Essential Oils of Thymus Species Against Phytophthora Species: A Structured Review and Novel In Vitro Evaluations
Date Issued
May 28, 2026
Type
article
Volume
15
Issue
6
ISSN
2076-0817
Journal
Abstract
Phytophthora species are among the most destructive plant pathogens worldwide, causing
severe losses in agricultural, forest, and natural ecosystems. In recent years, the management
of Phytophthora diseases has increasingly shifted toward eco-sustainable strategies,
with growing interest in plant-derived extracts, particularly essential oils, as low-risk alternatives
to synthetic fungicides. In this study, a structured review was combined with
new in vitro assays to assess the antifungal activity of essential oils from Thymus vulgaris
(TV-EO) and T. serpyllum (TS-EO) against P. cinnamomi, P. drechsleri, P. cactorum, P. citrophthora,
P. nicotianae, P. palmivora, and P. infestans. Literature searches were conducted in April
2025 using theWeb of Science and Scopus databases, following PRISMA guidelines, with
the search term “Thymus” or “Thyme” and “Phytophthora”. Twenty studies included in
the review demonstrated that the activity of Thymus essential oils against Phytophthora
species was highly variable and shaped by chemotype, Thymus species, pathogen, and
experimental setup. Additional in vitro assays further confirmed a clear dose-dependent
inhibitory effect for both TV-EO and TS-EO. TS-EO consistently exhibited stronger activity
than TV-EO, likely reflecting its carvacrol-rich chemotype, while thymol-based TV-EO
showed lower but still significant inhibition depending on the pathogen species. Overall,
these results highlight the potential of Thymus essential oils as eco-friendly tools for the
management of Phytophthora diseases. However, the strong dependence on chemotype,
pathogen species, and assay conditions underscores the need for standardized testing,
detailed chemical characterization, and in vivo validation.
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Description
Phytophthora species are among the most destructive plant pathogens worldwide, causing
severe losses in agricultural, forest, and natural ecosystems. In recent years, the management
of Phytophthora diseases has increasingly shifted toward eco-sustainable strategies,
with growing interest in plant-derived extracts, particularly essential oils, as low-risk alternatives
to synthetic fungicides. In this study, a structured review was combined with
new in vitro assays to assess the antifungal activity of essential oils from Thymus vulgaris
(TV-EO) and T. serpyllum (TS-EO) against P. cinnamomi, P. drechsleri, P. cactorum, P. citrophthora,
P. nicotianae, P. palmivora, and P. infestans. Literature searches were conducted in April
2025 using theWeb of Science and Scopus databases, following PRISMA guidelines, with
the search term “Thymus” or “Thyme” and “Phytophthora”. Twenty studies included in
the review demonstrated that the activity of Thymus essential oils against Phytophthora
species was highly variable and shaped by chemotype, Thymus species, pathogen, and
experimental setup. Additional in vitro assays further confirmed a clear dose-dependent
inhibitory effect for both TV-EO and TS-EO. TS-EO consistently exhibited stronger activity
than TV-EO, likely reflecting its carvacrol-rich chemotype, while thymol-based TV-EO
showed lower but still significant inhibition depending on the pathogen species. Overall,
these results highlight the potential of Thymus essential oils as eco-friendly tools for the
management of Phytophthora diseases. However, the strong dependence on chemotype,
pathogen species, and assay conditions underscores the need for standardized testing,
detailed chemical characterization, and in vivo validation.
Size
3.79 MB
Format
Adobe PDF
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