Triclosan toxicity in a model cyanobacterium (Anabaena flos-aquae) : Growth, photosynthesis and transcriptomic response
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
Author(s)
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Detail(s)
Original language | English |
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Pages (from-to) | 82-90 |
Journal / Publication | Journal of Environmental Sciences (China) |
Volume | 127 |
Online published | 6 Apr 2022 |
Publication status | Published - May 2023 |
Link(s)
Abstract
Exposure to triclosan (TCS) has been reported to reduce photosynthetic pigments, suppress photosynthesis, and inhibit growth in both prokaryotic and eukaryotic algae including Anabaena flos-aquae (a model cyanobacterium). In particular, cyanobacteria are more sensitive to TCS toxicity compared to eukaryotic algae possibly due to the structural similarity to bacteria (target organisms); however, whether TCS exerts its toxicity to cyanobacteria by targeting signaling pathways of fatty acid biosynthesis as in bacteria remains virtually unknown, particularly at environmental exposure levels. With the complete genome sequence of A. flos-aquae presented in this study, the transcriptomic alterations and potential toxic mechanisms in A. flos-aquae under TCS stress were revealed. The growth, pigments and photosynthetic activity of A. flos-aquae were markedly suppressed following a 7-day TCS exposure at 0.5 µg/L but not 0.1 µg/L (both concentrations applied are environmentally relevant). The transcriptomic sequencing analysis showed that signaling pathways, such as biofilm formation – Pseudomonas aeruginosa, two-component system, starch and sucrose metabolism, and photosynthesis were closely related to the TCS-induced growth inhibition in the 0.5 µg/L TCS treatment. Photosynthesis systems and potentially two-component system were identified to be sensitive targets of TCS toxicity in A. flos-aquae. The present study provides novel insights on TCS toxicity at the transcriptomic level in A. flos-aquae.
Research Area(s)
- Antimicrobial toxicity, Genome, Photosynthesis inhibition, Transcriptome, Two-component system
Citation Format(s)
Triclosan toxicity in a model cyanobacterium (Anabaena flos-aquae): Growth, photosynthesis and transcriptomic response. / Mo, Jiezhang; Han, Linrong; Lv, Runnan et al.
In: Journal of Environmental Sciences (China), Vol. 127, 05.2023, p. 82-90.
In: Journal of Environmental Sciences (China), Vol. 127, 05.2023, p. 82-90.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review