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Regimbeau A., Budinich M., Larhlimi A., Karlusich J. J. P., Aumont Olivier, Memery L., Bowler C., Eveillard D. (2022). Contribution of genome-scale metabolic modelling to niche theory. Ecology Letters, [Early access], p. [13 p.]. ISSN 1461-023X.

Titre du document
Contribution of genome-scale metabolic modelling to niche theory
Année de publication
2022
Type de document
Article référencé dans le Web of Science WOS:000778641300001
Auteurs
Regimbeau A., Budinich M., Larhlimi A., Karlusich J. J. P., Aumont Olivier, Memery L., Bowler C., Eveillard D.
Source
Ecology Letters, 2022, [Early access], p. [13 p.] ISSN 1461-023X
Standard niche modelling is based on probabilistic inference from organismal occurrence data but does not benefit yet from genome-scale descriptions of these organisms. This study overcomes this shortcoming by proposing a new conceptual niche that resumes the whole metabolic capabilities of an organism. The so-called metabolic niche resumes well-known traits such as nutrient needs and their dependencies for survival. Despite the computational challenge, its implementation allows the detection of traits and the formal comparison of niches of different organisms, emphasising that the presence-absence of functional genes is not enough to approximate the phenotype. Further statistical exploration of an organism's niche sheds light on genes essential for the metabolic niche and their role in understanding various biological experiments, such as transcriptomics, paving the way for incorporating better genome-scale description in ecological studies.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du milieu [021] ; Limnologie biologique / Océanographie biologique [034]
Localisation
Fonds IRD [F B010084636]
Identifiant IRD
fdi:010084636
Contact