like genes in inhibiting proline degradation through the regulation of the MtPDH gene.
format Online
Article
Text
id pubmed-10454132
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104541322023-08-26 A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance Iannelli, Maria Adelaide Nicolodi, Chiara Coraggio, Immacolata Fabriani, Marco Baldoni, Elena Frugis, Giovanna Int J Mol Sci Article Class 2 KNOX homeobox transcription factors (KNOX2) play a role in promoting cell differentiation in several plant developmental processes. In Arabidopsis, they antagonize the meristematic KNOX1 function during leaf development through the modulation of phytohormones. In Medicago truncatula, three KNOX2 genes belonging to the KNAT3/4/5-like subclass (Mt KNAT3/4/5-like or MtKNOX3-like) redundantly works upstream of a cytokinin-signaling module to control the symbiotic root nodule formation. Their possible role in the response to abiotic stress is as-of-yet unknown. We produced transgenic M. truncatula lines, in which the expression of four MtKNOX3-like genes was knocked down by RNA interference. When tested for response to water withdrawal in the soil, RNAi lines displayed a lower tolerance to drought conditions compared to the control lines, measured as increased leaf water loss, accelerated leaf wilting time, and faster chlorophyll loss. Reanalysis of a transcriptomic M. truncatula drought stress experiment via cluster analysis and gene co-expression networks pointed to a possible role of MtKNOX3-like transcription factors in repressing a proline dehydrogenase gene (MtPDH), specifically at 4 days after water withdrawal. Proline measurement and gene expression analysis of transgenic RNAi plants compared to the controls confirmed the role of KNOX3-like genes in inhibiting proline degradation through the regulation of the MtPDH gene. MDPI 2023-08-11 /pmc/articles/PMC10454132/ /pubmed/37628847 http://dx.doi.org/10.3390/ijms241612668 Text en © 2023 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
Iannelli, Maria Adelaide
Nicolodi, Chiara
Coraggio, Immacolata
Fabriani, Marco
Baldoni, Elena
Frugis, Giovanna
A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title_full A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title_fullStr A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title_full_unstemmed A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title_short A Novel Role of Medicago truncatula KNAT3/4/5-like Class 2 KNOX Transcription Factors in Drought Stress Tolerance
title_sort novel role of medicago truncatula knat3/4/5-like class 2 knox transcription factors in drought stress tolerance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10454132/
https://www.ncbi.nlm.nih.gov/pubmed/37628847
http://dx.doi.org/10.3390/ijms241612668
work_keys_str_mv AT iannellimariaadelaide anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT nicolodichiara anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT coraggioimmacolata anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT fabrianimarco anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT baldonielena anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT frugisgiovanna anovelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT iannellimariaadelaide novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT nicolodichiara novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT coraggioimmacolata novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT fabrianimarco novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT baldonielena novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance
AT frugisgiovanna novelroleofmedicagotruncatulaknat345likeclass2knoxtranscriptionfactorsindroughtstresstolerance