Modeling the metabolic profile of Mytilus edulis reveals molecular signatures linked to gonadal development, sex and environmental site

Author:

Kronberg Jaanika,Byrne Jonathan J.,Jansen Jeroen,Antczak Philipp,Hines Adam,Bignell John,Katsiadaki Ioanna,Viant Mark R.,Falciani Francesco

Abstract

AbstractThe monitoring of anthropogenic chemicals in the aquatic environment including their potential effects on aquatic organisms, is important for protecting life under water, a key sustainable development goal. In parallel with monitoring the concentrations of chemicals of concern, sentinel species are often used to investigate the biological effects of contaminants. Among these, bivalve molluscs such as mussels are filter-feeding and sessile, hence an excellent model system for measuring localized pollution. This study investigates the relationship between the metabolic state of the blue mussel (Mytilus edulis) and its physiology in different environments. We developed a computational model based on a reference site (relatively unpolluted) and integrated seasonal dynamics of metabolite relative concentrations with key physiological indicators and environmental parameters. The analysis of the model revealed that changes in metabolite levels during an annual cycle are influenced by water temperature and are linked to gonadal development. This work supports the importance of data-driven biology and its potential in environmental monitoring.

Funder

Biotechnology and Biological Sciences Research Council

NERC Environmental Bioinformatics Centre

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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