Team:Tec-Monterrey/teamha
From 2011.igem.org
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- | Since | + | Since its inception, our project was aimed directly towards helping society. Our main goal was to update a process for a dying industry in Mexico. Sugar cane, once an agricultural product of international value, is now left to wither due to high production costs, low demand and the rise of alternative sweeteners. Millions of Mexican families depend on the sugar cane factories located in their villages; not only is their income in peril, but their very way of life. |
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- | We hope to address an old | + | We hope to address an old but growing problem. This is something overlooked due to the development of new issues and new difficulties, but something that we think deserves our time and effort. We propose an alternative production scheme that might serve to revive an industry. From sugar cane, we can extract sucrose, which then can be transformed into fructose and used in the current sweetening processes. With the immobilization method we use, the number of steps are reduced and production costs are reduced. If this process is improved, a new demand for sugar cane arises, which has the potential for a significant prositive impact on the lives of millions of Mexicans.<br> |
- | We believe that synthetic biology is not only for | + | We believe that synthetic biology is not only for increasing knowledge, but it also provides a platform for research projects and studies that are aimed towards helping people improve their quality of life. Hence, iGEM encourages teams around the world to promote synthetic biology in their local communities. In order to fulfill this task, we organized a series of activities during our summer and the beginning of our semester. |
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- | We also worked | + | We also worked collabratively with the technology department in order to develop an augmented reality software. Using physical marks and a webcam we are able to create a real-time interaction program that allows you to assemble biobricks. This can be used to build genetic constructs with a user-friendly-interfase that can store 3D symbolic models of constructions. As a teaching tool, it can be used as representations of biobricks in a more immersive way, being able not only to control the assembly of genetic constructions but also to learn about the interactions between prefixes and suffixes. <br> |
- | This software, along with the instructions | + | This software, along with the instructions for use, is available |
<a href="https://2011.igem.org/Team:Tec-Monterrey/teamha/AR">here</a>. | <a href="https://2011.igem.org/Team:Tec-Monterrey/teamha/AR">here</a>. |