PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 14, 2026Gels0 citationsOpen Access

A Bio-Based Composite Hydrogel Substrate for Indoor Soilless Dandelion Cultivation: Growth Performance and Polysaccharide Accumulation

View Full Paper
YGYong GuoZhengzhou UniversityJMJianxun MaJilin Agricultural UniversityYZYuhan ZhengJilin Agricultural University

Key Points

  • The study aims to evaluate the effectiveness of a multi-component hydrogel for improving dandelion growth and polysaccharide accumulation in soilless conditions.
  • Synthesis of a multi-component hydrogel using pectin, Kelcogel, and chitosan/Se
  • Comparison of germination rates and growth metrics against traditional hydroponics
  • Assessment of nutrient solubilization and organic acid accumulation in the rhizosphere
  • Cost-effectiveness analysis of the hydrogel synthesis and application
  • Germination percentage of dandelion on PKCH was 88.89%, significantly higher than traditional methods (p < 0.05)
  • Improved growth metrics: shoot length of 18.36 cm, root length of 9.28 cm, and main root diameter of 0.94 cm
  • Polysaccharide content reached 69.40%, indicating potential antioxidant and medicinal properties
  • Exogenous selenium enhanced photosynthetic efficiency and nutritional accumulation

Abstract

Sustainable agricultural techniques can ensure food security around the world. Hydrogel based soilless culture is an ecological and efficient alternative compared to conventional agriculture. Here, a multi-component hydrogel (pectin, Kelcogel, and chitosan/Se hydrogel, PKCH) was prepared by synthesizing natural biomolecules to cultivate dandelion for stimulate dandelion growth and improve nutritional value. The germination percentage of dandelion on PKCH (88.89%), was significantly higher than that in traditional hydroponics and pure Kelcogel (p < 0.05). Compared with hydroponics, the long-term dandelion cultivation experiments demonstrated that the PKCH cultivation mode enhanced root vitality, further increasing the growth and yield of dandelions (shoot length: 18.36 ± 0.30 cm, root length: 9.28 ± 0.21 cm, main root diameter: 0.94 ± 0.02 cm). The hydrogel substrate was associated with improved nutrient solubilization and sustained release, which may be linked to the accumulation of low-molecular-weight organic acids in the rhizosphere. Exogenous Se was effectively assimilated and transported to the above-ground parts of dandelion, which stimulated the photosynthetic efficiency and nutritional accumulation of dandelion. The polysaccharide content of dandelion reached 69.40 ± 0.13% (expressed as glucose-equivalent total sugars), which demonstrated the potential antioxidant properties and medicinal value. Technical economic analysis revealed the cost-effectiveness of PKCH synthesis and application. This study enriches the application of hydrogels in dandelion cultivation and provides an alternative approach for cultivating dandelion in soilless environments and medicinal crop production techniques.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc7fb39f7826a300d727https://doi.org/10.3390/gels12030235
Ask AI
Helpful
Bookmark
Share
View Full Paper