期刊文献+

合成生物学与国际遗传工程机器大赛对培养大学生双创思维与能力的影响 被引量:3

Cultivation of college students’innovative and entrepreneurial thinking and ability based on Synthetic Biology and iGEM
原文传递
导出
摘要 合成生物学是21世纪前沿交叉学科,是现代生物学最具发展空间的领域之一。随着合成生物学的迅速发展,国际基因工程机器大赛(International Genetically Engineered Machine,iGEM)应运而生。iGEM竞赛项目基于合成生物学学科基础,应用现代生物学技术手段,立足解决社区和身边的实际生物相关问题。近年来,随着参赛团队的不断增加,iGEM竞赛得到了广泛的关注与发展。本文基于合成生物学发展概况,通过对iGEM竞赛2018–2020年获奖项目情况进行分析,并结合西南交通大学iGEM团队的参赛经历,剖析iGEM竞赛在培养大学生双创思维和能力中的重要意义和实现途径。 Synthetic Biology is one of the most promising fields of modern Biology and a frontier interdisciplinary subject in the 21st century.With the rapid development of synthetic biology,the International Genetically Engineered Machine(iGEM)competition has emerged.The iGEM competition,based on the subject foundation of Synthetic Biology,intends to solve the biological problems in our daily life by applying modern biological technology.In recent years,with the continuous increase of participating teams,the iGEM competition has received extensive attention and achieved great progress.On the basis of the development of Synthetic Biology,we analyzed the 2018-2020 award-winning projects of the iGEM competition and illustrated the role and significance of the iGEM competition in cultivating college students’innovative thinking and ability with the participation experience of the iGEM team of Southwest Jiaotong University as an example.
作者 简甜甜 李遂焰 廖海 周嘉裕 朱乾坤 黄新河 JIAN Tiantian;LI Suiyan;LIAO Hai;ZHOU Jiayu;ZHU Qiankun;HUANG Xinhe(School of Life Science and Engineering,Southwest Jiaotong University,Chengdu 610041,Sichuan,China)
出处 《生物工程学报》 CAS CSCD 北大核心 2022年第4期1619-1630,共12页 Chinese Journal of Biotechnology
基金 西南交通大学教育教学改革重点项目(20201031) 四川省教改项目(JG2018-149)。
关键词 合成生物学 iGEM竞赛 学科交叉 创新创业 Synthetic Biology iGEM interdisciplinary innovation and entrepreneurship
  • 相关文献

参考文献17

二级参考文献44

  • 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:15
  • 2Gibson, D. G. , et al. , Creation of a Bacterial Cell Controlled by a Chemically Synthesized Genome. Science, 2010. 329 (5987) : p. 52 - 56. 被引量:1
  • 3Vinson, V. , iGEM 2010 Jamboree. Science, 2010. 330(6011) : p. 1629 - 1629. 被引量:1
  • 4Smolke, C. D. , Building outside of the box: iGEM and the Bio- Bricks Foundation. Nature Biotechnology, 2009. 27 ( 12 ) : p.1099 -1102. 被引量:1
  • 5Ro, D. - K. , et al. , Production of the antimalarial drug precur- sor artemisinie acid in engineered yeast. Nature, 2006. 440 (7086): p. 940-943. 被引量:1
  • 6Bond - Watts, B. B. , R.J. Bellerose, and M. C. Y. Chang, En- zyme mechanism as a kinetic control element for designing synthet- ic biofuel pathways. Nat Chem Biol, 2011. 7(4) : p. 222 -227. 被引量:1
  • 7Mitchell, R. , Y.J. Dori, and N.H. Kuldell, Experiential Engi- neering Through iGEM -An Undergraduate Summer Competition in Synthetic Biology. Journal of Science Education and Technolo- gy, 2011. 20(2): p. 156-160. 被引量:1
  • 8Check E. Synthetic biology: Designs on life [ J ]. Nature, 2005, 438 (7067) : 417 -418. 被引量:1
  • 9Vinson V. Inventive constructions using biobricks [ J ]. Science, 2010, 330 (6011) : 1629 -1629. 被引量:1
  • 10Sherry R P, Endy D, Knight T F. Engineering BioBrick vectors from BioBfiek parts [ J ]. Journal of Biological Engineering, 2008, 2: 5. 被引量:1

共引文献190

同被引文献44

引证文献3

二级引证文献2

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