4.7 Article

Postharvest UV-A radiation affects flavonoid content, composition, and bioactivity of Scutellaria baicalensis root

期刊

POSTHARVEST BIOLOGY AND TECHNOLOGY
卷 189, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.postharvbio.2022.111933

关键词

Scutellaria baicalensis; Postharvest; UV-A; flavonoid; Bioactivity

资金

  1. Fundamental Research Funds for the Central Universities [2572020AW25]
  2. Heilongjiang Touyan Inno-vation Team Program for Forest Ecology and Conservation

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This study investigated the effects of postharvest UV-A radiation on the flavonoid content, composition, and bioactivity in Scuteilaria baicalensis roots. The results showed that postharvest UV-A radiation increased the total flavonoid content in the roots and led to changes in flavonoid composition. Furthermore, UV-A radiation enhanced the antioxidant and antibacterial activities of the root extracts.
Ultraviolet A (UV-A) radiation is the main component of solar radiation and can elicit a wide range of biochemical responses in plants. In this study, the effects of UV-A radiation on the flavonoid content, composition, and bioactivity in postharvest Scuteilaria baicalensis roots were investigated. The total flavonoid content in S. baicalensis roots under postharvest UV-A radiation increased in a time-dependent manner and reached its maximum value (183.64 g kg(-1)) on the fifth day. Compared with the control group, the contents of four main flavonoids-baicalin, baicalein, wogonoside, and wogonin increased by 1.68 times, 3.00 times, 2.07 times, and 1.57 times, respectively; and new chemicals including pectolinarigenin, puerarin, isokaempferide, and jaceosidin were detected after 5 d of UV-A radiation. In addition, extracts of S. baicalensis roots exposed to postharvest UV-A radiation showed stronger antioxidant and antibacterial activities than control root extracts. Further correlation analysis revealed that baicalin and baicalein contents in the roots of S. baicalensis after postharvest UV-A radiation were positively correlated with antioxidant activity, while the main flavonoids showed different correlations with various bacteria. These results suggest that the appropriate duration of postharvest UV-A radiation is an effective way to enhance bioactive compound contents and their bioactivities in S. baicalensis mots.

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