Cargando…

Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)

Grapevines worldwide are grafted onto Vitis spp. rootstocks in order to improve their tolerance to biotic and abiotic stresses. Thus, the response of vines to drought is the result of the interaction between the scion variety and the rootstock genotype. In this work, the responses of genotypes to dr...

Descripción completa

Detalles Bibliográficos
Autores principales: Bianchi, Davide, Ricciardi, Valentina, Pozzoli, Carola, Grossi, Daniele, Caramanico, Leila, Pindo, Massimo, Stefani, Erika, Cestaro, Alessandro, Brancadoro, Lucio, De Lorenzis, Gabriella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005690/
https://www.ncbi.nlm.nih.gov/pubmed/36903939
http://dx.doi.org/10.3390/plants12051080
_version_ 1784905143282565120
author Bianchi, Davide
Ricciardi, Valentina
Pozzoli, Carola
Grossi, Daniele
Caramanico, Leila
Pindo, Massimo
Stefani, Erika
Cestaro, Alessandro
Brancadoro, Lucio
De Lorenzis, Gabriella
author_facet Bianchi, Davide
Ricciardi, Valentina
Pozzoli, Carola
Grossi, Daniele
Caramanico, Leila
Pindo, Massimo
Stefani, Erika
Cestaro, Alessandro
Brancadoro, Lucio
De Lorenzis, Gabriella
author_sort Bianchi, Davide
collection PubMed
description Grapevines worldwide are grafted onto Vitis spp. rootstocks in order to improve their tolerance to biotic and abiotic stresses. Thus, the response of vines to drought is the result of the interaction between the scion variety and the rootstock genotype. In this work, the responses of genotypes to drought were evaluated on 1103P and 101-14MGt plants, own-rooted and grafted with Cabernet Sauvignon, in three different water deficit conditions (80, 50, and 20% soil water content, SWC). Gas exchange parameters, stem water potential, root and leaf ABA content, and root and leaf transcriptomic response were investigated. Under well-watered conditions, gas exchange and stem water potential were mainly affected by the grafting condition, whereas under sever water deficit they were affected by the rootstock genotype. Under severe stress conditions (20% SWC), 1103P showed an “avoidance” behavior. It reduced stomatal conductance, inhibited photosynthesis, increased ABA content in the roots, and closed the stomata. The 101-14MGt maintained a high photosynthetic rate, limiting the reduction of soil water potential. This behavior results in a “tolerance” strategy. An analysis of the transcriptome showed that most of the differentially expressed genes were detected at 20% SWC, and more significantly in roots than in leaves. A core set of genes has been highlighted on the roots as being related to the root response to drought that are not affected by genotype nor grafting. Genes specifically regulated by grafting and genes specifically regulated by genotype under drought conditions have been identified as well. The 1103P, more than the 101-14MGt, regulated a high number of genes in both own-rooted and grafted conditions. This different regulation revealed that 1103P rootstock readily perceived the water scarcity and rapidly faced the stress, in agreement with its avoidance strategy.
format Online
Article
Text
id pubmed-10005690
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100056902023-03-11 Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt) Bianchi, Davide Ricciardi, Valentina Pozzoli, Carola Grossi, Daniele Caramanico, Leila Pindo, Massimo Stefani, Erika Cestaro, Alessandro Brancadoro, Lucio De Lorenzis, Gabriella Plants (Basel) Article Grapevines worldwide are grafted onto Vitis spp. rootstocks in order to improve their tolerance to biotic and abiotic stresses. Thus, the response of vines to drought is the result of the interaction between the scion variety and the rootstock genotype. In this work, the responses of genotypes to drought were evaluated on 1103P and 101-14MGt plants, own-rooted and grafted with Cabernet Sauvignon, in three different water deficit conditions (80, 50, and 20% soil water content, SWC). Gas exchange parameters, stem water potential, root and leaf ABA content, and root and leaf transcriptomic response were investigated. Under well-watered conditions, gas exchange and stem water potential were mainly affected by the grafting condition, whereas under sever water deficit they were affected by the rootstock genotype. Under severe stress conditions (20% SWC), 1103P showed an “avoidance” behavior. It reduced stomatal conductance, inhibited photosynthesis, increased ABA content in the roots, and closed the stomata. The 101-14MGt maintained a high photosynthetic rate, limiting the reduction of soil water potential. This behavior results in a “tolerance” strategy. An analysis of the transcriptome showed that most of the differentially expressed genes were detected at 20% SWC, and more significantly in roots than in leaves. A core set of genes has been highlighted on the roots as being related to the root response to drought that are not affected by genotype nor grafting. Genes specifically regulated by grafting and genes specifically regulated by genotype under drought conditions have been identified as well. The 1103P, more than the 101-14MGt, regulated a high number of genes in both own-rooted and grafted conditions. This different regulation revealed that 1103P rootstock readily perceived the water scarcity and rapidly faced the stress, in agreement with its avoidance strategy. MDPI 2023-02-28 /pmc/articles/PMC10005690/ /pubmed/36903939 http://dx.doi.org/10.3390/plants12051080 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
Bianchi, Davide
Ricciardi, Valentina
Pozzoli, Carola
Grossi, Daniele
Caramanico, Leila
Pindo, Massimo
Stefani, Erika
Cestaro, Alessandro
Brancadoro, Lucio
De Lorenzis, Gabriella
Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title_full Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title_fullStr Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title_full_unstemmed Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title_short Physiological and Transcriptomic Evaluation of Drought Effect on Own-Rooted and Grafted Grapevine Rootstock (1103P and 101-14MGt)
title_sort physiological and transcriptomic evaluation of drought effect on own-rooted and grafted grapevine rootstock (1103p and 101-14mgt)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10005690/
https://www.ncbi.nlm.nih.gov/pubmed/36903939
http://dx.doi.org/10.3390/plants12051080
work_keys_str_mv AT bianchidavide physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT ricciardivalentina physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT pozzolicarola physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT grossidaniele physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT caramanicoleila physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT pindomassimo physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT stefanierika physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT cestaroalessandro physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT brancadorolucio physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt
AT delorenzisgabriella physiologicalandtranscriptomicevaluationofdroughteffectonownrootedandgraftedgrapevinerootstock1103pand10114mgt