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@GitAgritech

GitAgritech

The GitAgritech repository serves as a central hub for collecting protocols, pipelines, and code developed within Spoke 1 of the National Research Centre for Agricultural Technologies (AGRITECH)” funded under the Next Generation EU program PNRR MUR – M4C2 (Missione 4 Componente 2) Investimento 1.4, aimed at dissecting morphophysiological and molecular mechanisms of adaptation to stress conditions. By bringing together these essential resources, we will create a one-stop shop for project data and methodologies, developed in the field of omics research, and focused on understanding the bases of resilience and adaptation to climate change in plant, animal and microbial genetic resources relevant to agriculture. GitAgritech ensures permanent access to project resources and is meant to foster future collaborations and innovation for sustainability and resilience of agricultural ecosystems. A GitHub repository typically contains various files that define the project, including the scripts and pipelines it uses.

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  1. .github .github Public

  2. Refining-dual-RNA-seq-mapping Refining-dual-RNA-seq-mapping Public

    Refining dual RNA-seq mapping: sequential and combined approaches in host-parasitic plant dynamics

    Shell

  3. Capsicum-compounds-analysis Capsicum-compounds-analysis Public

    Phenolic Compounds and Capsaicinoids in Three Capsicum annuum Varieties: From Analytical Characterization to In Silico Hypotheses on Biological Activity.

  4. L.plantarum-surface-proteins L.plantarum-surface-proteins Public

    Catalogue of surface proteins of Lactiplantibacillus plantarum strains of dairy and vegetable niches.

  5. L.plantarum-Proteomics-Food-Matrices L.plantarum-Proteomics-Food-Matrices Public

    Proteomics for depicting the secreted protein patterns of Lactiplantibacillus plantarum strains isolated from different food matrices.

  6. Basil-Growth-Secondary-Metabolism-Light-Effects Basil-Growth-Secondary-Metabolism-Light-Effects Public

    Light Flux Density and Photoperiod Affect Growth and Secondary Metabolism in Fully Expanded Basil Plants

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