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Influence of the Techniques and Degrees of Ripeness on the Nutritional Qualities and Carotenoid Profiles of Tomatoes (Solanum lycopersicum). Cover

Influence of the Techniques and Degrees of Ripeness on the Nutritional Qualities and Carotenoid Profiles of Tomatoes (Solanum lycopersicum).

Open Access
|Jul 2019

References

  1. Abdul-Hammed, M., Bello, I.A., Oladoye, S.O., 2013, Simultaneous spectrophotometric determination of lycopene and beta-carotene concentrations in carotenoid mixtures of the extract of tomatoes, papaya and orange juice. Pakistan Journal of Scientific and Industrial Research Series B: Biological Sciences, 56 (2): 90-97.10.52763/PJSIR.BIOL.SCI.56.2.2013.90.97
  2. Abdul-Hammed, M., Bello, I.A., Olajire, A.A., 2009, Comparison of biochemical and physiological properties of Nigerian tomato fruits ripened under different conditions. African Journal of Food, Agriculture, Nutrition and Development, 9 (9): 1859-1877.10.18697/ajfand.30.9035
  3. Abdul-Hammed, M., Ibrahim, A.O., Kosoko, A.R., 2012, Impact of ripening techniques on the biochemical and physiological changes in tomatoes (3-Lobes and Big-Local cultivars). Australian Journal of Basic and Applied Sciences, 6 (9): 17-24.
  4. Abdulnabi, A.A., Emhemed, A.H., Hussein, G.D., Peter, A.B., 1997, Determination of antioxidant vitamins in tomatoes. Food Chemistry, 60 (2): 207-212.10.1016/S0308-8146(96)00321-4
  5. Amiri-Rigi, A., Abbasi, S., 2016, Microemulsion-based lycopene extraction: Effect of surfactants, co-surfactants and pretreatments. Food Chemistry, 197 (Part A): 1002-1007.10.1016/j.foodchem.2015.11.077
  6. Ansari, M.S., Gupta, N.P., 2004, Lycopene: a novel drug therapy in hormone refractory metastatic prostate cancer. Urologic Oncology: Seminars and Original Investigations, 22 (5): 415-420.10.1016/S1078-1439(04)00122-X
  7. Anthon, G.E., LeStrange, M., Barrett, D.M., 2011, Changes in pH, acids, sugars and other quality parameters during extended vine holding of ripe processing tomatoes. Journal of the Science of Food and Agriculture, 91 (7): 1175-1181.10.1002/jsfa.431221384370
  8. Association of Official Analytical Chemists, AOAC, 2005, Official Methods of Analysis. 18th Ed. Arlington, Virginia: Association of Official Analytical Chemists.
  9. Baranska, M., Schu, W., Schulz, H., 2006, Determination of lycopene and β-carotene content in tomato fruits and related products: Comparison of FT-Raman, ATR-IR, and NIR Spectroscopy. Analytical Chemistry, 78 (24): 8456-846110.1021/ac061220j17165839
  10. Burton-Freeman, B., Reimers, K.J., 2011, Tomato consumption and health: Emerging benefits. American Journal of Lifestyle Medicine, 5 (2): 182-191.10.1177/1559827610387488
  11. Cohen, S., Itkin, M., Yeselson, Y., Tzuri, G., Portnoy, V., Harel-Baja, R., Lev, S., Sa'ar, U., Davidovitz-Rikanati, R., Baranes, N., Bar, E., Wolf, D., Petreikov, M., Shen, S., Ben-Dor, S., Rogachev, I., Aharoni, A., Ast, I., Schuldiner, M. et al., 2014, The PH gene determines fruit acidity and contributes to the evolution of sweet melons. Nature Communications, 5: 4026.10.1038/ncomms502624898284
  12. da Silva, D.J.H., Abreu, F.B., Caliman, F.R.B., Antonio, A.C., Patel, V.B., 2008, In V.R. Preedy, & Watson, R.R. (Eds). Tomatoes and tomato products - Nutritional, medicinal and therapeutic properties: Tomatoes - Origin, Cultivation Techniques and Germplasm Resources (1st ed, pp. 3-25). New Hampshire: Science Publishers, 643p.10.1201/9781439843390-c1
  13. Davies, J.N., Kempton, R.J., 1975, Changes in the individual sugars of tomato fruit during ripening. Journal of the Science of Food and Agriculture, 26: 1103-1110.10.1002/jsfa.2740260808
  14. Devasagayam, T.P.A., Wener, T., Ippendorf, H., Martin, H.D., Sies, H., 1992, Synthetic carotenoids, novel polyene, polyketones and new absorbing isomers as efficient quencher of singlet molecular oxygen. Photochemistry and Photobiology, 55 (4): 511-514.10.1111/j.1751-1097.1992.tb04271.x1620727
  15. Doris, M., Gosselin, A., Papadopoulos, A.P., 2001, In J. Janick editor, Horticultural Reviews: Greenhouse Tomato Fruit Quality (Volume 26, pp 239-319). Hoboken, New Jersey: Wiley, 368p.10.1002/9780470650806.ch5
  16. Fawole, A., Opara, U.L., Theron, K.I., 2012, Chemical and phytochemcial properties and antioxidant activities of pomegranate cultivars grown in South Africa. Food and Bioprocess Technology, 5 (7): 2934-2940.10.1007/s11947-011-0533-7
  17. Fish, W.W., 2012, Refinements of the attending equations for several spectral methods that provide improved quantification of β-carotene and/or lycopene in selected foods. Postharvest Biology and Technology, 66, 16-22.10.1016/j.postharvbio.2011.08.007
  18. Garande, V.K., Patil, R.S., 2014, Orange fruited tomato cultivars : Rich source of beta-carotene. Journal of Horticulture, 1 (2): 1000108
