Indonesian Journal of Biotechnology
Vol 31, No 2 (2026)

Triclosan phytoremediation by Glycine max and the rhizobacterium Ochrobactrum sp. MC35 under controlled hydroponic conditions

Sipahutar, Merry Krisdawati (Unknown)
Xuan, Nguyen Thi Kim (Unknown)
Duc, Ha Danh (Unknown)



Article Info

Publish Date
30 Jun 2026

Abstract

Triclosan, a common antimicrobial compound, persists in wastewater and sludge because conventional treatment systems do not completely remove it, leading to ecological and health risks. This study investigates the mechanisms of triclosan phytoremediation by Glycine max and its rhizobacterium Ochrobactrum sp. MC35 under controlled hydroponic conditions. A laboratory hydroponic experiment was conducted in which soybean seedlings were exposed to 50–200 µg L–1 TCS, with and without bacterial inoculation. TCS concentrations and metabolites were quantified using LC–MS/MS, while enzymatic activities, including peroxidase, glutathione-S-transferase, laccase and esterase, were measured spectrophotometrically. Degradation kinetics were evaluated using first-order models, and principal component analysis (PCA) was applied to assess correlations among the variables. The combined plant–microbe system achieved 85.4 ± 3.2% triclosan removal within 10 days, nearly twice that of plant-only treatments. Chemical analysis confirmed transient formation of methylated and hydroxylated intermediates, followed by complete degradation through sequential demethylation, hydroxylation and oxidative cleavage pathways. Kinetic modeling exhibited first-order behavior (R2 > 0.96) with an apparent rate constant of 0.312 d–1 in the inoculated system, indicating enhanced microbial degradation. Enzymatic assays showed significant increases in peroxidase, glutathione-S-transferase, laccase and esterase activities, supporting cooperative detoxification between plant and microbe. PCA indicated a close association between enzymatic activity and degradation efficiency, suggesting coordinated rhizospheric interactions. Overall, Glycine max not only absorbed triclosan, but also enhanced its microbial breakdown, likely through exudate-mediated enzyme induction. The findings provide mechanistic insight into bioaugmented phytoremediation and highlight its potential as a sustainable, nature-based strategy for removing persistent antimicrobial pollutants from aquatic environments.

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Journal Info

Abbrev

ijbiotech

Publisher

Subject

Biochemistry, Genetics & Molecular Biology Immunology & microbiology Materials Science & Nanotechnology

Description

The Indonesian Journal of Biotechnology (IJBiotech) is an open access, peer-reviewed, multidisciplinary journal dedicated to the publication of novel research in all aspects of biotechnology, with particular attention paid to the exploration and development of natural products derived from ...