期刊文献+

国际基因工程机器大赛中的生物资源宝库

A treasure trove of biological resources in international Genetic Engineered Machine competition
原文传递
导出
摘要 国际基因工程机器大赛(international Genetically Engineered Machine competition,iGEM)是面向世界范围的大学生科技赛事,该比赛旨在推广合成生物学,各个参赛队伍通过使用原始元件和自己设计的新元件来构建新的生物系统,并在活细胞中表达,令其行使某种既定功能。每年的参赛队伍会设计许多新的生物元件(biological part),其长期积累为生物系统的构建提供了便利与创新,其本质上也是生物资源不断丰富的体现。本文从生物资源的角度,重点阐述iGEM比赛生物元件库的发展、分类与特点,让更多人了解生物元件的特征,并在基因工程操作中参考使用,推动元件库的扩充与发展。 The international Genetically Engineered Machine(iGEM)is a science competition for college students around the world. The iGEM competition aims to promote synthetic biology. Each team uses basic biological parts and newly-designed parts to construct biological systems and express them in living cells to perform certain functions. Every year,many new BioBrick parts are designed. They provide innovation and convenience for the construction of biological systems,and reflect the continuous abundance of biological resources. From the perspective of resources,this article focuses on the development,classification and characteristics of the biological part registry,so as to let more people understand the characteristics of BioBrick parts which can further be used in genetic engineering,thus enriching the biological part registry.
作者 朱灵逸 孙明 ZHU Lingyi;SUN Ming(State Key Laboratory of Agricultural Microbiology,College of Life Science and Technology,Huazhong Agricultural University,Wuhan430070,Hubei,China;State Key Laboratory of Microbial Metabolism,College of Life Science and Technology,Shanghai Jiao Tong University,Shanghai 200240,China)
出处 《生物资源》 CAS 2022年第4期355-361,共7页 Biotic Resources
关键词 国际基因工程机器大赛 生物元件 生物积块 生物资源 竞赛资源 iGEM biological part BioBrick biological resource competition resource
  • 相关文献

参考文献4

二级参考文献104

  • 1洪泂,罗昭峰,梁志,吴家睿,刘海燕.高水平国际学术竞赛在大学生创新能力培养中的作用[J].高校生物学教学研究(电子版),2012,2(2):60-64. 被引量:16
  • 2Endy D. Foundations for engineering biology. Nature, 2005, 438:449-53.
  • 3Andrianantoandro E, Basu S, Karig DK, et al. Synthetic biology: new engineering rules for an emerging discipline. Mol Syst Biol, 2006, 2:2006.0028.
  • 4Withers ST, Keasling JD. Biosynthesis and engineering of isoprenoid small molecules. Appl Microbiol Biotechnol, 2007, 73:980-90.
  • 5Weber W, Schoenmarkers R, Keller B, et al. A synthetic mammalian gene circuit reveals antituherculosis compounds. Proc Natl Acad Sci USA, 2008, 105:999448.
  • 6Basu S, Gerchman Y, Collins CH, et al. A synthetic multicellular system for programmed pattern formation. Nature, 2005, 434:1130-4.
  • 7Lu TK, Collins JJ. Dispersing biofilms with engineered enzymatic bacteriophage. Proc Natl Acad Sci USA, 2007, 104:11197-202.
  • 8Lu TK, Collins JJ. Engineered bacteriophage targeting gene networks as adjuvants for antibiotic therapy. Proc Natl Acad Sci USA, 2009, 106:4629-34.
  • 9Lee SK, Chou H, Ham TS, et al. Metabolic engineering of microorganisms for biofuels production: from bugs to synthetic biology to fuels. Curt Opin Biotechnol, 2008, 19:556-63.
  • 10Benner SA, Sismour AM. Synthetic biology. Nat Rev Genet, 2005, 6 (7): 533-43.

共引文献17

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部