Kinnow: Nutritionally Rich Functional Food for Value Addition

Authors

  • Andleeb Zahra Department of Agricultural Engineering and Technology, Faculty of Agricultural Sciences, Ghazi University, Dera Ghazi Khan
  • Tahira Batool Qaisrani Department of Agricultural Engineering and Technology, Faculty of Agricultural Sciences, Ghazi University, Dera Ghazi Khan
  • Matlob Ahmad Department of Agricultural Engineering and Technology, Faculty of Agricultural Sciences, Ghazi University, Dera Ghazi Khan
  • Talat Bilal Department of Animal Sciences, Ghazi University, Dera Ghazi khan

DOI:

https://doi.org/10.55627/agrivet.03.02.0361

Keywords:

Kinnow Mandarin, Value-added Products, Functional Ingredients, Nutrition

Abstract

Kinnow mandarin, a variety amongst citrus fruits is preferred for refreshing flavor pleasing aroma and bright color. It is rich in vitamins B complex and vitamin C, with remarkable minerals like calcium, phosphorus and other bioactive compounds. These compounds proved to have antioxidant, anti-inflammatory and antimicrobial activities. Pakistan is amongst of top kinnow producing countries on globe. Unfortunately, an ample quantity of its produce is wasted due to mishandling at post-harvest stage and lack of keeping facilities in under developing countries. This fruit is mainly processed to prepare beverages and juice-based products. One of the hindrances to its processing may be the presence of bittering compounds. Various de-bittering techniques can be opted to resolve this issue. Keeping in view its importance a lot of work has been done so far to prevent its losses. Kinnow fruit possesses a number of industrial and medical applications as well. Hence the processing is increasing in terms of techniques and products resulting in preparation of a number of value-added food products. The nutritional value of the kinnow prescribes its use in formulating a number of food products like ready to serve drinks, juices, squash, nectars, different blends, powders, candies, fermented products etc. This review covers information about kinnow production, harvesting, storage, post-harvest losses and their solutions globally. The article also highlights the nutritional importance, variety of products and techniques being applied in kinnow processing.

References

Abeysinghe, D., Li, X., Sun, C., Zhang, W., Zhou, C., Chen, K., 2007. Bioactive compounds and antioxidant capacities in different edible tissues of citrus fruit of four species. Food Chemistry 104, 1338-1344.

Additives, E.P.o., Feed, P.o.S.u.i.A., 2011. Scientific Opinion on the safety and efficacy of naringin when used as a sensory additive for all animal species. EFSA Journal 9, 2416.

Aggarwal, P., Kaur, S., Kaur, N., 2022. Intermediate moisture kinnow bar from low grade kinnow mandarins: phytonutritional profile, morphological characterization, and storage stability. Food Bioscience 49, 101837.

AggArwAl, P., MichAel, M., 2014. Effect of replacing sucrose with fructose on the physico-chemical sensory characteristics of kinnow candy. Czech Journal of Food Sciences 32, 158-163.

Ahmed, U.I., Ying, L., Mushtaq, K., Bashir, M.K., 2015. An econometric estimation of post-harvest losses of kinnow in Pakistan. International Journal of Economics, Commerce and Management 3, 373-383.

Alam, M., Kaur, M., Ramya, H., 2019. Efficacy of osmo-convective process parameters for Kinnow fruit slices and its optimization using response surface methodology. Proceedings of the National Academy of Sciences, India Section B: Biological Sciences 89, 605-614.

Ali, M.A., Zulfiqar, A., Arif, A.M., Khan, A.-R., Iqbal, Z., Khan, M.A., 2015. Effect of natural and synthetic fruit coatings on the postharvest quality of kinnow mandarins. Agricultural Engineering International: CIGR Journal 17.

Anderson, J.W., Baird, P., Davis Jr, R.H., Ferreri, S., Knudtson, M., Koraym, A., Waters, V., Williams, C.L., 2009. Health benefits of dietary fiber. Nutrition Reviews 67, 188-205.

Anticona, M., Blesa, J., Lopez-Malo, D., Frigola, A., Esteve, M.J., 2021. Effects of ultrasound-assisted extraction on physicochemical properties, bioactive compounds, and antioxidant capacity for the valorization of hybrid Mandarin peels. Food Bioscience 42, 101185.

