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Research articles

Physiological and biochemical mechanism of resveratrol inhibiting superficial scald in ‘Dangshansuli’ pears

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Pages 118-130 | Received 08 Sep 2021, Accepted 25 Nov 2021, Published online: 10 Jan 2022

References

  • Alhusaini AM, Alanazi AM, Fadda LA, Alqahtani QH, Sarawi WS, Hasan IH. 2021. The beneficial efficacy of liposomal resveratrol against doxorubicin-induced hepatotoxicity in rats: role of TGF-β1 and SIRT1. Journal of King Saud University-Science. 33(8):101640.
  • Arquiza J, Hay AG, Nock JF, Watkins CB. 2005. 1-Methylcyclopropene interactions with diphenylamine on diphenylamine degradation α-farnesene and conjugated trienol concentrations, and polyphenol oxidase and peroxidase activities in apple fruit. Journal of Agricultural and Food Chemistry. 53(19):7565–7570.
  • Awad MA, Al-Qurashi AD, Mohamed SA. 2015. Postharvest trans-resveratrol and glycine betaine treatments affect quality, antioxidant capacity, antioxidant compounds and enzymes activities of ‘El-Bayadi’ table grapes after storage and shelf life. Scientia Horticulturae. 197(14):350–356.
  • Cayuela JA, Vázquez A, Pérez AG, García JM. 2009. Control of table grapes postharvest decay by ozone treatment and resveratrol induction. Food Science and Technology International. 15(5):495–502.
  • Cebulj A, Halbwirth H, Mikulic-Petkovsek M, Veberic R, Slatnar A. 2020. The impact of scald development on phenylpropanoid metabolism based on phenol content, enzyme activity, and gene expression analysis. Horticulture, Environment, and Biotechnology. 61:849–858.
  • Chen X, Liu Q, Zhang J, Lv H, Zhang Y, Li L, Li M. 2007. Isolation and sequencing of PFS from peel tissue of pear fruit. Biotechnology Bulletin. 5:113–115.
  • Crowell JA, Korytko PJ, Morrissey RL, Booth TD, Levine BS. 2004. Resveratrol-associated renal toxicity. Toxicological Sciences. 82(2):614–619.
  • Gago C, Guerreiro A, Miguel G, Panagopoulos T, da Silva M, Antunes M. 2016. Effect of calcium chloride and 1-MCP (SmartfreshTM) postharvest treatment on ‘golden delicious’ apple cold storage physiological disorders. Scientia Horticulturae. 211:440–448.
  • Gao M, Zhou S, Guan J, Zhang Y. 2015. Effects of 1-methylcyclopropene on superficial scald and related metabolism in ‘wujiuxiang’ pear during cold storage. Journal of Applied Botany and Food Quality. 88:102–108.
  • Gonzalez Urena A, Orea JM, Montero C, Jiménez JB, González JL, Sánchez A, Dorado M. 2003. Improving postharvest resistance in fruits by external application of trans-resveratrol. Journal of Agricultural and Food Chemistry. 51:82–89.
  • Hui W, Niu J, Xu X, Guan J. 2016. Evidence supporting the involvement of MHO in the formation of superficial scald in ‘Dangshansuli’ pears. Postharvest Biology and Technology. 121:43–50.
  • Jia B, Cheng Z, Wang Q, Zhang S, Heng W, Zhu L. 2021. Characterization of the composition and gene expression involved the shikimate pathway in the exocarp of ‘Dangshansuli’ pear and its russet mutant. Horticulture. Environment, and Biotechnology. 62:125–134.
  • Jiménez JB, Orea JM, Montero C, Ureña AG, Navas E, Slowing K, Gómez-Serranillos MP, Carretero E, De Martinis D. 2005. Resveratrol treatment controls microbial flora, prolongs shelf life, and preserves nutritional quality of fruit. Journal of Agricultural and Food Chemistry. 53(5):1526–1530.
  • Jin P, Zhu H, Wang L, Shan T, Zheng Y. 2014. Oxalic acid alleviates chilling injury in peach fruit by regulating energy metabolism and fatty acid contents. Food Chemistry. 161:87–93.
  • Karagiannis E, Michailidis M, Tanou G, Samiotaki M, Karamanoli K, Avramidou E, Ganopoulos I, Madesis P, Molassiotis A. 2018. Ethylene-dependent and -independent superficial scald resistance mechanisms in ‘Granny Smith’ apple fruit. Scientific Reports. 8:11436.
  • López-Gutiérrez N, Romero-González R, Vidal JLM, Frenich AG. 2016. Determination of polyphenols in grape-based nutraceutical products using high resolution mass spectrometry. LWT-Food Science and Technology. 71:249–259.
  • Lurie S, Watkins CB. 2012. Superficial scald, its aetiology and control. Postharvest Biology and Technology. 65:44–60.
  • Mditshwa A, Fawole OA, Vries F, Van Der Merwe K, Crouch E, Opara UL. 2016. Classification of ‘Granny Smith’ apples with different levels of superficial scald severity based on targeted metabolites and discriminant analysis. Journal of Applied Botany and Food Quality. 89:49–55.
  • Mditshwa A, Fawole OA, Vries F, van der Merwe K, Crouch E, Opara UL. 2017. Repeated application of dynamic controlled atmospheres reduced superficial scald incidence in ‘Granny Smith’ apples. Scientia Horticulturae. 220:168–175.
  • Niu J, Hou Z, Ou Z, Hui W. 2018a. Comparative study of effects of resveratrol, 1-MCP and DPA treatments on postharvest quality and superficial scald of ‘Starkrimson’ apples. Scientia Horticulturae. 240:516–521.
  • Niu J, Zhao J, Wang J, Hui W. 2018b. Effects of resveratrol on superficial scald of ‘Dangshansuli’ pears. Journal of Food Engineering and Technology. 7:1.
