Cellular and Molecular Changes Associated with Onion Skin Formation Suggest Involvement of Programmed Cell Death
Ortal Galsurker1, Adi Doron-Faigenboim2, Paula Teper-Bamnolker3
1Department of Postharvest Science of Fresh Produce, The Volcani Center, Agricultural Research OrganizationRishon LeZion, Israel; The Robert H. Smith Institute of Field Crops and Vegetables, Robert H. Smith Faculty of Agriculture Food and Environment, The Hebrew University of JerusalemRehovot, Israel.
Abstract:
Skin formation of onion (Allium cepa L.) bulb involves scale desiccation accompanied by scale senescence, resulting in cell death and tissue browning. Understanding the mechanism of skin formation is essential to improving onion skin and bulb qualities. Although onion skin plays a crucial role in postharvest onion storage and shelf life, its formation is poorly understood. We investigated the mode of cell death in the outermost scales that are destined to form the onion skin. Surprisingly, fluorescein diacetate staining and scanning electron microscopy indicated that the outer scale desiccates from the inside out. This striking observation suggests that cell death in the outer scales, during skin formation, is an internal and organized process that does not derive only from air desiccation. DNA fragmentation, a known hallmark of programmed cell death (PCD), was revealed in the outer scales and gradually decreased toward the inner scales of the bulb. Transmission electron microscopy further revealed PCD-related structural alterations in the outer scales which were absent from the inner scales. De novo transcriptome assembly for three different scales: 1st (outer), 5th (intermediate) and 8th (inner) fleshy scales identified 2,542 differentially expressed genes among them. GO enrichment for cluster analysis revealed increasing metabolic processes in the outer senescent scale related to defense response, PCD processes, carbohydrate metabolism and flavonoid biosynthesis, whereas increased metabolism and developmental growth processes were identified in the inner scales. High expression levels of PCD-related genes were identified in the outer scale compared to the inner ones, highlighting the involvement of PCD in outer-skin development. These findings suggest that a program to form the dry protective skin exists and functions only in the outer scales of onion.
Insights
Onion skin formation involves programmed cell death (PCD) in outer scales, not just air desiccation. This organized internal process is crucial for developing the protective dry outer layer of onion bulbs.
Area of Science:
- Plant Biology
- Molecular Biology
- Postharvest Physiology
Background:
- Onion skin (scale) formation is vital for postharvest storage and shelf life.
- The precise mechanism of onion skin development and associated cell death remains poorly understood.
Purpose of the Study:
- To investigate the mode of cell death during the formation of the outermost onion scales.
- To elucidate the molecular mechanisms underlying onion skin development.
Main Methods:
- Fluorescein diacetate staining and scanning electron microscopy to observe cell viability and morphology.
- Transmission electron microscopy to identify programmed cell death (PCD)-related ultrastructural changes.
- De novo transcriptome assembly and gene expression analysis of outer, intermediate, and inner scales.
Main Results:
- Outer onion scales desiccate from the inside out, indicating an internal, organized cell death process.
- DNA fragmentation and PCD-related structural alterations were observed in outer scales but not inner scales.
- Transcriptome analysis revealed significant differential gene expression, with outer scales showing increased metabolic processes related to defense, PCD, and flavonoid biosynthesis.
Conclusions:
- Onion skin formation is an active, internally regulated process involving programmed cell death (PCD) in the outer scales.
- PCD is a key mechanism driving the development of the dry, protective onion skin.
- These findings provide insights into improving onion skin quality and postharvest characteristics.
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