Cargando…

Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape

Cold stress is among the most important environmental factors reducing the yield of crops. The present study aimed to investigate the impact of increasing cold stress conditions on winter oilseed rape polyamines, proline, and ethylene metabolism in acclimated and non-acclimated winter oilseed rape....

Descripción completa

Detalles Bibliográficos
Autores principales: Jankovska-Bortkevič, Elžbieta, Jurkonienė, Sigita, Gavelienė, Virgilija, Šveikauskas, Vaidevutis, Mockevičiūtė, Rima, Vaseva, Irina, Todorova, Dessislava, Žižytė-Eidetienė, Marija, Šneideris, Donatas, Prakas, Petras
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10379363/
https://www.ncbi.nlm.nih.gov/pubmed/37511158
http://dx.doi.org/10.3390/ijms241411402
_version_ 1785079998343806976
author Jankovska-Bortkevič, Elžbieta
Jurkonienė, Sigita
Gavelienė, Virgilija
Šveikauskas, Vaidevutis
Mockevičiūtė, Rima
Vaseva, Irina
Todorova, Dessislava
Žižytė-Eidetienė, Marija
Šneideris, Donatas
Prakas, Petras
author_facet Jankovska-Bortkevič, Elžbieta
Jurkonienė, Sigita
Gavelienė, Virgilija
Šveikauskas, Vaidevutis
Mockevičiūtė, Rima
Vaseva, Irina
Todorova, Dessislava
Žižytė-Eidetienė, Marija
Šneideris, Donatas
Prakas, Petras
author_sort Jankovska-Bortkevič, Elžbieta
collection PubMed
description Cold stress is among the most important environmental factors reducing the yield of crops. The present study aimed to investigate the impact of increasing cold stress conditions on winter oilseed rape polyamines, proline, and ethylene metabolism in acclimated and non-acclimated winter oilseed rape. This study was carried out under controlled conditions in the laboratory. The winter oilseed rape hybrid ‘Visby’ was used in the experiment. Acclimated and non-acclimated plants were subjected to a two-day-long increasing cold (from −1 °C to −3 °C) treatment. HPTLC, RT-qPCR, spectral analysis, and gas chromatography methods were used to analyse the levels of polyamines, gene expression, proline, and ethylene, respectively. This study showed a decrease in putrescine, spermidine, and spermine content during cold acclimation and a decrease in putrescine and spermidine levels at sub-zero temperatures. There were intensive changes in ADC2 gene expression, proline, and ethylene levels in non-acclimated plants: a substantial increase after exposure to −1 °C temperature and a sharp decrease after exposure to −3 °C temperature. The changes in these parameters were lower or absent in acclimated plants. The phenomena observed in this study add new insights to the knowledge about the plant stress response and suggest questions to be answered in the future.
format Online
Article
Text
id pubmed-10379363
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103793632023-07-29 Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape Jankovska-Bortkevič, Elžbieta Jurkonienė, Sigita Gavelienė, Virgilija Šveikauskas, Vaidevutis Mockevičiūtė, Rima Vaseva, Irina Todorova, Dessislava Žižytė-Eidetienė, Marija Šneideris, Donatas Prakas, Petras Int J Mol Sci Article Cold stress is among the most important environmental factors reducing the yield of crops. The present study aimed to investigate the impact of increasing cold stress conditions on winter oilseed rape polyamines, proline, and ethylene metabolism in acclimated and non-acclimated winter oilseed rape. This study was carried out under controlled conditions in the laboratory. The winter oilseed rape hybrid ‘Visby’ was used in the experiment. Acclimated and non-acclimated plants were subjected to a two-day-long increasing cold (from −1 °C to −3 °C) treatment. HPTLC, RT-qPCR, spectral analysis, and gas chromatography methods were used to analyse the levels of polyamines, gene expression, proline, and ethylene, respectively. This study showed a decrease in putrescine, spermidine, and spermine content during cold acclimation and a decrease in putrescine and spermidine levels at sub-zero temperatures. There were intensive changes in ADC2 gene expression, proline, and ethylene levels in non-acclimated plants: a substantial increase after exposure to −1 °C temperature and a sharp decrease after exposure to −3 °C temperature. The changes in these parameters were lower or absent in acclimated plants. The phenomena observed in this study add new insights to the knowledge about the plant stress response and suggest questions to be answered in the future. MDPI 2023-07-13 /pmc/articles/PMC10379363/ /pubmed/37511158 http://dx.doi.org/10.3390/ijms241411402 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
Jankovska-Bortkevič, Elžbieta
Jurkonienė, Sigita
Gavelienė, Virgilija
Šveikauskas, Vaidevutis
Mockevičiūtė, Rima
Vaseva, Irina
Todorova, Dessislava
Žižytė-Eidetienė, Marija
Šneideris, Donatas
Prakas, Petras
Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title_full Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title_fullStr Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title_full_unstemmed Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title_short Dynamics of Polyamines, Proline, and Ethylene Metabolism under Increasing Cold in Winter Oilseed Rape
title_sort dynamics of polyamines, proline, and ethylene metabolism under increasing cold in winter oilseed rape
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10379363/
https://www.ncbi.nlm.nih.gov/pubmed/37511158
http://dx.doi.org/10.3390/ijms241411402
work_keys_str_mv AT jankovskabortkevicelzbieta dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT jurkonienesigita dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT gavelienevirgilija dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT sveikauskasvaidevutis dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT mockeviciuterima dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT vasevairina dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT todorovadessislava dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT zizyteeidetienemarija dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT sneiderisdonatas dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape
AT prakaspetras dynamicsofpolyaminesprolineandethylenemetabolismunderincreasingcoldinwinteroilseedrape