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Original Article

Study on textural changes and pectin degradation of tarocco blood Orange during storage

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Pages 344-358 | Received 10 Sep 2021, Accepted 18 Jan 2022, Published online: 17 Feb 2022

References

  • Prakash Maran, J.; Sivakumar, V.; Thirugnanasambandham, K.; Sridhar, R. Optimization of Microwave Assisted Extraction of Pectin from Orange Peel [J]. Carbohydr. Polym. 2013, 97(2), 703–709. DOI: 10.1016/j.carbpol.2013.05.052.
  • Fallico, B.; Ballistreri, G.; Arena, E.; Brighina, S.; Rapisarda, P. Bioactive Compounds in Blood Oranges (Citrus Sinensis (L.) Osbeck): Level and Intake [J]. Food Chem. 2017, 215, 67–75. DOI: 10.1016/j.foodchem.2016.07.142.
  • Habibi, F.; Ramezanian, A. Vacuum Infiltration of Putrescine Enhances Bioactive Compounds and Maintains Quality of Blood Orange during Cold Storage [J]. Food Chem. 2017, 227(1–8), 1–8. DOI: 10.1016/j.foodchem.2017.01.057.
  • Pannitteri, C.; Continella, A.; Lo Cicero, L.; Legua, P.; D’Aquino, S.; Palma, A.; La Malfa, S. Effects of Postharvest Storage Conditions on ‘Tarocco’ Orange Fruit Quality [J]. Acta Hortic. 2018, 1194, 873–878. DOI: 10.17660/ActaHortic.2018.1194.123.
  • Menesatti, P.; Pallottino, F.; Lanza, G.; Paglia, G. Prediction of Blood Orange MT Firmness by Multivariate Modelling of Low Alterative Penetrometric Data Set: A Preliminary Study [J]. Postharvest. Biol. Technol. 2009, 51(3), 434–436. DOI: 10.1016/j.postharvbio.2008.08.007.
  • Posé, S.; Paniagua, C.; Matas A, J.; Gunning, A. P.; Morris, V. J.; Quesada, M. A.; Mercado, J.A Nanostructural View of the Cell Wall Disassembly Process during Fruit Ripening and Postharvest Storage by Atomic Force Microscopy [J]. Trends Food Sci. Technol. 2019, 87(47–58), 47–58. DOI: 10.1016/j.tifs.2018.02.011.
  • Sañudo-Barajas J, A.; Lipan, L.; Cano-Lamadrid, M.; de la Rocha, R. V.; Noguera-Artiaga, L; Sanchez-Rodriguez, L.; Carbonell-Barrachina, A. A.; Hernandez, F. Texture [M]//elhadi M Y, Armando C-L.Postharvest Physiology and Biochemistry of Fruits and Vegetables. Duxford, United Kingdom. Elsevier Sci. 2019, 293–314.
  • Arendse, E.; Fawole, O. A.; Opara, U. L. Influence of Storage Temperature and Duration on Postharvest Physico-chemical and Mechanical Properties of Pomegranate Fruit and Arils [J]. CyTA - J. Food. 2014, 12(4), 389–398. DOI: 10.1080/19476337.2014.900114.
  • Guiné R P, F. Variation of Textural Attributes of S. Bartolomeu Pears at Maturation, Storage, and Drying [J]. Int. J. Food Prop. 2012, 16(1), 180–192. DOI: 10.1080/10942912.2010.535191.
  • Singh, K. K.; Reddy, B. S. Post-harvest Physico-mechanical Properties of Orange Peel and Fruit [J]. J. Food Eng. 2006, 73(2), 112–120. DOI: 10.1016/j.jfoodeng.2005.01.010.
  • Jouki, M.; Khazaei, N. J. J. O. F. P. Technology.The Effect of Modified Atmosphere Packaging and Calcium Chloride Dripping on the Quality and Shelf Life of Kurdistan Strawberries [J]. J Food Processing Technol. 2012, 3 (10).
  • Chatjigakis A, K.; Pappas, C.; Proxenia, N.; Kalantzi, O.; Rodis, P.; Polissiou, M. FT-IR Spectroscopic Determination of the Degree of Esterification of Cell Wall Pectins from Stored Peaches and Correlation to Textural Changes [J]. Carbohydr. Polym. 1998, 37(4), 395–408. DOI: 10.1016/S0144-8617(98)00057-5.
  • Zhang, C.; Xiong, Z.; Yang, H.; Wu, W. Changes in Pericarp Morphology, Physiology and Cell Wall Composition Account for Flesh Firmness during the Ripening of Blackberry (Rubus Spp.) Fruit [J]. Sci. Hortic. 2019, 250, 59–68. DOI: 10.1016/j.scienta.2019.02.015.
  • Kullaj, E. New Insights on Postharvest Ecophysiology of Fresh Horticultural Crops [M]. Eco-Friendly Technol for Postharvest Produce Qual. 2016, 1–38.
  • Grassino A, N.; Barba F, J.; Brncic, M.; Lorenzo, J. M.; Lucini, L.; Brnčić, S. R. Analytical Tools Used for the Identification and Quantification of Pectin Extracted from Plant Food Matrices, Wastes and By-products: A Review [J]. Food Chem. 2018, 266, 47–55. DOI: 10.1016/j.foodchem.2018.05.105.
  • Defilippi B, G.; Ejsmentewicz, T.; Covarrubias M, P.; Gudenschwager, O.; Campos-Vargas, R. Changes in Cell Wall Pectins and Their Relation to Postharvest Mesocarp Softening of “Hass” Avocados (Persea Americana Mill.) [J]. Plant Physiol. Biochem. 2018, 128, 142–151. DOI: 10.1016/j.plaphy.2018.05.018.
  • Airianah, O. B.; Vreeburg, R. A.; Fry, S. C. Pectic Polysaccharides are Attacked by Hydroxyl Radicals in Ripening Fruit: Evidence from a Fluorescent Fingerprinting Method [J]. Ann. Bot. 2016, 117(3), 441–455. DOI: 10.1093/aob/mcv192.
  • Cardenas-Perez, S.; Chanona-Perez J, J.; Guemes-Vera, N.; Cybulska, J.; Szymanska-Chargot, M.; Chylinska, M.; Kozioł, A.; Gawkowska, D.; Pieczywek, P. M.; Zdunek, A.; et al. Structural, Mechanical and Enzymatic Study of Pectin and Cellulose during Mango Ripening [J]. Carbohydr. Polym. 2018, 196(313–321), 313–321. DOI: 10.1016/j.carbpol.2018.05.044.
  • Deng L, Z.; Pan, Z.; Zhang, Q.; Liu, Z.-L.; Zhang, Y.; Meng, J.-S.; Gao, Z.-J.; Xiao, H.-W.Effects of Ripening Stage on Physicochemical Properties, Drying Kinetics, Pectin Polysaccharides Contents and Nanostructure of Apricots [J]. Carbohydr. Polym. 2019, 222(114980), 114980. DOI: 10.1016/j.carbpol.2019.114980.
  • Billy, L.; Mehinagic, E.; Royer, G.; Renard, C. M. G. C.; Arvisenet, G.; Prost, C.; Jourjon, F. Relationship between Texture and Pectin Composition of Two Apple Cultivars during Storage [J]. Postharvest. Biol. Technol. 2008, 47(3), 315–324. DOI: 10.1016/j.postharvbio.2007.07.011.
  • Liu, B.; Wang, K.; Shu, X.; Liang, J.; Fan, X.; Sun, L. Changes in Fruit Firmness, Quality Traits and Cell Wall Constituents of Two Highbush Blueberries (Vaccinium Corymbosum L.) During Postharvest Cold Storage [J]. Sci. Hortic. 2019, 246(557–562), 557–562. DOI: 10.1016/j.scienta.2018.11.042.
  • Shelukhina, N.; Fedichkina, L. A Rapid Method for Quantitative Determination of Pectic Substances [J]. Acta Bot. Neerl. 1994, 43 (2), 205–207. DOI: 10.1111/j.1438-8677.1994.tb00745.x.
  • Yeoh, S.; Shi, J.; Langrish, T. G. Comparisons between Different Techniques for Water-based Extraction of Pectin from Orange Peels [J]. Desalination. 2008, 218(1–3), 229–237. DOI: 10.1016/j.desal.2007.02.018.
  • Hosseini, S. S.; Khodaiyan, F.; Yarmand, M. S. Aqueous Extraction of Pectin from Sour Orange Peel and Its Preliminary Physicochemical Properties [J]. Int. J. Biol. Macromol. 2016, 82 (920–926), 920–926. DOI:10.1016/j.ijbiomac.2015.11.007.
  • Rodsamran, P.; Sothornvit, R. Preparation and Characterization of Pectin Fraction from Pineapple Peel as a Natural Plasticizer and Material for Biopolymer Film [J]. Food Bioprod. Process. 2019, 118(198–206), 198–206. DOI: 10.1016/j.fbp.2019.09.010.
  • Ogutu, F. O.; Mu, T. H. Ultrasonic Degradation of Sweet Potato Pectin and Its Antioxidant Activity [J]. Ultrason. Sonochem. 2017, 38(726–734), 726–734. DOI: 10.1016/j.ultsonch.2016.08.014.
  • Omolola, A. O.; Jideani, A. I.; Kapila, P. F. Quality Properties of Fruits as Affected by Drying Operation [J]. Crit. Rev. Food Sci. Nutr. 2017, 57(1), 95–108. DOI: 10.1080/10408398.2013.859563.
