Synthetic biology for terraformation lessons from mars, earth, and the microbiome

Author

Conde-Pueyo, N.

Vidiella, B.

Sardanyés, J.

Berdugo, M.

Maestre, F.T.

Lorenzo, V.

Solé, R.

Publication date

2020-02-09



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.

Document Type

Article
Published version

Language

English

CDU Subject

57 - Biological sciences in general

Subject

Biologia

Pages

28 p.

Publisher

MDPI AG

Version of

Life

Documents

SyntheticBiology.pdf

37.20Mb

 

Rights

L'accés als continguts d'aquest document queda condicionat a l'acceptació de les condicions d'ús establertes per la següent llicència Creative Commons:http://creativecommons.org/licenses/by-nc-sa/4.0/

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CRM Articles [656]