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Updated: Jan 15, 2026

Analyzing Gene Expression from Marine Microbial Communities using Environmental Transcriptomics
Published on: February 18, 2009
Epitranscriptomic and expression profiling in Riccia fluitans across diverse environmental conditions
Mateusz Maździarz1, Katarzyna Krawczyk1, Joanna Szablińska-Piernik1
1Department of Botany and Evolutionary Ecology, University of Warmia and Mazury in Olsztyn, Plac Łódzki 1, Olsztyn 10-719, Poland.
RNA modifications like N6-methyladenosine (m6A), 5-methylcytosine (m5C), and pseudouridine (Ψ) are key for plant adaptation. This study reveals their dynamic roles in the amphibious plant *Riccia fluitans* adapting to different environments.
Area of Science:
- Plant biology
- Molecular biology
- Genomics
Background:
- Post-transcriptional RNA modifications regulate crucial plant processes.
- The roles of N6-methyladenosine (m6A), 5-methylcytosine (m5C), and pseudouridine (Ψ) in plant stress responses are not well understood.
- Investigating these modifications offers insights into plant adaptation.
Purpose of the Study:
- To explore the epitranscriptomic landscape of m6A, m5C, and Ψ in the amphibious plant *Riccia fluitans*.
- To analyze how these RNA modifications change in response to aquatic versus terrestrial environments.
- To understand the link between RNA modifications, gene expression, and environmental adaptation.
Main Methods:
- Direct RNA sequencing (DRS) was used to profile native RNA modifications.
- Transcriptome-wide expression profiling was performed.
- Metabolomic profiling analyzed shifts in soluble sugars and metabolic pathways.
Main Results:
- The study detected Ψ, m5C, and m6A modifications in *R. fluitans*.
- Environment-dependent expression profiles and RNA modifications were observed.
- Metabolomic data showed shifts in soluble sugars correlating with starch metabolism gene expression and epitranscriptomic changes.
Conclusions:
- Dynamic regulation of RNA modifications is vital for environmental adaptation in early land plants.
- These findings provide new insights into phenotypic plasticity and the evolution of terrestrial life.
- RNA modifications represent a critical, underappreciated layer of gene regulation in plants facing environmental change.
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