Future-proofing synthetic biology: educating the next generation

Jennifer S. Hallinan, Anil Wipat, Richard Kitney, Simon Woods, Ken Taylor, Angel Goñi-Moreno
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引用次数: 7

Abstract

Synthetic biology is a relatively young field, although it builds upon disciplines whose roots go back centuries. Recently, its practitioners have tended to move into the field out of interest or by chance, and come from a wide variety of backgrounds. It is also a very fast-moving field; new protocols, laboratory equipment, computational facilities and algorithms are being developed at a rapid pace. Students who start studying synthetic biology at an undergraduate or postgraduate level will, in the course of their careers, work with technologies as yet undreamt of, and will do so mostly in the context of highly interdisciplinary teams. In this study, the authors identify some of the key areas required for the education of new synthetic biologists to equip them with both adequate background and sufficient flexibility to tackle these challenges and therefore to future-proof synthetic biology.

Abstract Image

未来的合成生物学:教育下一代
合成生物学是一个相对年轻的领域,尽管它建立在几个世纪前的学科基础之上。最近,它的实践者往往出于兴趣或偶然进入该领域,并且来自各种各样的背景。这也是一个发展非常迅速的领域;新的协议、实验室设备、计算设施和算法正在迅速发展。在本科或研究生阶段开始学习合成生物学的学生,在他们的职业生涯中,将主要在高度跨学科的团队中与尚未梦想的技术打交道。在这项研究中,作者确定了新合成生物学家教育所需的一些关键领域,以使他们具备足够的背景和足够的灵活性来应对这些挑战,从而适应未来的合成生物学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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