Aulakh, P.S., Thind, S.K., Arora, P.K., 2008. Kinnow. Punjab Agricultural University, Ludhiana, 48.

Babbar, N., Oberoi, H.S., Sandhu, S.K., 2015. Therapeutic and nutraceutical potential of bioactive compounds extracted from fruit residues. Critical Reviews in Food Science and Nutrition 55, 319-337.

Babbar, N., Oberoi, H.S., Uppal, D.S., Patil, R.T., 2011. Total phenolic content and antioxidant capacity of extracts obtained from six important fruit residues. Food Research International 44, 391-396.

Baghkhandan, M.S., 2006. 10. ISLAMIC REPUBLIC OF IRAN (2) Postharvest management of fruit and vegetables in the Asia-Pacific region.

Baghurst, K., 2003. The health benefits of citrus fruits. Horticulture Australia, Sydney.

Bajwa, B.E., Anjum, F.M., 2007. Improving storage performance of Citrus reticulata Blanco mandarins by controlling some physiological disorders. International Journal of Food Science & Technology 42, 495-501.

Barmore, C.R., Fisher, J.F., FELLERS, P.J., Rouseff, R.L., 1986. Reduction of bitterness and tartness in grapefruit juice with Florisil. Journal of Food Science 51, 415-416.

Ben-Yehoshua, S., Rodov, V., Fang, D.Q., Kim, J.J., 1995. Preformed antifungal compounds of citrus fruit: effect of postharvest treatments with heat and growth regulators. Journal of Agricultural and Food Chemistry 43, 1062-1066.

Bezman, Y., Rouseff, R.L., Naim, M., 2001. 2-Methyl-3-furanthiol and methional are possible off-flavors in stored orange juice: aroma-similarity, NIF/SNIF GC− O, and GC analyses. Journal of Agricultural and Food Chemistry 49, 5425-5432.

Bhardwaj, R., Mukherjee, S., 2011. Effects of fruit juice blending ratios on kinnow juice preservation at ambient storage condition. African Journal of Food Science 5, 281-286.

Bhardwaj, R., Nandal, U., 2014. Effect of storage temperature on physico-chemical and sensory evaluation of kinnow mandarin juice blends. Journal of Food Processing & Technology 5, 1-4.

Bocco, A., Cuvelier, M.-E., Richard, H., Berset, C., 1998. Antioxidant activity and phenolic composition of citrus peel and seed extracts. Journal of Agricultural and Food Chemistry 46, 2123-2129.

Bok, S.-H., Lee, S.-H., Park, Y.-B., Bae, K.-H., Son, K.-H., Jeong, T.-S., Choi, M.-S., 1999. Plasma and hepatic cholesterol and hepatic activities of 3-hydroxy-3-methyl-glutaryl-CoA reductase and acyl CoA: cholesterol transferase are lower in rats fed citrus peel extract or a mixture of citrus bioflavonoids. The Journal of Nutrition 129, 1182-1185.

Bronner, W., Beecher, G., 1995. Extraction and measurement of prominent flavonoids in orange and grapefruit juice concentrates. Journal of Chromatography A 705, 247-256.

Buscemi, S., Corleo, D., Di Pace, F., Petroni, M.L., Satriano, A., Marchesini, G., 2018. The effect of lutein on eye and extra-eye health. Nutrients 10, 1321.

Caro, A.A., Cederbaum, A.I., 2004. Oxidative stress, toxicology, and pharmacology of CYP2E1. Annual Review of Pharmacology and Toxicology 44, 27-42.

Castro-Vazquez, L., Alañón, M.E., Rodríguez-Robledo, V., Pérez-Coello, M.S., Hermosín-Gutierrez, I., Díaz-Maroto, M.C., Jordán, J., Galindo, M.F., Arroyo-Jimenez, M.d.M., 2016. Bioactive flavonoids, antioxidant behaviour, and cytoprotective effects of dried grapefruit peels (Citrus paradisi Macf.). Oxidative Medicine and Cellular Longevity 2016, 8915729.

Chien, P.J., Sheu, F., Shyu, Y.T., 2001. Monitoring enzymatic debittering in grapefruit juice by high performance liquid chromatography. Journal of Food and Drug Analysis 9, 8.

