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Updated: Oct 11, 2026

Analyzing Gene Expression from Marine Microbial Communities using Environmental Transcriptomics
Published on: February 18, 2009
Landscape transcriptomics reveals ecological constraints on fish under anthropogenic coastal change
Emma Gairin1, Saori Miura2, Zoé Chamot2
1Marine Eco-Evo-Devo Unit, Okinawa Institute of Science and Technology, Onna-son, Japan. emma.gairin@hotmail.fr.
Abstract:
Urban zones are rapidly expanding worldwide, exposing organisms to complex and multidimensional stressors. However, linking organismal responses to environmental change at ecologically relevant scales remains a major challenge. To investigate the constraints imposed on fish living in coastal urban environments, we apply a landscape-scale framework to identify molecular signatures associated with human activities. Using transcriptomes from a common coral reef fish, Chrysiptera cyanea, sampled across 18 coastal sites in Okinawa, Japan, we implement scalable analytical and visualisation tools and identify coordinated shifts in metabolic, immune, and inflammatory pathways. By integrating field data with a fasting-feeding experiment, we find that transcriptomes of adult fish from urbanised sites resemble those of well-fed experimental fish, suggesting that these areas provide an energy-rich diet while imposing chronic stress. Our findings reveal how anthropogenic activities reshape organismal resilience and demonstrate the power of landscape transcriptomics as a link between molecular signatures and ecological outcomes across changing environments.
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