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Article

Impact of Soil Nutrients on Chemical Composition and Antioxidant Activities of Dysphania ambrosioides Essential Oil in Southern Ecuador

1
Facultad de Ciencias Químicas y de la Salud, Universidad Técnica de Machala, Km.5 1/2 Vía Machala Pasaje, Machala 070151, Ecuador
2
Facultad de Ciencias Pecuarias y Biológicas, Universidad Técnica Estatal de Quevedo, Quevedo 120550, Ecuador
3
Departamento de Química, Universidad Técnica Particular de Loja, Calle París s/n y Praga, Loja 110107, Ecuador
*
Author to whom correspondence should be addressed.
Plants 2026, 15(3), 373; https://doi.org/10.3390/plants15030373
Submission received: 10 December 2025 / Revised: 15 January 2026 / Accepted: 20 January 2026 / Published: 25 January 2026

Abstract

Dysphania ambrosioides is a widely distributed species with a traditional use in folk medicine, but it exhibits marked chemical variability that limits its standardization. This study is the first to characterize the essential oil (EO) of three Ecuadorian populations—Arenillas (ARE), Pasaje (PAS) and Piñas (PIN)—using gas chromatography–mass spectrometry/flame ionization detection (GC-MS/FID), and to correlate its composition with edaphic properties and antioxidant activity. Chemical profiles revealed three distinct chemotypes: ARE (α-terpinene 65.35%, o-cymene 24.83% and ascaridole 3.30%), PAS (α-terpinene 56.31%, o-cymene 10.09% and ascaridole 10.84%) and PIN (α-terpinene 56.89%, o-cymene 17.07% and ascaridole 7.60%). The EO yield was low (0.030–0.064% w/w), coinciding with acidic and nutrient-poor soils. On the other hand, PAS, with its neutral soil and high nitrogen, produced the highest number of oxygenated compounds. Only PAS exhibited strong ABTS radical-scavenging activity (SC50 = 37.99 ± 1.01 µg/mL). In contrast, ARE showed weak activity (SC50 = 424 ± 1.01 µg/mL), while PIN showed moderate activity (SC50 = 112.26 ± 1.01 µg/mL), which was correlated with its high total phenol content (298.48 mg EAG/L). The 2,2-diphenyl-1-picrylhydrazyl (DPPH) activity was low in all samples. Principal component analysis (PCA) confirmed clear separation of the chemotypes, which was linked to edaphic factors such as pH, heavy metals (Cu, Fe and Mn) and organic matter. These findings suggest that edaphic conditions may modulate the chemical composition and antioxidant activity of D. ambrosioides, indicating a potential approach for the sustainable selection of plant material.
Keywords: essential oil; edaphic; soil; Dysphania ambrosioides; PCA essential oil; edaphic; soil; Dysphania ambrosioides; PCA

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MDPI and ACS Style

Blacio, S.; Gadvay, K.; Rivas, K.; Guaman, A.; Parrales, J.; Calva, J. Impact of Soil Nutrients on Chemical Composition and Antioxidant Activities of Dysphania ambrosioides Essential Oil in Southern Ecuador. Plants 2026, 15, 373. https://doi.org/10.3390/plants15030373

AMA Style

Blacio S, Gadvay K, Rivas K, Guaman A, Parrales J, Calva J. Impact of Soil Nutrients on Chemical Composition and Antioxidant Activities of Dysphania ambrosioides Essential Oil in Southern Ecuador. Plants. 2026; 15(3):373. https://doi.org/10.3390/plants15030373

Chicago/Turabian Style

Blacio, Susana, Katty Gadvay, Karen Rivas, Ana Guaman, Julio Parrales, and James Calva. 2026. "Impact of Soil Nutrients on Chemical Composition and Antioxidant Activities of Dysphania ambrosioides Essential Oil in Southern Ecuador" Plants 15, no. 3: 373. https://doi.org/10.3390/plants15030373

APA Style

Blacio, S., Gadvay, K., Rivas, K., Guaman, A., Parrales, J., & Calva, J. (2026). Impact of Soil Nutrients on Chemical Composition and Antioxidant Activities of Dysphania ambrosioides Essential Oil in Southern Ecuador. Plants, 15(3), 373. https://doi.org/10.3390/plants15030373

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