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用于地球化改造的合成生物学:来自火星、地球和微生物群落的经验教训

Synthetic Biology for Terraformation Lessons from Mars, Earth, and the Microbiome.

作者信息

Conde-Pueyo Nuria, Vidiella Blai, Sardanyés Josep, Berdugo Miguel, Maestre Fernando T, De Lorenzo Victor, Solé Ricard

机构信息

ICREA-Complex Systems Lab, Universitat Pompeu Fabra, Plaça de la Mercè, 10, 08002 Barcelona, Spain;.

Institut de Biologia Evolutiva, UPF-CSIC, 08003 Barcelona, Spain.

出版信息

Life (Basel). 2020 Feb 9;10(2):14. doi: 10.3390/life10020014.

Abstract

What is the potential for synthetic biology as a way of engineering, on a large scale, complex ecosystems? Can it be used to change endangered ecological communities and rescue them to prevent their collapse? What are the best strategies for such ecological engineering paths to succeed? Is it possible to create stable, diverse synthetic ecosystems capable of persisting in closed environments? Can synthetic communities be created to thrive on planets different from ours? These and other questions pervade major future developments within synthetic biology. The goal of engineering ecosystems is plagued with all kinds of technological, scientific and ethic problems. In this paper, we consider the requirements for terraformation, i.e., for changing a given environment to make it hospitable to some given class of life forms. Although the standard use of this term involved strategies for planetary terraformation, it has been recently suggested that this approach could be applied to a very different context: ecological communities within our own planet. As discussed here, this includes multiple scales, from the gut microbiome to the entire biosphere.

摘要

合成生物学作为一种大规模构建复杂生态系统的工程方法,其潜力如何?它能否用于改变濒危生态群落并拯救它们以防止其崩溃?此类生态工程路径成功的最佳策略是什么?是否有可能创造出能够在封闭环境中持续存在的稳定、多样的合成生态系统?能否创建在不同于地球的行星上繁荣发展的合成群落?这些以及其他问题充斥着合成生物学未来的主要发展方向。工程化生态系统的目标饱受各种技术、科学和伦理问题的困扰。在本文中,我们考虑了地形改造的要求,即改变给定环境使其适合某些特定类别的生命形式。尽管这个术语的标准用法涉及行星地形改造策略,但最近有人提出这种方法可以应用于一个截然不同的背景:我们星球上的生态群落。如下所述,这包括从肠道微生物群落到整个生物圈的多个尺度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58d4/7175242/2ec86b939e4a/life-10-00014-g001.jpg

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