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Brief Report

Identification and Potential Participation of Lipases in Autophagic Body Degradation in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds

by
Karolina Wleklik
1,
Szymon Stefaniak
1,
Katarzyna Nuc
2,
Małgorzata Pietrowska-Borek
2 and
Sławomir Borek
1,*
1
Department of Plant Physiology, Faculty of Biology, Adam Mickiewicz University Poznań, Uniwersytetu Poznańskiego 6, 61-614 Poznań, Poland
2
Department of Biochemistry and Biotechnology, Faculty of Agronomy, Horticulture and Bioengineering, Poznań University of Life Sciences, Dojazd 11, 60-632 Poznań, Poland
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2024, 25(1), 90; https://doi.org/10.3390/ijms25010090
Submission received: 6 November 2023 / Revised: 28 November 2023 / Accepted: 13 December 2023 / Published: 20 December 2023
(This article belongs to the Special Issue New Insight into Signaling and Autophagy in Plants 3.0)

Abstract

Autophagy is a fundamental process for plants that plays a crucial role in maintaining cellular homeostasis and promoting survival in response to various environmental stresses. One of the lesser-known stages of plant autophagy is the degradation of autophagic bodies in vacuoles. To this day, no plant vacuolar enzyme has been confirmed to be involved in this process. On the other hand, several enzymes have been described in yeast (Saccharomyces cerevisiae), including Atg15, that possess lipolytic activity. In this preliminary study, which was conducted on isolated embryonic axes of the white lupin (Lupinus albus L.) and Andean lupin (Lupinus mutabilis Sweet), the potential involvement of plant vacuolar lipases in the degradation of autophagic bodies was investigated. We identified in transcriptomes (using next-generation sequencing (NGS)) of white and Andean lupin embryonic axes 38 lipases with predicted vacuolar localization, and for three of them, similarities in amino acid sequences with yeast Atg15 were found. A comparative transcriptome analysis of lupin isolated embryonic axes cultured in vitro under different sucrose and asparagine nutrition, evaluating the relations in the levels of the transcripts of lipase genes, was also carried out. A clear decrease in lipase gene transcript levels caused by asparagine, a key amino acid in lupin seed metabolism which retards the degradation of autophagic bodies during sugar-starvation-induced autophagy in lupin embryonic axes, was detected. Although the question of whether lipases are involved in the degradation of autophagic bodies during plant autophagy is still open, our findings strongly support such a hypothesis.
Keywords: asparagine; Atg15; autophagy; carbon starvation; lupin; seed embryo; sucrose; transcriptomics; vacuole; yeast asparagine; Atg15; autophagy; carbon starvation; lupin; seed embryo; sucrose; transcriptomics; vacuole; yeast

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MDPI and ACS Style

Wleklik, K.; Stefaniak, S.; Nuc, K.; Pietrowska-Borek, M.; Borek, S. Identification and Potential Participation of Lipases in Autophagic Body Degradation in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds. Int. J. Mol. Sci. 2024, 25, 90. https://doi.org/10.3390/ijms25010090

AMA Style

Wleklik K, Stefaniak S, Nuc K, Pietrowska-Borek M, Borek S. Identification and Potential Participation of Lipases in Autophagic Body Degradation in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds. International Journal of Molecular Sciences. 2024; 25(1):90. https://doi.org/10.3390/ijms25010090

Chicago/Turabian Style

Wleklik, Karolina, Szymon Stefaniak, Katarzyna Nuc, Małgorzata Pietrowska-Borek, and Sławomir Borek. 2024. "Identification and Potential Participation of Lipases in Autophagic Body Degradation in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds" International Journal of Molecular Sciences 25, no. 1: 90. https://doi.org/10.3390/ijms25010090

APA Style

Wleklik, K., Stefaniak, S., Nuc, K., Pietrowska-Borek, M., & Borek, S. (2024). Identification and Potential Participation of Lipases in Autophagic Body Degradation in Embryonic Axes of Lupin (Lupinus spp.) Germinating Seeds. International Journal of Molecular Sciences, 25(1), 90. https://doi.org/10.3390/ijms25010090

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