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Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds

Under nutrient deficiency or starvation conditions, the mobilization of storage compounds during seed germination is enhanced to primarily supply respiratory substrates and hence increase the potential of cell survival. Nevertheless, we found that, under sugar starvation conditions in isolated embry...

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Autores principales: Borek, Sławomir, Stefaniak, Szymon, Nuc, Katarzyna, Wojtyla, Łukasz, Ratajczak, Ewelina, Sitkiewicz, Ewa, Malinowska, Agata, Świderska, Bianka, Wleklik, Karolina, Pietrowska-Borek, Małgorzata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380618/
https://www.ncbi.nlm.nih.gov/pubmed/37511532
http://dx.doi.org/10.3390/ijms241411773
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author Borek, Sławomir
Stefaniak, Szymon
Nuc, Katarzyna
Wojtyla, Łukasz
Ratajczak, Ewelina
Sitkiewicz, Ewa
Malinowska, Agata
Świderska, Bianka
Wleklik, Karolina
Pietrowska-Borek, Małgorzata
author_facet Borek, Sławomir
Stefaniak, Szymon
Nuc, Katarzyna
Wojtyla, Łukasz
Ratajczak, Ewelina
Sitkiewicz, Ewa
Malinowska, Agata
Świderska, Bianka
Wleklik, Karolina
Pietrowska-Borek, Małgorzata
author_sort Borek, Sławomir
collection PubMed
description Under nutrient deficiency or starvation conditions, the mobilization of storage compounds during seed germination is enhanced to primarily supply respiratory substrates and hence increase the potential of cell survival. Nevertheless, we found that, under sugar starvation conditions in isolated embryonic axes of white lupin (Lupinus albus L.) and Andean lupin (Lupinus mutabilis Sweet) cultured in vitro for 96 h, the disruption of lipid breakdown occurs, as was reflected in the higher lipid content in the sugar-starved (-S) than in the sucrose-fed (+S) axes. We postulate that pexophagy (autophagic degradation of the peroxisome—a key organelle in lipid catabolism) is one of the reasons for the disruption in lipid breakdown under starvation conditions. Evidence of pexophagy can be: (i) the higher transcript level of genes encoding proteins of pexophagy machinery, and (ii) the lower content of the peroxisome marker Pex14p and its increase caused by an autophagy inhibitor (concanamycin A) in -S axes in comparison to the +S axes. Additionally, based on ultrastructure observation, we documented that, under sugar starvation conditions lipophagy (autophagic degradation of whole lipid droplets) may also occur but this type of selective autophagy seems to be restricted under starvation conditions. Our results also show that autophagy occurs at the very early stages of plant growth and development, including the cells of embryonic seed organs, and allows cell survival under starvation conditions.
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spelling pubmed-103806182023-07-29 Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds Borek, Sławomir Stefaniak, Szymon Nuc, Katarzyna Wojtyla, Łukasz Ratajczak, Ewelina Sitkiewicz, Ewa Malinowska, Agata Świderska, Bianka Wleklik, Karolina Pietrowska-Borek, Małgorzata Int J Mol Sci Article Under nutrient deficiency or starvation conditions, the mobilization of storage compounds during seed germination is enhanced to primarily supply respiratory substrates and hence increase the potential of cell survival. Nevertheless, we found that, under sugar starvation conditions in isolated embryonic axes of white lupin (Lupinus albus L.) and Andean lupin (Lupinus mutabilis Sweet) cultured in vitro for 96 h, the disruption of lipid breakdown occurs, as was reflected in the higher lipid content in the sugar-starved (-S) than in the sucrose-fed (+S) axes. We postulate that pexophagy (autophagic degradation of the peroxisome—a key organelle in lipid catabolism) is one of the reasons for the disruption in lipid breakdown under starvation conditions. Evidence of pexophagy can be: (i) the higher transcript level of genes encoding proteins of pexophagy machinery, and (ii) the lower content of the peroxisome marker Pex14p and its increase caused by an autophagy inhibitor (concanamycin A) in -S axes in comparison to the +S axes. Additionally, based on ultrastructure observation, we documented that, under sugar starvation conditions lipophagy (autophagic degradation of whole lipid droplets) may also occur but this type of selective autophagy seems to be restricted under starvation conditions. Our results also show that autophagy occurs at the very early stages of plant growth and development, including the cells of embryonic seed organs, and allows cell survival under starvation conditions. MDPI 2023-07-21 /pmc/articles/PMC10380618/ /pubmed/37511532 http://dx.doi.org/10.3390/ijms241411773 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
Borek, Sławomir
Stefaniak, Szymon
Nuc, Katarzyna
Wojtyla, Łukasz
Ratajczak, Ewelina
Sitkiewicz, Ewa
Malinowska, Agata
Świderska, Bianka
Wleklik, Karolina
Pietrowska-Borek, Małgorzata
Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title_full Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title_fullStr Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title_full_unstemmed Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title_short Sugar Starvation Disrupts Lipid Breakdown by Inducing Autophagy in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds
title_sort sugar starvation disrupts lipid breakdown by inducing autophagy in embryonic axes of lupin (lupinus spp.) germinating seeds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380618/
https://www.ncbi.nlm.nih.gov/pubmed/37511532
http://dx.doi.org/10.3390/ijms241411773
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