Superficial scald is a major physiological disorder in apple fruit that is induced by cold storage and is mainly expressed as brown necrotic patches on peel tissue. However, a global view of the gene-protein-metabolite interactome underlying scald prevention/sensitivity is currently missing. Herein, we have found for the first time that cold storage in an atmosphere enriched with ozone (O) induced scald symptoms in 'Granny Smith' apple fruits during subsequent ripening at room temperature. In contrast, treatment with the ethylene perception inhibitor 1-methylcyclopropene (1-MCP) reversed this O-induced scald effect. Amino acids, including branched-chain amino acids, were the most strongly induced metabolites in peel tissue of 1-MCP treated fruits. Proteins involved in oxidative stress and protein trafficking were differentially accumulated prior to and during scald development. Genes involved in photosynthesis, flavonoid biosynthesis and ethylene signaling displayed significant alterations in response to 1-MCP and O. Analysis of regulatory module networks identified putative transcription factors (TFs) that could be involved in scald. Subsequently, a transcriptional network of the genes-proteins-metabolites and the connected TFs was constructed. This approach enabled identification of several genes coregulated by TFs, notably encoding glutathione -transferase (GST) protein(s) with distinct signatures following 1-MCP and O treatments. Overall, this study is an important contribution to future functional studies and breeding programs for this fruit, aiding to the development of improved apple cultivars to superficial scald.
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http://dx.doi.org/10.3389/fpls.2020.00008 | DOI Listing |
Burns
December 2024
Hannover Medical School, Department of Plastic, Aesthetic, Hand and Reconstructive Surgery, Germany.
Toxic epidermal necrolysis (TEN) is a life-threatening condition with a mortality rate of approximately 25 % to 30 %. Early and adequate wound coverage is necessary due to large skin defects. Suprathel® is a modern wound dressing that shows promising results when treating superficial wounds such as scalds, burns and abrasions.
View Article and Find Full Text PDFJ Med Food
October 2024
Department of Gynecology and Obstetrics, The First Affiliated Hospital of Nanchang University, Nanchang, P.R. China.
Natural products are known to have distinct roles in the treatment of various diseases. However, the potential role of ginsenoside Rg1 (GRg1) in the context of scald injuries remains unclear. This study aimed to elucidate the effects of GRg1 on scald wound healing by utilizing a mouse scald wound model and administering varying concentrations of GRg1 orally.
View Article and Find Full Text PDFActa Paediatr
October 2024
Department of Paediatrics, School of Medicine, University of Crete, Heraklion, Greece.
Aim: The aim of this review was to summarise the current knowledge on host-related factors that contribute to the development and severity of staphylococcal scalded skin syndrome (SSSS) in children.
Methods: A comprehensive assessment and analysis of the existing literature on SSSS clinical features, pathogenesis and susceptibility factors.
Results: SSSS is a blistering skin disease caused by circulating exfoliative toxins (ETs) of Staphylococcus aureus (S.
Food Chem X
October 2024
Department of Plant Breeding, The Swedish University of Agricultural Sciences, SE-230 53, Box 101, Alnarp, Sweden.
Apples are one of most economically important crops worldwide with a production of approximately 96 million tons in 2022. During postharvest storage, apple quality can decline due to the development of physiological disorders. Superficial scald is one of the main physiological disorders that develops in apples during cold storage and results in quality deterioration.
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