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Transcriptomic and Functional Analyses of Two Cadmium Hyper-Enriched Duckweed Strains Reveal Putative Cadmium Tolerance Mechanisms

International Journal of Molecular Sciences 2023 14 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Li Zhu, Xiao Yang, Guili Yang, Xiao Yang, Guili Yang, Guili Yang, Lei Huang, Li Zhu, Li Zhu, Liao Hai-min, Liao Hai-min, Li Zhu, Xiao Yang, Ai-Juan Tan, Ai-Juan Tan Ai-Juan Tan, Ai-Juan Tan Ai-Juan Tan Ai-Juan Tan, Xiao Yang, Li Zhu, Li Zhu, Li Zhu, Liao Hai-min, Li Zhu, Xiao Yang, Ai-Juan Tan Li Zhu, Li Zhu, Xiao Yang, Ai-Juan Tan, Xiao Yang, Li Zhu, Xiao Yang, Liao Hai-min, Guili Yang, Kang Mao, Kang Mao, Li Zhu, Z. L. Liu, Z. L. Liu, He-Yan Geng, He-Yan Geng, Qin Cao, Qin Cao, Ai-Juan Tan, Ai-Juan Tan

Summary

Not directly relevant to microplastics — this study uses transcriptomics to investigate how duckweed tolerates and accumulates cadmium, exploring potential mechanisms for heavy-metal phytoremediation.

Cadmium (Cd) is one of the most toxic metals in the environment and exerts deleterious effects on plant growth and production. Duckweed has been reported as a promising candidate for Cd phytoremediation. In this study, the growth, Cd enrichment, and antioxidant enzyme activity of duckweed were investigated. We found that both high-Cd-tolerance duckweed (HCD) and low-Cd-tolerance duckweed (LCD) strains exposed to Cd were hyper-enriched with Cd. To further explore the underlying molecular mechanisms, a genome-wide transcriptome analysis was performed. The results showed that the growth rate, chlorophyll content, and antioxidant enzyme activities of duckweed were significantly affected by Cd stress and differed between the two strains. In the genome-wide transcriptome analysis, the RNA-seq library generated 544,347,670 clean reads, and 1608 and 2045 differentially expressed genes were identified between HCD and LCD, respectively. The antioxidant system was significantly expressed during ribosomal biosynthesis in HCD but not in LCD. Fatty acid metabolism and ethanol production were significantly increased in LCD. Alpha-linolenic acid metabolism likely plays an important role in Cd detoxification in duckweed. These findings contribute to the understanding of Cd tolerance mechanisms in hyperaccumulator plants and lay the foundation for future phytoremediation studies.

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