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Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering

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Correction to: Beverage Plant Research https://doi.org/10.48130/bpr-0026-0014, published online 26 May 2026.
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    Zhang J, Jin K, Zhou J, Zhao Y, Xin S, et al. 2026. Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering. Beverage Plant Research 6: e026 doi: 10.48130/bpr-0026-0029
    Zhang J, Jin K, Zhou J, Zhao Y, Xin S, et al. 2026. Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering. Beverage Plant Research 6: e026 doi: 10.48130/bpr-0026-0029

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CORRIGENDUM   Open Access    

Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering

Beverage Plant Research  6 Article number: e026  (2026)  |  Cite this article
Correction to: Beverage Plant Research https://doi.org/10.48130/bpr-0026-0014, published online 26 May 2026.
  • Following the publication of this article, the authors identified errors in the numerical values presented in Fig. 3 due to calculation mistakes. The original article has been corrected in the HTML and PDF versions.

    Figure 3. 

    Nonvolatile content in SWT under different light quality treatments.

    1. Correction to Figure 3

    The corrected Fig. 3 and its caption "Nonvolatile content in SWT under different light quality treatments" are shown below.

    2. Correction to the Abstract

    This sentence previously stated:

    "The results showed that RL (red light) significantly promoted the accumulation of theanine, reaching 27.6 mg/g, and reduced the ratio of tea polyphenols to amino acids, thereby enhancing the sweet and mellow taste of the tea."

    The corrected sentence appears below:

    "The results showed that RL (red light) significantly promoted the accumulation of theanine, reaching 10.4 mg/g, and reduced the ratio of tea polyphenols to amino acids, thereby enhancing the sweet and mellow taste of the tea."

    3. Correction to the "Analysis of the main biochemical components of SWT" section

    Correction (1):

    This sentence previously stated:

    "There was no significant difference in the contents of tea polyphenols and theanine under light quality treatment."

    The corrected sentence appears below:

    "There was no significant difference in the contents of tea polyphenols under light quality treatment."

    Correction (2):

    This sentence previously stated:

    "The contents of free amino acids were 24.6 and 22.4 mg/g, respectively. Under the YL treatment regime, the content of flavone glycosides was observed to reach a minimum value of 16.6 g/kg, whereas the content of soluble sugars attained a maximum level of 16%. Under RL treatment, theanine content peaked at 27.6 mg/g."

    The corrected sentence appears below:

    "The contents of free amino acids were 24.6 and 24.4 mg/g, respectively. Under the YL treatment regime, the content of flavone glycosides was observed to reach a minimum value of 6.7 mg/g, whereas the content of soluble sugars attained a maximum level of 16%. Under RL treatment, theanine content peaked at 10.4 mg/g."

    Correction (3):

    This sentence previously stated:

    "Under the FRL treatment regime, the content of flavone glycosides peaked at 19.4 mg/g. In contrast, the theanine and soluble sugar contents attained their minima, registering at 15.2 mg/g and 10.2%, respectively."

    The corrected sentence appears below:

    "Under the FRL treatment regime, the content of flavone glycosides peaked at 7.8 mg/g. In contrast, The contents of theanine and soluble sugar have decreased, being 5.3 mg/g and 13.0% respectively."

    The authors would like to apologize for the errors.

    • Copyright: © 2026 by the author(s). Published by Maximum Academic Press, Fayetteville, GA. This article is an open access article distributed under Creative Commons Attribution License (CC BY 4.0), visit https://creativecommons.org/licenses/by/4.0/.
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    Cite this article
    Zhang J, Jin K, Zhou J, Zhao Y, Xin S, et al. 2026. Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering. Beverage Plant Research 6: e026 doi: 10.48130/bpr-0026-0029
    Zhang J, Jin K, Zhou J, Zhao Y, Xin S, et al. 2026. Author Correction: Research on the influence of different light qualities on the main volatile components of Sangzhi white tea during withering. Beverage Plant Research 6: e026 doi: 10.48130/bpr-0026-0029
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