  19. Ibrahim, M., Helali, M.O.H., Alam, A.K.M.S., Talukder, D., Akhter, S., 2017, Physiological and biochemical characteristics of different tomato grown in Rajshahi region of Bangladesh. Bangladesh Journal of Scientific and Industrial Research, 52 (3): 195-200.10.3329/bjsir.v52i3.34155
  20. Javanmardi, J., Kubota, C., 2006, Variation of lycopene, antioxidant activity, total soluble solids and weight loss of tomato during postharvest storage. Postharvest Biology and Technology, 41 (2): 151-155.10.1016/j.postharvbio.2006.03.008
  21. Johnson, R.R., Balwani, T.L., Johnson, L.J., Mcclure, K.E., Dehority, B.A., 1966, Corn plant maturity. II. Effect on in vitro cellulose digestibility and soluble carbohydrate content. Journal of Animal Science, 25 (3): 612-623.10.2527/jas1966.253617x
  22. Kader, A.A., 1978, Influence of pre-harvest and postharvest environment on nutritional composition of fruits and vegetables. In: Proceeding of the 1st International Symposium of Horticulture & Human Health. ASHS Symposium Series. pp. 18-32.
  23. Kahlaoui, B., Hachicha, M., Misle, E., Fidalgo, F., Teixeira, J., 2018, Physiological and biochemical responses to the exogenous application of proline of tomato plants irrigated with saline water. Journal of the Saudi Society of Agricultural Sciences, 17 (1): 17-23.10.1016/j.jssas.2015.12.002
  24. Kaur, D., Sharma, R., Wani, A.A., Singh, B., Sogi, D.S., 2006, Physicochemical changes in seven tomato (Lycopersicon esculentum) cultivars during ripening. International Journal of Food Properties, 9 (4): 747-751.10.1080/10942910600575716
  25. Kidmose, U., Edelenbos, M., Christensen, L.P., Hegelund, E., 2005, Chromatographic determination of changes in pigments in spinach (Spinacia oleracea L.) during processing. Journal of Chromatographic Science, 43 (9): 466-472.10.1093/chromsci/43.9.466
  26. Opara, U.L., Al-Ani, M., 2010, Antioxidant contents of prepacked freshcut versus whole fruit and vegetables. British Food Journal, 112 (8): 797-810.10.1108/00070701011067424
  27. Patrick, L., 2000, Beta-carotene: the controversy continues. Alternative Medicine Review, 5 (6): 530-545.
  28. Perkins-Veazie, P., Collins, J.K., Pair, S.D., Roberts, W., 2001, Lycopene content differs among red-fleshed watermelon cultivars. Journal of the Science of Food and Agriculture, 81 (10): 983-987.10.1002/jsfa.880
  29. Raffo, A., Leonardi, C., Fogliano, V., Ambrosino, P., Salucci, M., Gennaro, L., Bugianesi, R., Giuffrida, F., Quaglia, G.J., 2002, Nutritional value of cherry tomatoes (Lycopersicon esculentum Cv. Naomi F1) harvested at different ripening stages. Journal of Agricultural and Food Chemistry, 50 (22): 6550-6556.10.1021/jf020315t
  30. Raiola, A., Rigano, M.M., Calafiore, R., Frusciante, L., Barone, A., 2014, Enhancing the health-promoting effects of tomato fruit for biofortified food. Mediators of Inflammation, 2014; ID 139873 (1-16).10.1155/2014/139873
  31. Rao, A.V., Zeeshan, W., Sanjiv, A., 1998, Lycopene content of tomatoes and tomato products and their contribution to dietary lycopene. Food Research International, 31 (10): 737-741.10.1016/S0963-9969(99)00053-8
  32. Shankara, N., Joep, VanLidt, J., Marjade, G., Martin, H., Barbara, V., 2005, Cultivation production, processing and marketing of tomato. Wageningen, The Netherlands: Agromisa Foundation, 92p.
  33. Slimestad, R., Verheul, M., 2009, Review of flavonoids and other phenolics from fruits of different tomato (Lycopersicon esculentum Mill) cultivars. Journal of the Science of Food and Agriculture, 89 (8): 1255-1270.10.1002/jsfa.3605
  34. Stahl, W., Sies, H.. 2003, Antioxidant activity of carotenoids. Molecular Aspects of Medicine, 24 (6): 345-351.10.1016/S0098-2997(03)00030-X
  35. Suárez, M.H., Rodríguez-Rodríguez, E.M., Romero, C.D., 2008, Chemical composition of tomato (Lycopersicon esculentum) from Tenerife, the Canary Islands. Food Chemistry, 106 (3): 1046-1056.10.1016/j.foodchem.2007.07.025
  36. Wang, X.D., Russell, R.M., 1999, Procarcinogenic and anticarcinogenic effects of beta-carotene, Nutrition Reviews, 57 (9): 263-272.10.1111/j.1753-4887.1999.tb01809.x10568335
  37. Yelle, S., Hewitt, J.D., Robinson, N.L., Damon, S., Bennett, A.B., 1988, Sink metabolism in tomato fruit: III. Analysis of carbohydrate assimilation in a wild species, Plant Physiology, 87 (3): 737-740.10.1104/pp.87.3.737105483016666217
Language: English
Page range: 48 - 55
Submitted on: Feb 24, 2019
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Accepted on: May 22, 2019
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Published on: Jul 20, 2019
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Asiata Omotayo Ibrahim, Misbaudeen Abdul-Hammed, Samuel Adewale Adegboyega, Monsurat Olajide, Akeem Abefe Aliyu, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.