Cho, K.S., Lim, Y.-r., Lee, K., Lee, J., Lee, J.H., Lee, I.-S., 2017. Terpenes from forests and human health. Toxicological Research 33, 97-106.

Choi, M.-S., Do, K.-M., Park, Y.B., Jeon, S.-M., Jeong, T.-S., Lee, Y.-K., Lee, M.-K., Bok, S.-H., 2001. Effect of naringin supplementation on cholesterol metabolism and antioxidant status in rats fed high cholesterol with different levels of vitamin E. Annals of Nutrition and Metabolism 45, 193-201.

CM, W., 2013. Potassium and health. Advance Nutrition 4, 368–377.

Cory, H., Passarelli, S., Szeto, J., Tamez, M., Mattei, J., 2018. The role of polyphenols in human health and food systems: A mini-review. Frontiers in Nutrition 5, 370438.

Craig, W.J., 1997. Phytochemicals: guardians of our health. Journal of the American Dietetic Association 97, S199-S204.

Deshmukh, N., Patel, R., Rymbai, H., Jha, A., Deka, B.C., 2016. Fruit maturity and associated changes in Khasi mandarin (Citrus reticulata) at different altitudes in humid tropical climate. Indian Journal of Agricultural Sciences 86, 854-859.

Devaki, S.J., Raveendran, R.L., 2017. Vitamin C: sources, functions, sensing and analysis, Vitamin C. IntechOpen.

Devasagayam, T., Tilak, J., Boloor, K., Sane, K.S., Ghaskadbi, S.S., Lele, R., 2004. Free radicals and antioxidants in human health: current status and future prospects. Japi 52, 4.

Dhall, R., 2013. Advances in edible coatings for fresh fruits and vegetables: a review. Critical Reviews in Food Science and Nutrition 53, 435-450.

Dhruv Juyal, D.J., 2018. Sensory evaluation of kinnow powder. International Journal of Agricultural Engineering 11, 90-94.

Dillard, C.J., German, J.B., 2000. Phytochemicals: nutraceuticals and human health. Journal of the Science of Food and Agriculture 80, 1744-1756.

Dua, K., Kocher, G.S., 2017. Fermentative processing of kinnow juice and extraction of limonin from kinnow waste. Current Trends in Biomedical Engineering & Biosciences 4, 555637.

Elvira-Torales, L.I., García-Alonso, J., Periago-Castón, M.J., 2019. Nutritional importance of carotenoids and their effect on liver health: A review. Antioxidants 8, 229.

Fanciullino, A.-L., Dhuique-Mayer, C., Luro, F., Casanova, J., Morillon, R., Ollitrault, P., 2006. Carotenoid diversity in cultivated citrus is highly influenced by genetic factors. Journal of Agricultural and Food Chemistry 54, 4397-4406.

Ferreira, L., Afonso, C., Vila-Real, H., Alfaia, A., Ribeiro, M.H., 2008. Evaluation of the effect of high pressure on naringin hydrolysis in grapefruit juice with naringinase immobilised in calcium alginate beads. Food Technology and Biotechnology 46, 146.

Finglas, P.M., Berry, R., Astley, S., 2014. Assessing and improving the quality of food composition databases for nutrition and health applications in Europe: the contribution of EuroFIR. Advances in Nutrition 5, 608S-614S.

Giannuzzo, A.N., Boggetti, H.J., Nazareno, M.A., Mishima, H.T., 2003. Supercritical fluid extraction of naringin from the peel of Citrus paradisi. Phytochemical Analysis 14, 221-223.

Gorinstein, S., Cvikrova, M., Machackova, I., Haruenkit, R., Park, Y.-S., Jung, S.-T., Yamamoto, K., Ayala, A.L.M., Katrich, E., Trakhtenberg, S., 2004. Characterization of antioxidant compounds in Jaffa sweeties and white grapefruits. Food Chemistry 84, 503-510.

Grosso, G., Bei, R., Mistretta, A., Marventano, S., Calabrese, G., Masuelli, L., Giganti, M.G., Modesti, A., Galvano, F., Gazzolo, D., 2013. Effects of vitamin C on health: a review of evidence. Front Biosci (Landmark Ed) 18, 1017-1029.

