|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/genetic-engineering/
课程评论:没有评论
**课程名称:** UcanGE:基因工程 **课程概述:** 本课程是合成生物学领域的入门课程,重点介绍基因工程的技术、应用技巧以及相关用例。合成生物学是一个跨学科领域,通过理性设计生物系统,通常利用 DNA 组装技术来设计、构建和测试基因设计。生物系统之所以迷人,是因为它们存储着具有自身催化和自我复制能力的***信息。 **课程内容亮点:** * **第一模块:** 涵盖分子生物学和生物系统信息存储的关键概念、生物学研究的各个时代及其技术突破、基因元件的定义方式及其抽象化过程。 * **第二模块:** 重点介绍当前广泛使用的 DNA 修饰技术,包括相关的酶、其他组件以及设计原理。 * **第三模块:** 探讨这些技术在转基因生物(GMOs)中的应用,并展望分布式合成生物学的未来。 **课程特色:** * **实践导向:** 课程包含示例实验,帮助学习者将新知识付诸实践。 * **普及性:** “基因工程已经从高级实验室走向了基础教室”,课程强调了技术的可及性和材料的普及性。 * **技能培养:** 学习者将掌握构建质粒、基因线路和工程化生物所需的 DNA 修饰技术,并熟悉这些工具。 * **面向未来:** 课程将帮助学习者成为有创造力的“生物黑客”,并对合成生物学的未来发展有深入了解。 本课程适合希望了解基因工程核心技术、应用前景以及参与下一代生物技术创新的学习者。
Designing, building, and testing genetic designs has created the interdisciplinary field of synthetic biology that rationally designs biological systems, most often using DNA assembly. Biological systems are fascinating because they store information that is autocatalytic and self-replicating. This course is an introduction to the techniques of genetic engineering, tips for their application, and discussion of use-cases. The first module will review key concepts of molecular biology and biological system information storage, the eras of biological research and major technological breakthroughs, and how genetic elements have come to be defined and now abstracted. The second module focuses on the DNA modification techniques widely in use, the enzymes and other components, and design principals are covered. The final module looks at the applications of these techniques for genetically modified organisms. The future of distributed synthetic biology is also highlighted. Example experiments are included at the conclusion of the course to help see the new knowledge in action.Genetic engineering has gone from a advanced laboratories to elementary classrooms as the techniques become more widely known and materials available. To build plasmids, genetic circuits, and engineered organisms a knowledge of DNA modification techniques is needed. These tools are available to a resourceful biohacker and will be familiar at the end of the course.