Affiliation:
1. Federal State Budgetary Scientific Institution “Federal Scientific Vegetable Center”
Abstract
Relevance. When creating tomato varieties and hybrids, much attention is paid not only to the commercial component (yield, appearance and uniform ripening), but also to the taste qualities of the products. Salad tomato varieties with yellow, tangerine, and pink fruits are increasingly in demand. As a rule, these fruits do not store for a long time, so it is necessary to increase their storability and transportability. Fruits of this group of tomatoes have high antioxidant activity, which is due not only to the significant content of water-soluble antioxidants (such as ascorbic acid), but also carotenoids. The preservation of fruit largely depends on the dry matter content.The aim of investigation is to study biochemical parameters of tangerine tomatoes fruits under different ripening conditions.Materials and methods. Plants were grown in the greenhouse of Federal Scientific Vegetable Center. Biochemical characteristics of tomato fruits were studied during harvesting and after laying for storage in the milky ripeness phase according to the following indicators: dry matter, ascorbic acid, total content of water-soluble antioxidants, titratable acidity, monosaccharides, polyphenols and carotenoids.Results. The percentage of dry matter in tangerine tomato fruits does not change during storage, even increases slightly. The dry matter content of fruits from the open field is slightly higher than that of fruits from the greenhouse. The content of sugars and ascorbic acid in fruits with tangerine fruits after laying for ripening decreases slightly. However, the content of these compounds is higher in mature fruits immediately after picking than in fruits after ripening. The total content of antioxidants during ripening decreases, though not significantly (in 1.1-1.7 times).
Publisher
FSBSI All-Russian Scientfic Research Institute of Vegetable Breeding and Seed Production
Subject
General Earth and Planetary Sciences
Reference40 articles.
1. Surikhina T.N., Meshcheryakova R.A., Telegina G.A. Features of vegetable production in the context of the COVID-19 pandemic. Potatoes and vegetables. 2021;(9):22-26. doi.org/10/25630/PAV/2021/83/31/003 (in Russ.)
2. GOST 8756.1-2017 Processed fruits, vegetables and mushrooms. Methods for determining organoleptic indicators, mass fraction of constituents, net weight or volume. M. Standartinform. 2019. 12 p. (in Russ.)
3. The Tomato Genome Consortium. The tomato genome sequences provides insights into fleshy fruit evolution. Nature. 2012;(485):635-641. https://doi.org/10.1038/nature11119
4. Powell A.L.T., Nguyen C.V., Hill T., Cheng K.L.L., Figueroa-Balderas R., Aktas H., Ashrafi H., Pons C., Fernández-Muñoz R., Vicente A., LopezBaltazar J., Barry C.S., Liu Y., Chetelat R., Granell A., Van Deynze A., Giovannoni J.J., Bennett A.B. Uniform ripening Encodes a Golden 2-like Transcription Factor Regulating Tomato Fruit Chloroplast Development. Science. 2012;(336):1711–1715.
5. Tieman D., Zhu G., Resende M.F.R. Jr., Lin T., Nguyen C., Bies D., Rambla J.L., Beltran K., Taylor M., Zhang B., Ikeda H., Liu Z., Fisher J., Zemach I., Monforte A., Zamir D., Granell A., Kirst M., Huang S., Klee H. A chemical genetic roadmap to improved tomato flavor. Science. 2017;(355):391–394. https://doi.org/10.1126/science.aal1556.
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