Team:LCG-UNAM-Mexico/Description
From 2009.igem.org
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Bacteria play a fundamental role in human life and they are still the preferred models to study the molecular dynamics of organisms. One example are probiotics because of their vital importance in industry and food manufacturing. Infection by phages represents a relevant and expensive problem in these areas. For this reason we decided to construct a system to contend with bacteriophage infection at a population level. | Bacteria play a fundamental role in human life and they are still the preferred models to study the molecular dynamics of organisms. One example are probiotics because of their vital importance in industry and food manufacturing. Infection by phages represents a relevant and expensive problem in these areas. For this reason we decided to construct a system to contend with bacteriophage infection at a population level. | ||
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Given this global protection vision emerges the idea of dividing our project in two subsystems: delivery and defense. Their coupled expression leads to a cascade dependent on the presence of an infectious phage. This property gives an extra versatility to the project because the defense subsystem turns on faster enough to hold back the infection and then lasts enough to give "immunity" to the population. Therefore, it is feasible to achieve a faster and wider protection response by amplifying the infection signal delivered by the phage in order to increase the number of "immune" bacteria at every lytic cycle. | Given this global protection vision emerges the idea of dividing our project in two subsystems: delivery and defense. Their coupled expression leads to a cascade dependent on the presence of an infectious phage. This property gives an extra versatility to the project because the defense subsystem turns on faster enough to hold back the infection and then lasts enough to give "immunity" to the population. Therefore, it is feasible to achieve a faster and wider protection response by amplifying the infection signal delivered by the phage in order to increase the number of "immune" bacteria at every lytic cycle. | ||
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The project is designed in such a way that contributes with molecular biology as well as with industry. To achieve this, the defense system should be portable enough to be used as a tool for protecting profitable bacteria. Portability means that the device should work in a wide range of bacterial species. The system activation depends only on the presence of the replication machinery of the infectious phage. Hence, if the identity of the protected bacteria doesn´t matter, there is the possibility to modify the multi-promoter so it can be triggered against specific phages. On the other hand, phage P4 seems to be able to infect a wide range of bacteria, which could contribute to the portability of the system. | The project is designed in such a way that contributes with molecular biology as well as with industry. To achieve this, the defense system should be portable enough to be used as a tool for protecting profitable bacteria. Portability means that the device should work in a wide range of bacterial species. The system activation depends only on the presence of the replication machinery of the infectious phage. Hence, if the identity of the protected bacteria doesn´t matter, there is the possibility to modify the multi-promoter so it can be triggered against specific phages. On the other hand, phage P4 seems to be able to infect a wide range of bacteria, which could contribute to the portability of the system. | ||
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==='''Logic and justification of the project subsystems'''=== | ==='''Logic and justification of the project subsystems'''=== | ||
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- | En esta parte podemos justificar el sistema o almenos detallar las partes que usaremos. puede ser igual en una aimacion | + | ***En esta parte podemos justificar el sistema o almenos detallar las partes que usaremos. puede ser igual en una aimacion |
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Revision as of 21:10, 20 October 2009