合成生物学实现了从支配到与自然空间合作的转变

V. de Lorenzo, Miguel de la Ossa
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引用次数: 2

摘要

合成生物学是一门科学领域,它通过工程的视角来研究生物系统,其明确目标是为基础或生物技术目的合理设计活的物体。然而,同样的概念框架也体现了它的完全对应:工程的生物化,即通过生物学和进化的镜头和工具来看待合理设计的系统。这种技术驱动的设计和生物过程之间的创造性张力是现代建筑中最引人注目的战场之一。这种边缘发生在气候变化、环境恶化加剧以及随之而来的不稳定和大规模移民的证据主导的时代。生物学对建筑的最新影响已经从在许多类型的建筑中采用受生物学启发的形状和形式,到将新的生物材料(通常具有感兴趣的功能)作为组装块的结合,再到将活性材料与其他建筑项目的融合。然而,合成生物学开启了重新设计生物特性的可能性,包括大规模的发展计划,也为重新思考我们与空间的相互作用提供了机会,不是在统治的道路上迈出了又一步,而是作为与自然环境的双赢对话。虽然各种当代建筑趋势明显朝这个方向发展,但我们提出了一种激进的方法——以所谓的生物合成塔项目为例——在这个项目中,复杂的建筑完全通过生物规划来设计和建造,而不是通过标准的建筑技术来组装。为了使这一设想成为现实,我们不仅需要在合成生物学方面制定专门的研究议程,还需要对环境形成一种新的关注心态,不是为了我们自己的利益而征服的空间,而是作为与自然世界其他部分可持续共存的一种设想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthetic biology enabling a shift from domination to partnership with natural space
Synthetic biology is a field of science that examines biological systems through the lens of engineering with the explicit objective of rationally designing live objects for either fundamental or biotechnological purposes. Yet, the same conceptual frame also embodies its exact counterpart: the biologization of engineering, i.e., looking at rationally designed systems through the lens – and with the tools – of biology and evolution. Such a creative tension between technology-driven design and biological processes has one of the most conspicuous battlegrounds in modern architecture. Such an edge occurs in a time dominated by the evidence of climate change, ramping environmental deterioration, and the ensuing instability and mass migrations. The most recent influences of biology in architecture have moved from the adoption of biologically inspired shapes and forms in many types of buildings to the incorporation of new biomaterials (often functionalized with qualities of interest) as assembly blocks, to the amalgamation of live materials with other construction items. Yet, the possibility opened by synthetic biology to redesign biological properties à la carte, including large-scale developmental programs, also unlocks the opportunity to rethink our interplay with space, not as one more step in the way of domination, but as a win-win conversation with the natural environment. While various contemporary architectural tendencies clearly move in that direction, we propose a radical approach–exemplified in the so-called Biosynthetic Towers Project–in which complex buildings are designed and erected entirely through biological programming rather than assembled through standard construction technology. To make this scenario a reality, we need not only tackle a dedicated research agenda in the synthetic biology side, but also develop a new attentive mindset toward the environment, not as a space to be conquered for our exclusive own sake, but as one scenario of sustainable co-existence with the rest of the natural world.
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