Hasegawa, S., Maier, V., 1990. Biochemistry of limonoid citrus juice bitter principles and biochemical debittering processes. Developments in Food Science 25, 281-287.

He, F.J., MacGregor, G.A., 2008. Beneficial effects of potassium on human health. Physiologia plantarum 133, 725-735.

Hossain, M., 2015. An overview on post harvest handling and commercial processing of horticultural crops in NEH region of India. International Journal of Science and Research 4, 2304-2308.

Ignat, I., Volf, I., Popa, V.I., 2011. A critical review of methods for characterisation of polyphenolic compounds in fruits and vegetables. Food Chemistry 126, 1821-1835.

Izquierdo, L., Sendra, J., 2003. Citrus fruits: composition and characterization.

Jagannath, A., Kumar, M., 2016. Monitoring blanching induced debittering and storage losses of naringin in orange subjected to osmotic dehydration. International Journal of Fruit Science 16, 410-422.

Jiao, Y., Reuss, L., Wang, Y., 2019. β-Cryptoxanthin: Chemistry, occurrence, and potential health benefits. Current Pharmacology Reports 5, 20-34.

Joshi, V., Kumar, V., Kumar, A., 2012. Physico-chemical and sensory evaluation of wines from different citrus fruits of Himachal Pradesh. International Journal of Food and Fermentation Technology 2, 145-148.

Joshi, V., Thakur, N., Lal Kaushal, B., 1997. Effect of debittering of kinnow juice on physico-chemical and sensory quality of kinnow wine. INDIAN FARMING-DELHI-US JAIN- 51, 5-10.

Joshipura, K.J., Hu, F.B., Manson, J.E., Stampfer, M.J., Rimm, E.B., Speizer, F.E., Colditz, G., Ascherio, A., Rosner, B., Spiegelman, D., 2001. The effect of fruit and vegetable intake on risk for coronary heart disease. Annals of Internal Medicine 134, 1106-1114.

Jung, U.J., Choi, M.-S., Lee, M.-K., Jeong, K.-S., 2004. The hypoglycemic effects of hesperidin and naringin are partly mediated by hepatic glucose-regulating enzymes in C57BL/KsJ-db/db mice. The Journal of Nutrition 134, 2499-2503.

Kanaze, F.I., Gabrieli, C., Kokkalou, E., Georgarakis, M., Niopas, I., 2003. Simultaneous reversed-phase high-performance liquid chromatographic method for the determination of diosmin, hesperidin and naringin in different citrus fruit juices and pharmaceutical formulations. Journal of Pharmaceutical and Biomedical Analysis 33, 243-249.

Kandi, S., Godishala, V., Rao, P., Ramana, K., 2015. Biomedical significance of terpenes: an insight. Biomedicine 3, 8-10.

Kashyap, K., Banu, S., 2019. Characterizing ethylene pathway genes during the development, ripening, and postharvest response in Citrus reticulata Blanco fruit pulp. Turkish Journal of Botany 43, 173-184.

Kashyap, K., Kashyap, D., Nitin, M., Ramchiary, N., Banu, S., 2020. Characterizing the nutrient composition, physiological maturity, and effect of cold storage in Khasi mandarin (Citrus reticulata Blanco). International Journal of Fruit Science 20, 521-540.

Kaur, S., Aggarwal, P., Kaur, N., 2022. Enhanced functionality and shelf stability of burfi by incorporating kinnow (mandarin) fruit juice. Journal of Food Science and Technology 59, 4956-4968.

Kawaii, S., Tomono, Y., Katase, E., Ogawa, K., Yano, M., 1999. Quantitation of flavonoid constituents in citrus fruits. Journal of Agricultural and Food Chemistry 47, 3565-3571.

Khalid, S., 2013. Fruit quality and storability of Kinnow mandarin (Citrus reticulata Blanco) in relation to tree age. University of Agriculture Faisalabad Punjab, Pakistan.

Khandelwal, S., Verma, G., Shaikh, N.I., Siegel, K.R., Soni, D., Soni, D., Thow, A.-M., 2019. Mapping of policies related to fruits and vegetables accessibility in India. Journal of Hunger & Environmental Nutrition.

Knekt, P., Kumpulainen, J., Järvinen, R., Rissanen, H., Heliövaara, M., Reunanen, A., Hakulinen, T., Aromaa, A., 2002. Flavonoid intake and risk of chronic diseases. The American Journal of Clinical Nutrition 76, 560-568.

Knekt, P., Ritz, J., Pereira, M.A., O'Reilly, E.J., Augustsson, K., Fraser, G.E., Goldbourt, U., Heitmann, B.L., Hallmans, G., Liu, S., 2004. Antioxidant vitamins and coronary heart disease risk: a pooled analysis of 9 cohorts. The American Journal of Clinical Nutrition 80, 1508-1520.

Kumar, S., Kumar, R., Sharma, P., 2020. De-bittering studies of kinnow mandarin (Citrus reticulata Blanco) juice. Journal of Environmental Biology 41, 1068-1074.

Lado, J., Rodrigo, M.J., Zacarías, L., 2014. Maturity indicators and citrus fruit quality. Stewart Postharvest Review 10, 1-6.

Li, N., Xu, Z., Wooley, P.H., Zhang, J., Yang, S.-Y., 2014. Therapeutic potentials of naringin on polymethylmethacrylate induced osteoclastogenesis and osteolysis, in vitro and in vivo assessments. Drug Design, Development and Therapy, 1-11.

Li, Y.O., Komarek, A.R., 2017. Dietary fibre basics: Health, nutrition, analysis, and applications. Food Quality and Safety 1, 47-59.

Liu, R.H., 2003. Health benefits of fruit and vegetables are from additive and synergistic combinations of phytochemicals. The American Journal of Clinical Nutrition 78, 517S-520S.

Liu, R.H., 2004. Potential synergy of phytochemicals in cancer prevention: mechanism of action. The Journal of Nutrition 134, 3479S-3485S.

Mahawar, M.K., Jalgaonkar, K., Bibwe, B., Bhushan, B., Meena, V.S., Sonkar, R.K., 2020. Post-harvest processing and valorization of Kinnow mandarin (Citrus reticulate L.): A review. Journal of Food Science and Technology 57, 799-815.

Manlan, M., Matthews, R., Rouseff, R., Littell, R., Marshall, M., Moye, H., Teixeira, A., 1990. Evaluation of the properties of polystyrene divinylbenzene adsorbents for debittering grapefruit juice. Journal of Food Science 55, 440-445.

Mann, S., Aggarwal, K., 2013. Development of phytochemical rich ice cream incorporating kinnow peel. Global Journal of Science Frontier Research 13, 1-3.

Manthey, J.A., Grohmann, K., 2001. Phenols in citrus peel byproducts. Concentrations of hydroxycinnamates and polymethoxylated flavones in citrus peel molasses. Journal of Agricultural and Food Chemistry 49, 3268-3273.

Mathur, A., Verma, S.K., Purohit, R., Gupta, V., Dua, V., Prasad, G., Mathur, D., Singh, S.K., Singh, S., 2011. Evaluation of in vitro antimicrobial and antioxidant activities of peel and pulp of some citrus fruits. Journal of Biotechnology and Biotherapeutics 1, 1-17.

Middleton, E., 1994. Potential health-promoting properties of citrus flavonoids. Food Technology 48, 115-119.

Miri, S.M., Salari, M., Ahmadpour, A., 2017. Determining appropriate harvesting date and storage life of Kinnow mandarine fruits in Jiroft county. Journal of Horticultural Science 31, 483-491.

Miri, S.M., Salari, M., Ahmadpour, A., 2018. Physicochemical responses of ‘Kinnow’mandarins to wax and polyethylene covering during cold storage. Open Agriculture 3, 678-683.

Mollapur, Y., Miri, S.M., Hadavi, E., 2016. Comparison of foliar fertilizers and growth regulators on pre-harvest drop and fruit quality of ‘Thompson Navel’orange. Open Agriculture 1, 112-117.

Nagy, S., 1980. Vitamin C contents of citrus fruit and their products: a review. Journal of Agricultural and Food Chemistry 28, 8-18.

Nath, A., Barman, K., Chandra, S., Baiswar, P., 2013. Effect of plant extracts on quality of Khasi mandarin (Citrus reticulata Blanco) fruits during ambient storage. Food and Bioprocess Technology 6, 470-474.

