Handles creating, reading and updating events.

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            "name": "Analyse de données de métabarcoding : 2025",
            "shortName": "Analyse de données de métabarcoding",
            "description": "Cette formation est dédiée à l'analyse de données de type \"metabarcoding\" issues de la technologie de séquençage Illumina. Nous aborderons les différentes étapes bioinformatiques nécessaires pour transformer les données de séquençage brutes en table d'abondances. Nous présenterons également les outils et méthodologies classiquement utilisés pour décrire la diversité observée et comparer les échantillons.\r\nA l’issue des 4 jours de formation, les stagiaires connaîtront le périmètre, les avantages et limites des analyses de données de séquençage amplicons (métabarcoding).\r\nIls seront capables d’utiliser les outils de FROGS sur les jeux de données de la formation (16S et ITS).\r\nIls seront capables d’identifier les outils et méthodes adaptées au cadre de leurs analyses.\r\nS’ils ont en leur possession un jeu de données à analyser, ils sont encouragés à venir avec celui- ci.",
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            "type": "Training course",
            "start_date": "2025-06-23",
            "end_date": "2025-06-26",
            "venue": "Access to the INRAE center reception\r\n By car\r\n\r\n    Take the N118 from the Paris rotary Porte de Saint-Cloud > Pont de Sèvres > Follow direction Bordeaux/Nantes – take exit 6A Jouy-en-Josas/Bièvres\r\n    Take the N12 from Plaisir > Follow direction Paris exit 1 towards the D53\r\n    Take the A12 Rambouillet > Jouy – take exit 2 via the D446\r\n\r\n By the RER (train to the suburbs)\r\n\r\nRER C Line: Get off at the Jouy-en-Josas station. The research center is a 15 minute walk (you must walk towards the town hall (Mairie de Jouy).\r\n\r\n    From Chatelet-Les Halles, take the RER B line until the Massy-Palaiseau station (32 min.) then take the RER C line CIME train (14 min.)\r\n    From Versailles-Chantier RER C station take the VICK or VITY train (8 min.)\r\n    From the Bibliothèque François Mitterand RER C station, take the CIME train (1 hour)",
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            "name": "Analyse de données métagénomiques shotgun / shotgun metagenomics - 2026",
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            "description": "Objectifs pédagogiques\r\n\r\nCette formation est dédiée à l’analyse de données métagénomiques procaryotes de type « shotgun » issues de la technologie de séquençage Illumina. Nous présenterons les étapes bioinformatiques nécessaires pour nettoyer les données brutes et les caractériser d’un point de vue taxonomique. Nous aborderons ensuite les différentes stratégies à employer pour assembler les reads et obtenir des comptages sur des gènes prédits. Enfin nous présenterons quelques outils pour obtenir une annotation fonctionnelle des échantillons. A l’issue des 2 jours de formation, les stagiaires connaîtront le périmètre, les avantages et limites des analyses de données de séquençage shotgun. Ils seront capables d’utiliser les outils présentés sur les jeux de données de la formation. L’ensemble des TP se déroulera sur l’infrastructure de Migale et nécessite une pratique courante de la ligne de commande.\r\n\r\nProgramme\r\n\r\nIntroduction générale sur les données métagénomiques\r\nAssignation taxonomique\r\nNettoyage des données brutes\r\nAssemblage / Binning\r\nPrédiction de gènes procaryotes\r\nAnnotation fonctionnelle\r\nConclusion, limites des méthodes",
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            "name": "Manipulation de données avec R, introduction à tidyverse - 2026",
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            "description": "Objectifs pédagogiques\r\nA l’issue de la formation, les stagiaires seront capables de :\r\n* utiliser les principales fonctions des packages dplyr et tidyr de l’écosystème du « tidyverse »\r\n* lire les données et les ranger dans un format « tidy »\r\n* manipuler les données : filtrer, sélectionner, trier, produire des résultats par groupe, fusionner plusieurs tables\r\n* mettre en forme et pivoter les tables de données\r\n\r\nProgramme\r\n* Principes du tidyverse\r\n* Principales fonctions de manipulation de données du package dplyr : ajouter de nouvelles variables, sélectionner des colonnes, filtrer des lignes, trier, grouper, fusionner des tables\r\n* Enchaînements des opérations à l’aide de « pipe »\r\n* Mise en forme, jointure et pivot de données avec le package tidyr\r\n* Mise en application sur un exemple d’analyse de données de transcriptomique.",
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            "description": "Objectifs pédagogiques\r\nA l’issue de la formation, les stagiaires connaîtront les principales fonctionnalités du logiciel PyMOL. Ils seront capables de les appliquer pour visualiser leur système biologique d’intérêt, et d’effectuer des commandes basiques d’identification de poches catalytiques, de profilage de surface électrostatique, et de mutations d’acides aminés.\r\n\r\nAussi, ils connaîtront les bases et les outils de bioinformatique structurale et seront autonomes pour effectuer des modèles de protéines par prédiction (Alphafold2), calculer les meilleures poses de fixation de leur(s) ligand(s) (Autodock4) et reconstruire l’éventuel assemblage biologique.\r\n\r\nBonus : Ils s’approprieront ces outils avec une demi-journée dédiée à la modélisation de leur système d’étude : protéines, interactions protéines/ADN, arrimage de ligand, etc.\r\n\r\nProgramme\r\nVisualiser :\r\n* Maîtriser les bases de la visualisation des protéines en 3D avec PyMOL.\r\nComprendre :\r\n* Analyser des structures 3D de protéines (RX ou RMN).\r\n* Identifier des homologues avec HHpred.\r\n* Modéliser par prédiction sa protéine d’intérêt avec Alphafold2.\r\nPrédire :\r\n* Savoir calculer des meilleures poses de ligands avec Autodock.\r\n* Prédir et modéliser les mutations in silico.\r\n\r\n- Points forts et limites des différents outils\r\n- ️“hand- on tutorials”\r\n- Plus une session dédiée : «bring your own protein»",
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