Team:UTP-Panama/Project

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== Project Description==
== Project Description==
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<div align="justify">The original Biobricks para sensar los niveles de Nitratos en el suelo desarrollado por Bristol iGEM Team 2010[2], estaba diseñado para funcionar a temperaturas ambientes, en especial para 37°C, utilizando el Biobricks PyeaR promoter[3].
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Nosotros el UTP-Panama iGEM team buscamos extender el rango de funcionamiento optimo del sensor desarrollado por Bristol a temperaturas por debajo de los 20°C, ya que muchos de los cultivos en Tierras altas (cafe y frutas), se encuentran en este rango.
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Para resolver este problemas encontramos que la utilización del AOX enzyme (Alternative oxidase), gene responsible for thermogenesis in the sacred lotus[4], principalmente utilizada en Synthetic Biology  para generar un aumento en  la temperatura periplasmatica, producia un interesante aumento en el crecimiento y densidades bacteriana con la dismunición de la temperatura [5]. Esta parte utiliza un promotor HybB [6]para "cold shock".
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Nosotros el UTP-Panama iGEM Team desarrollamos un nuevo "device" by combining the two parts, the AOX periplasmatic heat generator (Biobrick BBa_K410000) and the Nitrates biosensor (biobrick BBa_K381001), to create that we call '''''THE RENBO''''', para lograr que nuestros medidores de Nutrientes funcione a bajas temperaturas.
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The Renbo is the first of a family of improved Biosensor that the UTP-Panama Team want to create.
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The original BioBricks to sense the levels of nitrates in soil developed by Bristol iGEM Team 2010 [2], was designed to operate at room temperatures, especially for 37 ° C using the PyeaR BioBricks promoter [3].
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Our team seeks to extend the range of optimal functioning of the sensor developed by Bristol at temperatures below
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20 ° C, as many of the crops in highlands (coffee and fruits), are in this range. To resolve this problem found that the use of the AOX enzyme (Alternative oxidase) gene responsible for thermogenesis in the sacred lotus [4], mainly used in Synthetic Biology to generate an increase in periplasmic temperature, produced an interesting increase in the growth and dismunición bacterial densities in temperature [5]. This part uses a HybB promoter [6] for "cold shock".
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We, the UTP-Panama iGEM Team developed a new "device" by Combining the two parts, the AOX periplasmatic heat generator (BioBrick BBa_K410000) and the Nitrates biosensor (BioBrick BBa_K381001), to create That We Call The Renbo, to ensure that our meters Nutrient operate at low temperatures. The Renbo is the first of a family of Improved Biosensor That the UTP-Panama Team plan to create.
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Revision as of 03:02, 29 September 2011


RenboProject.jpg


UTP-PANAMÁ TEAM 2011


Universidad Tecnológica de Panamá



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Contents

THERMOGENIC RESPONSE NUTRIENT BIOSENSOR (THE RENBO)


INTRODUCTION

In the engineering field , robust sensors are needed and it must be able to work under different conditions and ranges.

In past IGEM editions there were attempts to get more and more organisms (as machines & sensors) to be functional and resistant into multiple stress conditions.

The UTP-Panama in its vision to develop engineering tools from biotechnology, seeks to improve and create more robust sensors to environmental and climatic conditions.

In this sense, one of the biggest challenges is to achieve the ability of microorganisms to continue working under temperature changes, since they lose capacity at low temperatures (D'amico, et al. 2006). This problem has been attacked by different teams as the UNAM-Cinvestav 2010, using the CspA promoter as a better advocate for low temperatures in combination with antifreeze protein (AFP) [1]. Our UTP-Panama Team , seeks to extend the range of sensors from the use of the AOX enzyme (Alternative oxidase), which primarily has been designed to meet Cold-shock, raising the temperature. We explain why.

The biosensor chosen for the improvements is the Nitrate Biosensor (PyeaR - composite GFP) developed by BCCS-Bristol Team 2010, which is a sensor to measure levels of nitrogen (nutrients) on the ground, important parameter for agriculture

Project Description

The original BioBricks to sense the levels of nitrates in soil developed by Bristol iGEM Team 2010 [2], was designed to operate at room temperatures, especially for 37 ° C using the PyeaR BioBricks promoter [3].

Our team seeks to extend the range of optimal functioning of the sensor developed by Bristol at temperatures below 20 ° C, as many of the crops in highlands (coffee and fruits), are in this range. To resolve this problem found that the use of the AOX enzyme (Alternative oxidase) gene responsible for thermogenesis in the sacred lotus [4], mainly used in Synthetic Biology to generate an increase in periplasmic temperature, produced an interesting increase in the growth and dismunición bacterial densities in temperature [5]. This part uses a HybB promoter [6] for "cold shock". We, the UTP-Panama iGEM Team developed a new "device" by Combining the two parts, the AOX periplasmatic heat generator (BioBrick BBa_K410000) and the Nitrates biosensor (BioBrick BBa_K381001), to create That We Call The Renbo, to ensure that our meters Nutrient operate at low temperatures. The Renbo is the first of a family of Improved Biosensor That the UTP-Panama Team plan to create.


Future Develops

The next step in our project is to interchange the HybB promoter by the CspA promoter (BBa_K328001), that is also a cold shock response sensor as hybB, that



The original BrainStorms ideas

To see the Original Project Description June-July 2011 click here.

Our Project Design

The Bristol BBa_k381001 encodes an expression of GFP in response of Nitrate or Nitrites that expresses fluorescent signals upon nutrient detection, its principal application is that allows farmers to quantify soil nutrient content. The BBa_k410000 is a fusion of the HydB cold shock promoter, the OmpA a signal peptide, and AOX 1 . AOXa is a alternative oxidase found in Sacred Lotus. This is going to produce a increase of heat above ambient temperature as follow:

· From 20 °C to 30 ° C the HydB promoter will express.
· Approximately at 37° the promoter will stop his expression.

By combining BBa_k38100 and BBa_k410000 we expected our part , the BBa_K672000 , to be able to sense nitrate and nitrites even after experiencing a cold shock at 20º C, making our BB employable in other places where the temperatures can be as low as 15º C.


BBCOMBINATIONreordered.jpg

REFERENCES

[1]https://2010.igem.org/Team:Mexico-UNAM-CINVESTAV/Project/Our_project [2]http://partsregistry.org/Part:BBa_K216005


REFERENCES

[1]https://2010.igem.org/Team:Mexico-UNAM-CINVESTAV/Project/Our_project
[2]http://partsregistry.org/Part:BBa_K381001
[3]http://partsregistry.org/Part:BBa_K216005
[4]Grant, N et al. “Two Cys or Not Two Cys? That is the Question; Alternative Oxidase in the Thermogenic Plant sacred Lotus.” Plant Physiology 150 (2009): 987-995.
[5]Cell Density and Growth Rate Monitoring Tables. (available at http://partsregistry.org/Part:BBa_K410000). [6]http://partsregistry.org/Part:BBa_J45503

Aknowledgements

To: Dr Nigel Savery University of Bristol

To help us to understand the AgrEcoli Experiments and Project.