Abstract
This study monitored changes in major carotenoids (lutein, ⍺-carotene, and β-carotene), free sugars (fructose, glucose, and sucrose), ascorbic acid, vitamin E, phytosterols (campesterol, stigmasterol, and β-sitosterol), fatty acid composition, total phenol content (TPC), total flavonoid content (TFC), total anthocyanin content, and antioxidant activities (AA); ferric-reducing antioxidant power (FRAP) and 2,2′-azino-bis (3-ethylbenzothiazoline-6sulfonic acid) [ABTS] assays, in the inner and outer root tissues of nine carrot genotypes with orange, white, and purple roots. The results showed a differential accumulation of bioactive compounds and antioxidant activities depending on root tissue and color. Carotenoids, free sugars, and total phytosterol contents were higher in genotypes with orange roots than in other genotypes. Ascorbic acid, TPC, TFC, total anthocyanin, and AA were highest in purple-colored carrots while vitamin E content was higher in white/purple carrots. Root color was highly related to the accumulation of individual carotenoids, vitamin E isomers, and total anthocyanin content most prominently among the analyzed bioactive compounds and AA. Free sugar and carotenoid contents were relatively higher in outer tissues than in inner tissues. Furthermore, ascorbic acid, TPC, TFC, and AA were statistically higher or similar in outer tissues when compared to inner tissues in all genotypes. In contrast, trends in vitamin E and phytosterol content were inconsistent between the inner and outer tissues, depending on the genotype. Although fatty acid composition was affected by both root color and tissue, the results were not significant. Thus, the phytochemical profile and content were highly dependent on root color and tissue in carrot genotypes. This may be useful in the food processing and pharmaceutical industries for the extraction of targeted bioactive compounds.
Funder
Rural Development Administration
Subject
Plant Science,Health Professions (miscellaneous),Health (social science),Microbiology,Food Science
Reference54 articles.
1. FAO (Food and Agriculture Organization) (2022, September 06). Agricultural Statistical Database for 2020. Available online: http://www.fao.org/faostat/en/#data/QCL.
2. Ahmad, T., Cawood, M., Iqbal, Q., Arino, A., Batool, A., Tariq, R.M.S., Azam, M., and Akhtar, S. (2019). Phytochemicals in Daucus carota and their health benefits-review article. Foods, 8.
3. The role of carotenoids in the prevention and treatment of cardiovascular disease-current state of knowledge;Kulczynski;J. Funct. Foods,2017
4. The effect of various nitrogen fertilization and foliar nutrition regimes on the concentrations of sugar, carotenoids and phenolic compounds in carrot (Daucus carota L.);Smolen;Sci. Hortic.,2009
5. Comparing carotene, anthocyanins, and terpenoid concentrations in selected carrot lines of different colors;Yoo;Hortic. Environ. Biotechnol.,2020