ArticleBMC plant biology2025
Agro-morphological characterization and assessment of metabolic profiling and anticancer activities in various tribulus (Tribulus terrestris L.) populations.
Article in BMC plant biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed.
- Comparative analysis of phytochemical traits, proximate composition, and metabolite diversity in Nigella sativa L. genotypes from India.Scientific reports · 2026Article
- Agro-morphological and phytochemical diversity among Alcea Kurdica populations using multivariate analyses.Scientific reports · 2026Article
- Variability in lutein and zeaxanthin content, fatty acid and phytosterols profiles, and genetic parameters of some Tagetes spp. cultivars.BMC plant biology · 2026Article
- Processing methods and mechanisms for saponin-rich traditional Chinese medicines: a review.Chinese medicine · 2025Review
- Evaluation of nutritional and antioxidant properties of almond cultivars: a comprehensive analysis for health and industry applications.BMC plant biology · 2025Article
- Evaluation of performance, essential oil composition, and genetic parameters of Grammosciadium platycarpum populations toward developing high-linalool industrial cultivars.Scientific reports · 2025Article
- Characterization of Turkish mulberry genetic resources based on antioxidant capacity, biochemical composition, nutrient content, and morphological traits of leaves.Scientific reports · 2025Article
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Abstract
Tribulus terrestris L. from the family of Zygophyllaceae, which is rich in saponin compounds, especially diosgenin, has various biological properties, such as anti-inflammation, anti-Alzheimer, anti-obesity, anti-diabetes, anti-leukemia, and anti-cancer activities, due to these compounds. This research aimed to study the diversity of agro-morphological and phytochemical traits and anti-proliferative activity against human prostate cancer cells (PC3) of T. terrestris collected from 24 geographical regions in Iran and to select the superior populations for future domestication and breeding projects. The highest coefficient of variations was related to the fruit dry weight (104.77%), shoot dry weight (104.62%), and leaf dry weight (99.83%). Maximum plant height (113.96 cm), leaf length (49.39 mm), leaf width (23.48 mm), fruit diameter (11.42 mm), and fruit dry weight (34.11 g/plant) were recorded in SBU population. Gallic acid, 3.4dhb, rutin, salicylic acid, quercetin, kaempferol, apigenin, chlorogenic acid, caffeic acid, p-coumarin, ferulic acid, and rosmarinic acid were identified as the main phenolic compounds by HPLC. The highest total saponin content was observed in the RAF population (9.46 µg OCE/g DW) and the lowest in the KER population (4.75 µg OCE/g DW). The minimum (0.65 mg/g DW) and maximum (7.49 mg/g DW) diosgenin content was observed in KHA and PAN populations, respectively. The results of the MTT assay demonstrated the significant anti-proliferative activity of the T. terrestris extracts against the PC3 cancer cell line. IC50 calculated for the T. terrestris extracts in the 24-h treatment was from 15.02 to 27.11 µg/ml, implying that all samples had considerable cytotoxicity activity against the PC3 cells. The diversity observed among the T. terrestris populations in the studied traits shows its high potential for selecting and using the best populations in domestication, breeding, and cultivation projects.
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