CATAStrophy predicts filamentous plant pathogen lifestyle characteristics based on their CAZyme composition.
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Updated
Jan 16, 2023 - Python
CATAStrophy predicts filamentous plant pathogen lifestyle characteristics based on their CAZyme composition.
Identification of isotopic niches by considering both intra- and interindividual variability (a novel hierarchical Basyesian model). Measure the isotopic niche overlap. The method is ajusted to isotopic data with intra-individual variability (e.g. measures on whiskers, feathers, tooth).
Quantify the diet composition in % by mass of prey found by analysing the content of samples (e.g. scats, stomachs), identify diet clusters, and measure interspecific overlap.
Ecosystem model developped by Ludiwine Clouzot and Peter A. Vanrolleghem
📦 Data and R code to explore how environmental variables are shaping lake food web structure - Leclerc et al. (2023) [https://doi.org/10.1111/gcb.16642]
Website of the Tundra Nunavik project
Codes and examples that are explored in the paper "Optimal strategy for determining flow-rates of ecosystem2models (at steady-state)." To be submitted Fall 2018
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