Related Experiment Video
Updated: Feb 2, 2026

An Efficient Clearing Protocol for the Study of Seed Development in Tomato Solanum lycopersicum L.
Published on: September 7, 2022
Effect of Microalgae Polysaccharides on Biochemical and Metabolomics Pathways Related to Plant Defense in Solanum
Rachidi Farid1,2, Chanda Mutale-Joan1,2, Benhima Redouane1
1Green Biotechnology Laboratory, Moroccan Foundation for Advanced Science, Innovation &Research (MASCIR), Rabat Design Center, Rue Mohamed Al Jazouli - Madinat Al Irfane, 10 100, Rabat, Morocco.
Abstract:
Microalgae are photosynthetic microorganisms that produce several bioactive molecules that have received considerable attention in scientific and industrial communities. Today, many plant biostimulants including seaweed extracts and polysaccharides are used in agriculture. However, microalgae have not been largely exploited in this field as a potential source of plant bio stimulants. This study investigated the biostimulatory effects of microalgae polysaccharides on different metabolomic and biochemical pathways related to plant defense. 0.2 mg mL-1 of crude polysaccharides extracted from four green microalgae strains was injected into tomato plants (Solanum lycopersicum). β-1,3-glucanase activity, lipid remodeling, phenylalanine ammonia lyase (PAL), Lipoxygenase (LOX), and antioxidant enzyme (APX, POD and CAT) activities were evaluated 48 h after treatment. Plants treated with crude polysaccharides extracted from. C. vulgaris and C. sorokiniana exhibited a significant increase in β-1,3-glucanase activity. Accordingly, C. sorokiniana crude polysaccharides had a significant stimulatory effect on PAL activity with a percentage increase of 188.73% compared to the control. GC/MS quantitative lipidomics analysis revealed that treatment with D. salina, C. sorokiniana, and C. reinhardtii crude polysaccharides increased PUFA content by 50.37%, 34.46%, and 33.37% respectively. Microalgae polysaccharides also enhanced stearic acid, palmitic acid, and VLCFA content, the optimal value of which increased by 45.50%, 32.83%, and 60.60% respectively under treatment with C. reinhardtii crude polysaccharides compared with the control. C. vulgaris and C. reinhardtii crude polysaccharides also exhibited higher APX and POD activity respectively. The present results therefore indicate the potentiality of microalgae crude polysaccharides as a promising renewable bio resource in the development plant bio stimulants.
Related Concept Videos
Biosynthesis of Polysaccharides
Plant Cells and Tissues
C4 Pathway and CAM
C4 Pathway
The C4 pathway is used by plants such as...
Plant Cell Wall
Key Elements for Plant Nutrition
Cellulose and Pectic Polysaccharides
As a cell matures, its cell wall specializes according to its type. For example, the...