  • Pechous SW, Watkins CB, Whitaker BD. 2005. Expression of α-farnesene synthase gene AFS1 in relation to levels of α-farnesene and conjugated trienols in peel tissue of scald-susceptible ‘Law Rome’ and scald-resistant ‘Idared’ apple fruit. Postharvest Biology and Technology. 35:125–132.
  • Rehman A, Tong Q, Jafari SM, Korma SA, Khan IM, Mohsin A, Manzoor MF, Ashraf W, Mushtaq BS, Zainab S, Cacciotti I. 2021. Spray dried nanoemulsions loaded with curcumin, resveratrol, and borage seed oil: the role of two different modified starches as encapsulating materials. International Journal of Biological Macromolecules. 186:820–828.
  • Rekik I, Chaabane Z, Missaoui A, Bouket AC, Luptakova L, Elleuch A, Belbahri L. 2017. Effects of untreated and treated wastewater at the morphological, physiological and biochemical levels on seed germination and development of sorghum (Sorghum bicolor (L.) Moench), alfalfa (Medicago sativa L.) and fescue (Festuca arundinacea Schreb.). Journal of Hazardous Materials. 326:165–176.
  • Sabban-Amina R, Feygenberga O, Belausovb E, Pesis E. 2011. Low oxygen and 1-MCP pretreatments delay superficial scald development by reducing reactive oxygen species (ROS) accumulation in stored ‘Granny Smith’ apples. Postharvest Biology and Technology. 62:293–304.
  • Sarkar D, Ankolekar C, Greene D, Shetty K. 2018. Natural preservatives for superficial scald reduction and enhancement of protective phenolic-linked antioxidant responses in apple during post-harvest storage. Journal of Food Science and Technology. 55:1767–1780.
  • Tao D, Wang J, Zhang L, Jiang Y, Lv M. 2019. 1-Methylcyclopropene alleviates peel browning of ‘Nanguo’ pears by regulating energy, antioxidant and lipid metabolisms after long term refrigeration. Scientia Horticulturae. 247:254–263.
  • Thomai T, Sfakiotakis E, Diamantidis G, Vasilakakis M. 1998. Effects of low preharvest temperature on scald susceptibility and biochemical changes in ‘Granny Smith’ apple peel. Scientia Horticulturae. 76:1–15.
  • Vestergaard M, Ingmer H. 2019. Antibacterial and antifungal properties of resveratrol. International Journal of Antimicrobial Agents. 53(6):716–723.
  • Wang J, Zhou X, Zhou Q, Cheng S, Wei B, Ji S. 2017. Low temperature conditioning alleviates peel browning by modulating energy and lipid metabolisms of ‘Nanguo’ pears during shelf life after cold storage. Postharvest Biology and Technology. 131:10–15.
  • Wang L, Qian M, Wang R, Wang L, Zhang S. 2018. Characterization of the glutathione S-transferase (GST) gene family in Pyrus bretschneideri and their expression pattern upon superficial scald development. Plant Growth Regulation. 86:211–222.
  • Wang X, Cai J, Jiang D, Liu F, Dai T, Cao W. 2011. Pre-anthesis high-temperature acclimation alleviates damage to the flag leaf caused by post-anthesis heat stress in wheat. Journal of Plant Physiology. 168:585–593.
  • Watkins CB, Nock JF, Whitaker BD. 2000. Responses of early, mid and late season apple cultivars to postharvest application of 1-methylcyclopropene (1-MCP) under air and controlled atmosphere storage conditions. Postharvest Biology and Technology. 19:17–32.
  • Whitaker BD. 2000. DPA treatment alters α-farnesene metabolism in peel of ‘empire’ apples stored in air or 1.5% O2 atmosphere. Postharvest Biology and Technology. 18:91–97.
  • Yadav P, Kaur R, Kanwar MK, Bhardwaj R, Sirhindi G, Wijaya L, Alyemeni MN, Ahmad P. 2018. Ameliorative role of castasterone on copper metal toxicity by improving redox homeostasis in Brassica juncea L. Journal of Plant Growth Regulation. 37:575–590.
  • Yao F, Huang Z, Li D, Wang H, Xu X, Jiang Y, Qu H. 2014. Phenolic components, antioxidant enzyme activities and anatomic structure of longan fruit pericarp following treatment with adenylate triphosphate. Scientia Horticulturae. 180:6–13.
  • Yuan K, Liu Q, Zhang L, Ai C, Wei H, Yi K. 2010. Promoter sequence of alpha-farnesene synthase gene in apples and its homolog gene. Genomics and Applied Biology. 29(5):904–910.
  • Zanella A. 2003. Control of apple superficial scald and ripening-a comparison between 1-methylcyclopropene and diphenylamine postharvest treatments, initial low oxygen stress and ultra low oxygen storage. Postharvest Biology and Technology. 27:69–78.
  • Zeng J, Hu Y, Zhang X. 2010. Toxicological assessment of trans-resveratrol. Chinese Herbal Medicines. 2(1):30–40.
  • Zhang J, Chen X, Lv H, Zhang Y. 2009. Separation and expression of α-farnesene synthase gene of the peel tissue of Yali pear (Pyrus bretschneideri Rehd). Biotechnology Bulletin. 10:105–108.
  • Zhao J, Xie X, Shen X, Wang Y. 2016. Effect of sunlight-exposure on antioxidants and antioxidant enzyme activities in ‘d’Anjou’ pear in relation to superficial scald development. Food Chemistry. 210:18–25.
  • Zhou B, Wang J, Guo Z, Tan H, Zhu X. 2006. A simple colorimetric method for determination of hydrogen peroxide in plant tissues. Plant Growth Regulation. 49:113–118.

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