Team:Wash U/Chinese

From 2009.igem.org

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|<font size="5" style="color:#8B0000;">'''Our Team'''
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|<font size="5" style="color:#8B0000;">'''Our Project'''
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|<font size="5" style="color:#8B0000;">'''我们的项目'''
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|<html><a href="https://2009.igem.org/Team:Wash_U/Team"><img height=323px width=474px src="https://static.igem.org/mediawiki/2009/2/2a/Teampicwashu.jpg"></a>
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|<html><a href="https://2009.igem.org/Team:Wash_U/Chinese/Team"><img height=323px width=474px src="https://static.igem.org/mediawiki/2009/2/2a/Teampicwashu.jpg"></a>
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|<html><a href="https://2009.igem.org/Team:Wash_U/Project"><img height=323px width=474px src="https://static.igem.org/mediawiki/2009/9/9a/LH2Changes.gif"></a>
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|<html><a href="https://2009.igem.org/Team:Wash_U/Chinese/Project"><img height=323px width=474px src="https://static.igem.org/mediawiki/2009/9/9a/LH2Changes.gif"></a>
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== '''     Team''' ==  
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== '''团队''' ==  
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The first ever Washington University iGEM team is composed of nine undergraduate juniors and seniors majoring in Biology, Molecular Biology and Biochemistry, Biomedical Engineering and Chemical Engineering.  Under the leadership of Dr. Blankenship (Biology and Chemistry departments), our team plans to synthetically regulate expression of the photosynthetic machinery, which we believe is a first for both iGEM and synthetic biology.  To learn more about our highly motivated and well-trained team, please click [https://2009.igem.org/Team:Wash_U/Team here].
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第一次华盛顿大学iGEM小组由9名本科青年和老人主修生物学,分子生物学和生物化学,生物医学工程和化学工程。的领导下,博士布兰肯普(生物及化学系) ,我们的团队计划,综合的表达调控的光合机制,我们认为,这是第一次为iGEM和合成生物学。来了解我们很高的积极性和训练有素的团队,请点击[https://2009.igem.org/Team:Wash_U/Chinese/Team 这里].
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== '''Project''' ==
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== '''项目''' ==
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Our goal for this project is to increase photosynthetic efficiency in the purple bacterium Rhodobacter Sphaeroides by altering the regulation of the light harvesting antenna LH2.  This antenna complex surrounds and harvests photons for the reaction center, where light energy is converted to chemical energy.  We plan to utilize a synthetic light sensing system that will result in an output of a low number of LH2 complexes at high light intensities and a greater number of LH2 complexes at low light intensities.  This project is intended to serve as a proof in principle that light harvesting antenna sizes may be synthetically and dynamically tailored to incidental light intensity in order to increase photosynthetic efficiency in a bioreactor. To learn more about our project, please click [https://2009.igem.org/Team:Wash_U/Project here].
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我们的目标是为这个项目以提高光合效率的紫色细菌球形红细菌通过改变调节捕光天线LH2 。这种复杂的天线周围地区和收成光子反应中心,光能转换为化学能。我们计划利用人造光源感应系统,将导致产量低一些LH2复合物在高光照强度和更多的LH2复合物在低光照强度。这个项目的目的是作为一个举证原则,即捕光天线尺寸可综合和动态适应附带光照强度,以提高光合效率的生物反应器。要详细了解我们的项目,请点击[https://2009.igem.org/Team:Wash_U/Chinese/Project 这里].
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== '''Contact''' ==  
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== '''联系方式''' ==  
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Please feel free to contact us with any questions or concerns at <html><a href="mailto:washu.igem@gmail.com">washu.igem@gmail.com</a></html>
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请随时与我们联系任何问题或疑虑, <html><a href="mailto:washu.igem@gmail.com">washu.igem@gmail.com</a></html>
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<br>Or feel free to leave a comment on our [https://2009.igem.org/Team:Wash_U/Comments wall].
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<br>也可以随时发表评论我们的[https://2009.igem.org/Team:Wash_U/Chinese/Comments 长城].
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=='''Available Languages'''==
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=='''可用的语言'''==
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[https://2009.igem.org/Team:Wash_U English]  [https://2009.igem.org/Team:Wash_U/Spanish Espanol]  [https://2009.igem.org/Team:Wash_U/French Francais]  [https://2009.igem.org/Team:Wash_U/German Deutsch]  [https://2009.igem.org/Team:Wash_U/Chinese 中文]  [https://2009.igem.org/Team:Wash_U/Japanese 日本語]
[https://2009.igem.org/Team:Wash_U English]  [https://2009.igem.org/Team:Wash_U/Spanish Espanol]  [https://2009.igem.org/Team:Wash_U/French Francais]  [https://2009.igem.org/Team:Wash_U/German Deutsch]  [https://2009.igem.org/Team:Wash_U/Chinese 中文]  [https://2009.igem.org/Team:Wash_U/Japanese 日本語]

Revision as of 20:27, 8 July 2009


我们的团队 我们的项目


团队

第一次华盛顿大学iGEM小组由9名本科青年和老人主修生物学,分子生物学和生物化学,生物医学工程和化学工程。的领导下,博士布兰肯普(生物及化学系) ,我们的团队计划,综合的表达调控的光合机制,我们认为,这是第一次为iGEM和合成生物学。来了解我们很高的积极性和训练有素的团队,请点击这里.

项目

我们的目标是为这个项目以提高光合效率的紫色细菌球形红细菌通过改变调节捕光天线LH2 。这种复杂的天线周围地区和收成光子反应中心,光能转换为化学能。我们计划利用人造光源感应系统,将导致产量低一些LH2复合物在高光照强度和更多的LH2复合物在低光照强度。这个项目的目的是作为一个举证原则,即捕光天线尺寸可综合和动态适应附带光照强度,以提高光合效率的生物反应器。要详细了解我们的项目,请点击这里.

联系方式

请随时与我们联系任何问题或疑虑, washu.igem@gmail.com
也可以随时发表评论我们的长城.


可用的语言

English Espanol Francais Deutsch 中文 日本語



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