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Project

Purple Microbes for Eco-friendly NUtrition – PurpleMENU.

By 2050, the global demand for nutritional protein will increase by about 50%. Yet, the boundaries of environmental sustainability are already severely trespassed in the traditional fertilizer-feed-food chain and in fish-meal based aquaculture. Around the world, researchers have taken up the quest for novel, sustainable protein foods. Recovering and recycling renewable resources from waste streams is one of the key steps to mitigate the environmental impact. In single cell protein (SCP) production, both societal needs perfectly match, as microbial technology is probably the most resource-efficient manner of producing nutritional protein. In this new era of (meta)transcriptomics and (meta)proteomics, we start to see a glimpse of all the biological features that can be steered. This provides a strong incentive to revisit SCP, for the first time with a fundamental and mechanistically driven approach, exploiting not only the potential of a microbial cell to its fullest, but also the even richer genetic pool of a microbial community. Purple non-sulfur bacteria (PNSB) are nutritionally one of the most attractive types of SCP, and are furthermore metabolically the most versatile organisms on the planet. Each type of (sub)metabolism represents distinct (meta)proteomes, and hence nutritional properties such as essential amino acid profile, gastro-intestinal digestibility and nucleic acid content. Biotechnologically, the controllability of autotrophically grown PNSB communities is completely unexplored. PurpleMENU bridges environmental biotechnology to sustainable chemistry and nutrition sciences. Hereby key insights are unraveled that serve as the basis for novel bioprocesses, and perhaps for global food security and sustainability.
Date:1 Oct 2016 →  31 Dec 2016
Keywords:SUSTAINABLE CHEMISTRY, ENVIRONMENTAL TECHNOLOGY, NUTRIENTS, BIOTECHNOLOGY
Disciplines:Other chemical sciences, Microbiology, Systems biology, Catalysis and reacting systems engineering, Chemical product design and formulation, General chemical and biochemical engineering, Process engineering, Separation and membrane technologies, Sustainable and environmental engineering, Transport phenomena, Other (bio)chemical engineering, Biomaterials engineering, Biological system engineering, Biomechanical engineering, Other (bio)medical engineering, Environmental engineering and biotechnology, Industrial biotechnology, Other biotechnology, bio-engineering and biosystem engineering, Laboratory medicine, Nutrition and dietetics, Agricultural animal production, Food sciences and (bio)technology