Team:WashU StLouis
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<h3> Why are we doing this project? </h3> | <h3> Why are we doing this project? </h3> | ||
- | <div style="text-align: left;">Synthetic biology is an | + | <div style="text-align: left;">Synthetic biology is an exciting area of research that aims to genetically improve organisms to make them more efficient and hopefully more useful to us as well. The human population in 1950 was 2.5 billion, yet it is predicted to surpass 9 billion by 2050 <a href="https://2014.igem.org/Team:WashU_StLouis/Project/light#7">[1]</a>. Even with population growth slowing, increasing life spans and standards of living will soon tax our natural resources. One of the most concerning is our food supply. The agriculture industry needs a revolution in order to keep up with our expected growth rates. Currently about 80% of chemically fixated nitrogen is used as agricultural fertilizers, the majority in developed lands <a href="https://2014.igem.org/Team:WashU_StLouis/Project/light#7">[1]</a>. Intracellular nitrogen fixation in crops could help to sustain the burgeoning world population, especially in areas with less fertile soil without taxing the planet’s waterways. The exponential increase in nitrogen fertilizer has led to more runoff into rivers and oceans. Fertilizers then provide nutrition for algal blooms that result in hypoxia and form oceanic dead zones. These dead zones lead to the death of marine species and have potentially large economic consequences. <br> |
- | exciting area of research that aims to | + | |
- | genetically improve organisms to make them more efficient and hopefully | + | |
- | more useful to us as well. The human population in 1950 was 2.5 | + | |
- | billion, yet it is predicted to surpass 9 billion by 2050. Even | + | |
- | with population growth slowing, increasing life spans and standards of | + | |
- | living will soon tax our natural resources. One of the most concerning | + | |
- | is our food supply. The agriculture industry needs a revolution in | + | |
- | order to keep up with our expected growth rates. Currently about 80% of | + | |
- | chemically fixated nitrogen is used as agricultural fertilizers, the | + | |
- | majority in developed lands. Intracellular nitrogen fixation in | + | |
- | crops could help to sustain the burgeoning world population, especially | + | |
- | in areas with less fertile soil without taxing the planet’s waterways. | + | |
- | The exponential increase in nitrogen fertilizer has led to more runoff | + | |
- | into rivers and oceans. Fertilizers then provide nutrition for algal | + | |
- | blooms that result in hypoxia and form oceanic dead zones. These dead | + | |
- | zones lead to the death of marine species and have potentially large | + | |
- | economic consequences. <br> | + | |
<br> | <br> | ||
The ramifications of nitrogen fertilizer runoff can be averted by | The ramifications of nitrogen fertilizer runoff can be averted by |
Revision as of 03:07, 18 October 2014
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