  • Hosseini S, S.; Khodaiyan, F.; Kazemi, M.; Najari, Z. Optimization and Characterization of Pectin Extracted from Sour Orange Peel by Ultrasound Assisted Method [J]. Int. J. Biol. Macromol. 2019, 125(621–629), 621–629. DOI: 10.1016/j.ijbiomac.2018.12.096.
  • Rapisarda, P.; Fanella, F.; Maccarone, E. Reliability of Analytical Methods for Determining Anthocyanins in Blood Orange Juices [J]. J. Agric. Food Chem. 2000, 48(6), 2249–2252. DOI: 10.1021/jf991157h.
  • Deng L, Z.; Mujumdar A, S.; Yang X, H.; Wang, J.; Zhang, Q.; Zheng, Z.-A.; Gao, Z.-J.; Xiao, H.-W. High Humidity Hot Air Impingement Blanching (HHAIB) Enhances Drying Rate and Softens Texture of Apricot via Cell Wall Pectin Polysaccharides Degradation and Ultrastructure Modification [J]. Food Chem. 2018, 261(292–300), 292–300. DOI: 10.1016/j.foodchem.2018.04.062.
  • Alba, K.; Kontogiorgos, V. Pectin at the Oil-water Interface: Relationship of Molecular Composition and Structure to Functionality [J]. Food Hydrocolloids. 2017, 68(211–218), 211–218. DOI: 10.1016/j.foodhyd.2016.07.026.
  • Zhang, L.; Ye, X.; Ding, T.; Sun, X.; Xu, Y.; Liu, D. Ultrasound Effects on the Degradation Kinetics, Structure and Rheological Properties of Apple Pectin [J]. Ultrason. Sonochem. 2013, 20(1), 222–231. DOI: 10.1016/j.ultsonch.2012.07.021.
  • Brummell, D. A.; Harptster, M. H. Cell Wall Metabolism in Fruit Softening and Quality and Its Manipulation Intransgenic Plants. Plant Mol Biol. 2001, 47 (1–2), 311–339. DOI:10.1023/A:1010656104304.
  • Brummell, D. A. Cell Wall Disassembly in Ripening Fruit [J]. Funct. Plant Biol. 2006, 33(2), 103–119. DOI: 10.1071/fp05234.
  • Jolie R, P.; Duvetter, T.; Van Loey, A. M.; Hendrickx, M. E. Pectin Methylesterase and Its Proteinaceous Inhibitor: A Review [J]. Carbohydr. Res. 2010, 345(18), 2583–2595. DOI: 10.1016/j.carres.2010.10.002.
  • Einhorn-Stoll, U.; Kastner, H.; Fatouros, A.; Krähmer, A.; Kroh, L. W.; Drusch, S. Thermal Degradation of Citrus Pectin in Low-moisture Environment – Investigation of Backbone Depolymerisation [J]. Food Hydrocolloids. 2020, 107, 105937. DOI: 10.1016/j.foodhyd.2020.105937.
  • Olmo, M.; Nadas, A.; García J J J O F, S. Nondestructive Methods to Evaluate Maturity Level of Oranges [J]. J. Food Sci. 2000, 65(2), 365–369. DOI: 10.1111/j.1365-2621.2000.tb16008.x.
  • Chauhan O, P.; Raju P, S.; Dasgupta D, K.; Bawa, A. S. Instrumental Textural Changes in Banana (Var. Pachbale) during Ripening under Active and Passive Modified Atmosphere [J]. Int. J. Food Prop. 2006, 9(2), 237–253. DOI: 10.1080/10942910600596282.
  • Fricke, W. Turgor Pressure [M]. In: eLS; Chichester, England; John Wiley & Sons, Ltd, 2017; pp 1–6.
  • Habibi, F.; Ramezanian, A.; Guillen, F.; Serrano, M.; Valero, D. Blood Oranges Maintain Bioactive Compounds and Nutritional Quality by Postharvest Treatments with Gamma-aminobutyric Acid, Methyl Jasmonate or Methyl Salicylate during Cold Storage [J]. Food Chem. 2020, 306(125634), 125634. DOI: 10.1016/j.foodchem.2019.125634.
  • Ghanem, N.; Mihoubi, D.; Kechaou, N.; Mihoubi, N. B. Microwave Dehydration of Three Citrus Peel Cultivars: Effect on Water and Oil Retention Capacities, Color, Shrinkage and Total Phenols Content [J]. Ind. Crops Prod. 2012, 40(167–177), 167–177. DOI: 10.1016/j.indcrop.2012.03.009.
  • Sun, C.; Van Beers, R.; Aernouts, B.; Saeys, W. Bulk Optical Properties of Citrus Tissues and the Relationship with Quality Properties [J]. Postharvest. Biol. Technol. 2020, 163(1–11), 111127. DOI: 10.1016/j.postharvbio.2020.111127.