BMC Plant Biology· 2026Q1
Exogenous glycine betaine enhances drought tolerance and medicinal quality in Glycyrrhiza uralensis seedlings
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- Q1SCImago
- 2026year
Short summary
A 40 mmol L−1 application of exogenous glycine betaine (GB) significantly improved drought tolerance and medicinal compound content in Glycyrrhiza uralensis seedlings, increasing plant height and root traits by up to 91% and liquiritin, glycyrrhizic acid, and total flavonoids by up to 71%, 90%, and 63%, respectively.
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Key points
- A 40 mmol L−1 dose of glycine betaine (GB) was most effective in mitigating drought stress in Glycyrrhiza uralensis seedlings.
- GB treatment increased plant height and root traits by 49–91% and reduced oxidative damage markers by up to 57%.
- Antioxidant enzyme activities (SOD, CAT) increased dramatically, by up to 400% and 608%, respectively.
- Medicinal compound content rose significantly, with liquiritin, glycyrrhizic acid, and total flavonoids increasing by up to 71%, 90%, and 63%.
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Abstract
Abstract Background Drought stress constrains the growth and medicinal quality of Glycyrrhiza uralensis , but the concentration-dependent physiological basis of exogenous glycine betaine (GB)-mediated stress alleviation remains incompletely understood. Methods Seedlings were grown in a controlled pot experiment with one 45% maximum moisture capacity (MMC) reference treatment and five 35% MMC water-deficit treatments receiving 0, 20, 40, 60, or 80 mmol L − 1 GB. Growth and root morphology, gas exchange, chlorophyll fluorescence, osmotic-regulation-related metabolites, oxidative damage, antioxidant enzyme activities, and major root medicinal compounds were quantified. Results Exogenous GB alleviated water-deficit-induced growth inhibition and oxidative injury, with the strongest overall response occurring at 40 mmol L − 1 . At this concentration, plant height and root morphological traits increased by 49–91%, whereas H 2 O 2 content, MDA content, and relative electrical conductivity decreased by 57%, 30%, and 44%, respectively, compared with water-deficit-stressed plants without GB. SOD and CAT activities increased by up to 400% and 608%, respectively. GB also improved photosynthetic performance and osmotic-regulation-related responses. Across GB treatments, the maximum increases in liquiritin, glycyrrhizic acid, and total flavonoid contents were 71%, 90%, and 63%, respectively. Exploratory PLS-SEM further indicated coordinated associations among oxidative injury, osmotic and antioxidant responses, photosynthetic performance, growth, and medicinal quality. Conclusions Exogenous GB, particularly 40 mmol L − 1 under the present pot conditions, was associated with coordinated improvements in redox homeostasis, osmotic-regulation-related responses, and photosynthetic performance, together with enhanced growth and medicinal-compound accumulation. These findings identify 40 mmol L − 1 as a candidate concentration within the tested range and provide a physiological basis for field validation in water-limited licorice production.
The authors' abstract, as published at the source. BMC Plant Biology, 2026 · DOI ↗
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Field: Pharmacology (Pharmacology, Toxicology and Pharmaceutics)
PharmacologyPharmacology, Toxicology and Pharmaceutics