Departamento de Fisiología y Biología Molecular y Celular, Facultad de Ciencias Exactas y Naturales, Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Química Biológica de la Facultad de Ciencias Exactas y Naturales (IQUIBICEN), Instituto de Biociencias, Biotecnología y Biología Traslacional (iB3), Universidad de Buenos Aires, Buenos Aires, Argentina.
Facultad de Ciencias Sociales, Consejo Nacional de Investigaciones Científicas y Técnicas, Instituto de Investigaciones "Gino Germani", Universidad de Buenos Aires, Buenos Aires, Argentina.
Crit Rev Biotechnol. 2020 May;40(3):357-364. doi: 10.1080/07388551.2020.1712322. Epub 2020 Feb 19.
Synthetic biology emerged in the USA and Europe twenty years ago and quickly developed innovative research and technology as a result of continued funding. Synthetic biology is also growing in many developing countries of Africa, Asia and Latin America, where it could have a large economic impact by helping its use of genetic biodiversity in order to boost existing industries. Starting in 2011, Argentine synthetic biology developed along an idiosyncratic path. In 2011-2012, the main focus was not exclusively research but also on community building through teaching and participation in iGEM, following the template of the early "MIT school" of synthetic biology. In 2013-2015, activities diversified and included society-centered projects, social science studies on synthetic biology and bioart. Standard research outputs such as articles and industrial applications helped consolidate several academic working groups. Since 2016, the lack of a critical mass of researchers and a funding crisis were partially compensated by establishing links with Latin American synthetic biologists and with other socially oriented open technology collectives. The TECNOx community is a central node in this growing research and technology network. The first four annual TECNOx meetings brought together synthetic biologists with other open science and engineering platforms and explored the relationship of Latin American technologies with entrepreneurship, open hardware, ethics and human rights. In sum, the socioeconomic context encouraged Latin American synthetic biology to develop in a meandering and diversifying manner. This revealed alternative ways for growth of the field that may be relevant to other developing countries.
合成生物学是 20 年前在美国和欧洲兴起的,由于持续的资金投入,它迅速发展出创新的研究和技术。合成生物学在非洲、亚洲和拉丁美洲的许多发展中国家也在发展,它可以通过帮助利用遗传生物多样性来促进现有产业,从而产生巨大的经济影响。从 2011 年开始,阿根廷的合成生物学沿着一条独特的道路发展。2011-2012 年,重点不仅是研究,还通过教学和参与 iGEM 来建立社区,这是早期“麻省理工学院学派”合成生物学的模板。2013-2015 年,活动多样化,包括以社会为中心的项目、合成生物学和生物艺术的社会科学研究。标准的研究成果,如文章和工业应用,有助于巩固几个学术工作组。自 2016 年以来,研究人员人数不足和资金危机部分得到了与拉丁美洲合成生物学家以及其他面向社会的开放技术集体建立联系的弥补。TECNOx 社区是这个不断发展的研究和技术网络中的一个核心节点。前四次 TECNOx 会议将合成生物学家与其他开放科学和工程平台聚集在一起,探讨了拉丁美洲技术与创业、开放硬件、伦理和人权的关系。总之,社会经济环境鼓励拉丁美洲合成生物学以曲折和多样化的方式发展。这揭示了该领域可能对其他发展中国家具有相关性的其他增长途径。