Okwu, D.E., 2008. Citrus fruits: A rich source of phytochemicals and their roles in human health. International Journal of Chemical Sciences 6, 451-471.

Panesar, P.S., Panesar, R., Singh, B., 2009. Application of response surface methodology in the optimization of process parameters for the production of kinnow wine. Agricultural and Food Sciences, Chemistry.

Petracek, P.D., Davis, C., 1996. Effects of selected preharvest factors on postharvest pitting of white grapefruit, Proceedings of the Florida State Horticultural Society, pp. 251-253.

Premi, B., Lal, B., Joshi, V., 1994. Distribution pattern of bittering principles in Kinnow fruit.

Puri, M., Kalra, S., 2005. Purification and characterization of naringinase from a newly isolated strain of Aspergillus niger 1344 for the transformation of flavonoids. World Journal of Microbiology and Biotechnology 21, 753-758.

Puri, M., Marwaha, S., Kothari, R., 1996. Studies on the applicability of alginate-entrapped naringiase for the debittering of kinnow juice. Enzyme and Microbial Technology 18, 281-285.

Putnik, P., Barba, F.J., Lorenzo, J.M., Gabrić, D., Shpigelman, A., Cravotto, G., Bursać Kovačević, D., 2017. An integrated approach to mandarin processing: Food safety and nutritional quality, consumer preference, and nutrient bioaccessibility. Comprehensive Reviews in Food Science and Food Safety 16, 1345-1358.

Rattanpal, H., Singh, G., Singh, S., Arora, A., 2017. Citrus cultivation in Punjab. Punjab Agricultural University, Ludhiana, India 10.

Rehman, S.U., Abbasi, K.S., Qayyum, A., Jahangir, M., Sohail, A., Nisa, S., Tareen, M.N., Tareen, M.J., Sopade, P., 2019. Comparative analysis of citrus fruits for nutraceutical properties. Food Science and Technology 40, 153-157.

Rokaya, P.R., Baral, D.R., Gautam, D.M., Shrestha, A.K., Paudyal, K.P., 2016. Effect of pre-harvest application of gibberellic acid on fruit quality and shelf life of mandarin (Citrus reticulata Blanco). American Journal of Plant Sciences 7, 1033.

Ross, S.A., Ziska, D.S., Zhao, K., ElSohly, M.A., 2000. Variance of common flavonoids by brand of grapefruit juice. Fitoterapia 71, 154-161.

Sarabandi, K., Peighambardoust, S.H., Shirmohammadi, M., 2014. Physical properties of spray dried grape syrup as affected by drying temperature and drying aids. International Journal of Agriculture and Crop Sciences 7, 928.

Sharma, N., Kalra, K., Oberoi, H.S., Bansal, S., 2007. Optimization of fermentation parameters for production of ethanol from kinnow waste and banana peels by simultaneous saccharification and fermentation. Indian Journal of Microbiology 47, 310-316.

Shaw, P.E., Buslig, B.S., 1986. Selective removal of bitter compounds from grapefruit juice and from aqueous solution with cyclodextrin polymers and with Amberlite XAD-4. Journal of Agricultural and Food Chemistry 34, 837-840.

Shaw, P.E., Wilson III, C.W., 1985. Reduction of Bitterness in Grapefruit Juice with β‐Cyclodextrin Polymer in a Continuous‐Flow Process. Journal of Food Science 50, 1205-1207.

Shubhra, B., Swati, K., Singh, R.P., Savita, S., 2014. Studies on aloe juice supplemented kinnow nectar. Research Journal of Agriculture and Forestry Sciences 2320, 6063.

Sidhu, N., Arora, M., Alam, M.S., 2016. Biochemical, microbial stability and sensory evaluation of osmotically dehydrated kinnow peel candy and peel powder. International Journal of Science and Research 5, 1428-1436.

Singh, A.K., Meetei, N.T., Singh, B.K., Mandal, N., 2016a. Khasi mandarin: its importance, problems and prospects of cultivation in North-eastern Himalayan region. International Journal of Agriculture, Environment and Biotechnology 9, 573-592.

Singh, S.V., Jain, R., Gupta, A., 2016b. Adsorptive reduction of naringin from kinnow mandarin juice with non-ionic macroporous adsorbent resin. Indian Chemical Engineer 58, 136-156.

