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Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants

Lipid transfer proteins (LTPs) are known to be involved in suberin deposition in the Casparian bands of pea roots, thereby reinforcing apoplast barriers. Moreover, the Pseudomonas mandelii IB-Ki14 strain accelerated formation of the Casparian bands in wheat plants, although involvement of LTPs in th...

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Autores principales: Martynenko, Elena, Arkhipova, Tatiana, Akhiyarova, Guzel, Sharipova, Guzel, Galin, Ilshat, Seldimirova, Oksana, Ivanov, Ruslan, Nuzhnaya, Tatiana, Finkina, Ekaterina, Ovchinnikova, Tatiana, Kudoyarova, Guzel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959925/
https://www.ncbi.nlm.nih.gov/pubmed/36837711
http://dx.doi.org/10.3390/membranes13020208
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author Martynenko, Elena
Arkhipova, Tatiana
Akhiyarova, Guzel
Sharipova, Guzel
Galin, Ilshat
Seldimirova, Oksana
Ivanov, Ruslan
Nuzhnaya, Tatiana
Finkina, Ekaterina
Ovchinnikova, Tatiana
Kudoyarova, Guzel
author_facet Martynenko, Elena
Arkhipova, Tatiana
Akhiyarova, Guzel
Sharipova, Guzel
Galin, Ilshat
Seldimirova, Oksana
Ivanov, Ruslan
Nuzhnaya, Tatiana
Finkina, Ekaterina
Ovchinnikova, Tatiana
Kudoyarova, Guzel
author_sort Martynenko, Elena
collection PubMed
description Lipid transfer proteins (LTPs) are known to be involved in suberin deposition in the Casparian bands of pea roots, thereby reinforcing apoplast barriers. Moreover, the Pseudomonas mandelii IB-Ki14 strain accelerated formation of the Casparian bands in wheat plants, although involvement of LTPs in the process was not studied. Here, we investigated the effects of P. mandelii IB-Ki14 on LTPs, formation of the Casparian bands, hydraulic conductance and activity of aquaporins (AQPs) in pea plants. RT PCR showed a 1.6-1.9-fold up-regulation of the PsLTP-coding genes and an increase in the abundance of LTP proteins in the phloem of pea roots induced by the treatment with P. mandelii IB-Ki14. The treatment was accompanied with increased deposition of suberin in the Casparian bands. Hydraulic conductance did not decrease in association with the bacterial treatment despite strengthening of the apoplast barriers. At the same time, the Fenton reagent, serving as an AQPs inhibitor, decreased hydraulic conductance to a greater extent in treated plants relative to the control group, indicating an increase in the AQP activity by the bacteria. We hypothesize that P. mandelii IB-Ki14 stimulates deposition of suberin, in the biosynthesis of which LTPs are involved, and increases aquaporin activity, which in turn prevents a decrease in hydraulic conductance due to formation of the apoplast barriers in pea roots.
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spelling pubmed-99599252023-02-26 Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants Martynenko, Elena Arkhipova, Tatiana Akhiyarova, Guzel Sharipova, Guzel Galin, Ilshat Seldimirova, Oksana Ivanov, Ruslan Nuzhnaya, Tatiana Finkina, Ekaterina Ovchinnikova, Tatiana Kudoyarova, Guzel Membranes (Basel) Article Lipid transfer proteins (LTPs) are known to be involved in suberin deposition in the Casparian bands of pea roots, thereby reinforcing apoplast barriers. Moreover, the Pseudomonas mandelii IB-Ki14 strain accelerated formation of the Casparian bands in wheat plants, although involvement of LTPs in the process was not studied. Here, we investigated the effects of P. mandelii IB-Ki14 on LTPs, formation of the Casparian bands, hydraulic conductance and activity of aquaporins (AQPs) in pea plants. RT PCR showed a 1.6-1.9-fold up-regulation of the PsLTP-coding genes and an increase in the abundance of LTP proteins in the phloem of pea roots induced by the treatment with P. mandelii IB-Ki14. The treatment was accompanied with increased deposition of suberin in the Casparian bands. Hydraulic conductance did not decrease in association with the bacterial treatment despite strengthening of the apoplast barriers. At the same time, the Fenton reagent, serving as an AQPs inhibitor, decreased hydraulic conductance to a greater extent in treated plants relative to the control group, indicating an increase in the AQP activity by the bacteria. We hypothesize that P. mandelii IB-Ki14 stimulates deposition of suberin, in the biosynthesis of which LTPs are involved, and increases aquaporin activity, which in turn prevents a decrease in hydraulic conductance due to formation of the apoplast barriers in pea roots. MDPI 2023-02-08 /pmc/articles/PMC9959925/ /pubmed/36837711 http://dx.doi.org/10.3390/membranes13020208 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
Martynenko, Elena
Arkhipova, Tatiana
Akhiyarova, Guzel
Sharipova, Guzel
Galin, Ilshat
Seldimirova, Oksana
Ivanov, Ruslan
Nuzhnaya, Tatiana
Finkina, Ekaterina
Ovchinnikova, Tatiana
Kudoyarova, Guzel
Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title_full Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title_fullStr Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title_full_unstemmed Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title_short Effects of a Pseudomonas Strain on the Lipid Transfer Proteins, Appoplast Barriers and Activity of Aquaporins Associated with Hydraulic Conductance of Pea Plants
title_sort effects of a pseudomonas strain on the lipid transfer proteins, appoplast barriers and activity of aquaporins associated with hydraulic conductance of pea plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959925/
https://www.ncbi.nlm.nih.gov/pubmed/36837711
http://dx.doi.org/10.3390/membranes13020208
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