EL-Sayed M. Qaoud, Nada A. Mostafa, Zinab A. Abdelgawad, Mohamed A. I. Ahmed, Habiba A. Abdeen, Esraa M. E. Hussein, Amira S. A. Abd El-Rahman, Essam M. A. Radwan, Sayed Y. Mohamed, Hebat-Allah A. Hussein, Nadi Awad Al-Harbi, Salem Mesfir Al-Qahtani, Mesfer M. Alqahtani, Fahad Mohammed Alzuaibr, Abdulrahman Alasmari, Hesham S. Ghazzawy, Lo’ay A. A., Mohamed A. Abdein, Azza S. Hussein
{"title":"冷藏期间根茎葡萄对无籽葡萄(葡萄属)质量特性和抗氧化活性的影响以及肽的分子对接研究","authors":"EL-Sayed M. Qaoud, Nada A. Mostafa, Zinab A. Abdelgawad, Mohamed A. I. Ahmed, Habiba A. Abdeen, Esraa M. E. Hussein, Amira S. A. Abd El-Rahman, Essam M. A. Radwan, Sayed Y. Mohamed, Hebat-Allah A. Hussein, Nadi Awad Al-Harbi, Salem Mesfir Al-Qahtani, Mesfer M. Alqahtani, Fahad Mohammed Alzuaibr, Abdulrahman Alasmari, Hesham S. Ghazzawy, Lo’ay A. A., Mohamed A. Abdein, Azza S. Hussein","doi":"10.1155/2024/4462702","DOIUrl":null,"url":null,"abstract":"<div>\n <p>The effect of three rootstocks on the responsiveness of “Superior Seedless” grapes to cold storage was investigated in this study during the growing seasons of 2021 and 2022. The “Superior Seedless” bunches were preserved for 90 days at 4 ± 1°C and 98 ± 2 relative humidity%. The “Superior Seedless” bunch response under cold storage was shown to be influenced by the rootstocks. According to the study, bunches picked from “Superior Seedless” that were grown on the “1103 Paulson” rootstocks performed better in antioxidant enzyme activities (AEAs) than bunches obtained from other rootstocks. Furthermore, during cold storage, the rates of H<sub>2</sub>O<sub>2</sub> and O<sub>2</sub><sup>−</sup>generation decreased more rapidly. However, combined with a low electrolyte leakage percentage (EL%) and malondialdehyde (MDA) accumulation, the 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenger concentration increased during the cold storage period. Furthermore, while berry quality traits were harvested from “Superior Seedless” grafted onto “1103 Paulson” rootstock, they were improved compared to other rootstocks. The molecular docking technique is performed to evaluate the binding affinity of antioxidant enzymes with a group of intracellular ligands, including DPPH, MDA, ascorbic acid, and tartaric acid, which show great results with respect to the DPPH compound. Following these findings, it can be concluded that the influence of rootstocks on “Superior Seedless” bunch responses to low cold storage represents a novel potential natural effect of rootstocks on responding bunches of “Superior Seedless” to low cold storage.</p>\n </div>","PeriodicalId":8582,"journal":{"name":"Australian Journal of Grape and Wine Research","volume":"2024 1","pages":""},"PeriodicalIF":2.5000,"publicationDate":"2024-06-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1155/2024/4462702","citationCount":"0","resultStr":"{\"title\":\"Effects of Rootstock Bunches on the Qualitative Properties and Antioxidant Activity of Seedless Grapes (Vitis vinifera) during Cold Storage with Molecular Docking of the Peptides\",\"authors\":\"EL-Sayed M. Qaoud, Nada A. Mostafa, Zinab A. Abdelgawad, Mohamed A. I. Ahmed, Habiba A. Abdeen, Esraa M. E. Hussein, Amira S. A. Abd El-Rahman, Essam M. A. Radwan, Sayed Y. Mohamed, Hebat-Allah A. Hussein, Nadi Awad Al-Harbi, Salem Mesfir Al-Qahtani, Mesfer M. Alqahtani, Fahad Mohammed Alzuaibr, Abdulrahman Alasmari, Hesham S. Ghazzawy, Lo’ay A. A., Mohamed A. Abdein, Azza S. Hussein\",\"doi\":\"10.1155/2024/4462702\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div>\\n <p>The effect of three rootstocks on the responsiveness of “Superior Seedless” grapes to cold storage was investigated in this study during the growing seasons of 2021 and 2022. The “Superior Seedless” bunches were preserved for 90 days at 4 ± 1°C and 98 ± 2 relative humidity%. The “Superior Seedless” bunch response under cold storage was shown to be influenced by the rootstocks. According to the study, bunches picked from “Superior Seedless” that were grown on the “1103 Paulson” rootstocks performed better in antioxidant enzyme activities (AEAs) than bunches obtained from other rootstocks. Furthermore, during cold storage, the rates of H<sub>2</sub>O<sub>2</sub> and O<sub>2</sub><sup>−</sup>generation decreased more rapidly. However, combined with a low electrolyte leakage percentage (EL%) and malondialdehyde (MDA) accumulation, the 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenger concentration increased during the cold storage period. Furthermore, while berry quality traits were harvested from “Superior Seedless” grafted onto “1103 Paulson” rootstock, they were improved compared to other rootstocks. The molecular docking technique is performed to evaluate the binding affinity of antioxidant enzymes with a group of intracellular ligands, including DPPH, MDA, ascorbic acid, and tartaric acid, which show great results with respect to the DPPH compound. 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Effects of Rootstock Bunches on the Qualitative Properties and Antioxidant Activity of Seedless Grapes (Vitis vinifera) during Cold Storage with Molecular Docking of the Peptides
The effect of three rootstocks on the responsiveness of “Superior Seedless” grapes to cold storage was investigated in this study during the growing seasons of 2021 and 2022. The “Superior Seedless” bunches were preserved for 90 days at 4 ± 1°C and 98 ± 2 relative humidity%. The “Superior Seedless” bunch response under cold storage was shown to be influenced by the rootstocks. According to the study, bunches picked from “Superior Seedless” that were grown on the “1103 Paulson” rootstocks performed better in antioxidant enzyme activities (AEAs) than bunches obtained from other rootstocks. Furthermore, during cold storage, the rates of H2O2 and O2−generation decreased more rapidly. However, combined with a low electrolyte leakage percentage (EL%) and malondialdehyde (MDA) accumulation, the 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenger concentration increased during the cold storage period. Furthermore, while berry quality traits were harvested from “Superior Seedless” grafted onto “1103 Paulson” rootstock, they were improved compared to other rootstocks. The molecular docking technique is performed to evaluate the binding affinity of antioxidant enzymes with a group of intracellular ligands, including DPPH, MDA, ascorbic acid, and tartaric acid, which show great results with respect to the DPPH compound. Following these findings, it can be concluded that the influence of rootstocks on “Superior Seedless” bunch responses to low cold storage represents a novel potential natural effect of rootstocks on responding bunches of “Superior Seedless” to low cold storage.
期刊介绍:
The Australian Journal of Grape and Wine Research provides a forum for the exchange of information about new and significant research in viticulture, oenology and related fields, and aims to promote these disciplines throughout the world. The Journal publishes results from original research in all areas of viticulture and oenology. This includes issues relating to wine, table and drying grape production; grapevine and rootstock biology, genetics, diseases and improvement; viticultural practices; juice and wine production technologies; vine and wine microbiology; quality effects of processing, packaging and inputs; wine chemistry; sensory science and consumer preferences; and environmental impacts of grape and wine production. Research related to other fermented or distilled beverages may also be considered. In addition to full-length research papers and review articles, short research or technical papers presenting new and highly topical information derived from a complete study (i.e. not preliminary data) may also be published. Special features and supplementary issues comprising the proceedings of workshops and conferences will appear periodically.