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  5. Exploring the molecular landscape of environmental responses in the Antarctic plant Colobanthus quitensis: insights from metatranscriptomic analysis

Exploring the molecular landscape of environmental responses in the Antarctic plant Colobanthus quitensis: insights from metatranscriptomic analysis

Author(s)
Bizzarri, Elisabetta  
Proietti, Silvia  
Falconieri, Gaia Salvatore
Caruso, Carla  
Bertini, Laura  
Date Issued
2026
Type
article
Volume
17
Issue
1774223
DOI
https://doi.org/10.3389/fpls.2026.1774223
Journal
FRONTIERS IN PLANT SCIENCE  
Abstract
Introduction: The harsh environmental conditions of Antarctica significantly influence plant responses, impacting both defence mechanisms and developmental processes. Moreover, plant-associated microbial communities further modulate physiological functions, creating a complex network of interactions. This study aimed to investigate how local environmental conditions and plant-associated microbiota shape the transcriptomic landscape of the Antarctic plant Colobanthus quitensis. Materials and methods: A comparative metatranscriptomic analysis was conducted on plants collected from three sites spanning a coastal-to-inland gradient of increasing climatic severity to investigate both the functional roles of differentially expressed plant genes and taxonomic profiling of the associated microbial community. In addition, the content of photosynthetic and protective pigments was quantified biochemically to assess whether environmental conditions influence the photosynthetic pathway. Results and discussion: The results suggested that Site 2 (Puchalski Station) represents a particularly favourable microenvironment that optimises the physiological performance of C. quitensis, supporting enhanced homeostasis and the activation of multiple stress-response strategies. Furthermore, distinct variations in microbial community composition were observed across the sites, underscoring the interplay between local environment and plant-associated microbiota. Conclusions: These findings highlight the sensitivity of C. quitensis to minor environmental changes and suggest that its associated microbiome could serve as an early-warning system for ecological change in Antarctica.
Subjects

Colobanthus quitensis...

Handle
http://hdl.handle.net/2067/54579
Related items
Metrics
Project(s)
PNRA_18_00147

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