Singh, U., Wadhwani, A.M., Johri, B.M., 1983. Dictionary of economic plants in India, 2nd edn. Indian Council of Agricultural Research (ICAR), New Delhi, pp 51–53.

Singla, G., Singh, U., Sangwan, R.S., Panesar, P.S., Krishania, M., 2021. Comparative study of various processes used for removal of bitterness from kinnow pomace and kinnow pulp residue. Food Chemistry 335, 127643.

Singla, R., Rattanpal, H., Singh, G., 2018. Storage performance of hot water treated Kinnow fruits under ambient conditions. International Journal of Current Microbiology and Applied Sciences 7, 3775-3782.

Soares, N., Hotchkiss, J., 1998. Naringinase immobilization in packaging films for reducing naringin concentration in grapefruit juice. Journal of Food Science 63, 61-65.

Suri, S., Singh, A., Nema, P.K., Taneja, N.K., 2022. A comparative study on the debittering of Kinnow (Citrus reticulate L.) peels: microbial, chemical, and ultrasound-assisted microbial treatment. Fermentation 8, 389.

TANIZAWA, H., OHKAWA, Y., TAKINO, Y., MIYASE, T., UENO, A., KAGEYAMA, T., HARA, S., 1992. Studies on natural antioxidants in citrus species. I. Determination of antioxidative activities of citrus fruits. Chemical and Pharmaceutical Bulletin 40, 1940-1942.

Tanwar, B., Modgil, R., 2012. Flavonoids: Dietary occurrence and health benefits. Spatula Dd 2, 59-68.

Temple, N.J., 2000. Antioxidants and disease: more questions than answers. Nutrition Research 20, 449-459.

Tietel, Z., Lewinsohn, E., Fallik, E., Porat, R., 2012. Importance of storage temperatures in maintaining flavor and quality of mandarins. Postharvest Biology and Technology 64, 175-182.

TSEN, H.Y., YU, G.K., 1991. Limonin and naringin removal from grapefruit juice with naringinase entrapped in cellulose triacetate fibers. Journal of Food Science 56, 31-34.

Ullah, N., Qazi, I.M., Masroor, S., Ali, I., Khan, A., Khan, M., Gillani, A., 2015. Preservation of ready to serve blended carrot and kinnow (mandarin) drink by ginger extract. Journal of Food Processing & Technology 6, 1.

Wang, L., Wang, J., Fang, L., Zheng, Z., Zhi, D., Wang, S., Li, S., Ho, C.-T., Zhao, H., 2014. Anticancer activities of citrus peel polymethoxyflavones related to angiogenesis and others. BioMed Research International 2014, 453972.

Wei, M., Yang, Z., Li, P., Zhang, Y., Sse, W.C., 2007. Anti-osteoporosis activity of naringin in the retinoic acid-induced osteoporosis model. The American Journal of Chinese Medicine 35, 663-667.

Willett, W.C., 2002. Balancing life-style and genomics research for disease prevention. Science 296, 695-698.

Xu, M., Ran, L., Chen, N., Fan, X., Ren, D., Yi, L., 2019. Polarity-dependent extraction of flavonoids from citrus peel waste using a tailor-made deep eutectic solvent. Food Chemistry 297, 124970.

Yadav, A., Kumari, R., Yadav, A., Mishra, J., Srivatva, S., Prabha, S., 2016. Antioxidants and its functions in human body-A Review. Research in Environment and Life Sciences 9, 1328-1331.

Yao, L.H., Jiang, Y.-M., Shi, J., Tomas-Barberan, F., Datta, N., Singanusong, R., Chen, S., 2004. Flavonoids in food and their health benefits. Plant Foods for Human Nutrition 59, 113-122.

Yaqoob, M., Kaur, M., Aggarwal, P., Ahluwalia, P., 2020. Kinnow. Antioxidants in Fruits: Properties and Health Benefits, 417-433.

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2024-08-30

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Kinnow: Nutritionally Rich Functional Food for Value Addition (A. Zahra, T. B. Qaisrani, M. Ahmad, & T. Bilal , Trans.). (2024). Journal of Agriculture and Veterinary Science, 3(2), 355-369. https://doi.org/10.55627/agrivet.03.02.0361

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