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− | <div class="text">Within these communities are microbes with useful properties</div> | + | <div class="text">Within these communities are microbes with useful properties.</div> |
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− | <div class="text">Endophytes are microbes that live harmlessly within plant tissues</div> | + | <div class="text">Endophytes are microbes that live harmlessly within plant tissues.</div> |
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<div class="text">Can we programme endophytes to influence the wider microbial community?</div> | <div class="text">Can we programme endophytes to influence the wider microbial community?</div> | ||
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<div class="text">Could they synthesise chemicals to attract beneficial soil microbes?</div> | <div class="text">Could they synthesise chemicals to attract beneficial soil microbes?</div> | ||
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− | <div class="text">Attracting bacteria to fix nitrogen and reducing the need for chemical fertilisers</div> | + | <div class="text">Attracting bacteria to fix nitrogen and reducing the need for chemical fertilisers.</div> |
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<div class="text">Or maybe the endophytes can synthesise chemicals that deter pests or pathogens?</div> | <div class="text">Or maybe the endophytes can synthesise chemicals that deter pests or pathogens?</div> | ||
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− | <div class="text">Alternative Roots: engineering endophytes for smart agricultural solutions</div> | + | <br></br> |
+ | <div class="text">Alternative Roots: engineering endophytes for smart agricultural solutions.</div> | ||
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+ | <p><font size="3"> The demand for food, fuel and materials is placing unprecedented pressure on agricultural production. To secure higher productivity, the sector relies upon synthetic fertilisers derived from energy intensive manufacturing methods. Here, we propose an alternative approach to support plant productivity. </font></p> | ||
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+ | <p><font size="3">The Alternative Roots project developed an endophytic bacterium as a synthetic biology chassis organism. Endophytes are micro-organisms that live within plant tissues without detrimental impact on their host. In developing a benign plant-colonising chassis there is the possibility of developing novel mechanisms for beneficial soil microbiome manipulation without genetically modified crops.</font></p> | ||
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+ | <p><font size="3">Legal and social considerations of the project, combined with concepts borrowed from the Urban Farming movement, drove the development of NH-1 - a low-cost, small-scale and programmable hydroponic system - and plans for the deployment of smart agricultural developments beneath the streets of Newcastle. Taken as a whole, the Alternative Roots project supports a vision for enhancing crop production at a local and accessible level.</font></p> | ||
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Latest revision as of 16:21, 17 October 2018
Welcome to
Alternative Roots
Newcastle iGEM 2018
Project Overview
Abstract
The demand for food, fuel and materials is placing unprecedented pressure on agricultural production. To secure higher productivity, the sector relies upon synthetic fertilisers derived from energy intensive manufacturing methods. Here, we propose an alternative approach to support plant productivity.
The Alternative Roots project developed an endophytic bacterium as a synthetic biology chassis organism. Endophytes are micro-organisms that live within plant tissues without detrimental impact on their host. In developing a benign plant-colonising chassis there is the possibility of developing novel mechanisms for beneficial soil microbiome manipulation without genetically modified crops.
Legal and social considerations of the project, combined with concepts borrowed from the Urban Farming movement, drove the development of NH-1 - a low-cost, small-scale and programmable hydroponic system - and plans for the deployment of smart agricultural developments beneath the streets of Newcastle. Taken as a whole, the Alternative Roots project supports a vision for enhancing crop production at a local and accessible level.
Our Sponsors
Newcastle iGEM is proud to be sponsored by: