Energy-ordered resource stratification as an agnostic signature of life

Fuente: arXiv
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Main Authors: Goyal, Akshit, Tikhonov, Mikhail
Format: Preprint
Published: 2024
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author Goyal, Akshit
Tikhonov, Mikhail
author_facet Goyal, Akshit
Tikhonov, Mikhail
contents The search for extraterrestrial life hinges on identifying biosignatures, often focusing on gaseous metabolic byproducts as indicators. However, most such biosignatures require assuming specific metabolic processes. It is widely recognized that life on other planets may not resemble that of Earth, but identifying biosignatures ``agnostic'' to such assumptions has remained a challenge. Here, we propose a novel approach by considering the generic outcome of life: the formation of competing ecosystems. We use a minimal model to argue that the presence of ecosystem-level dynamics, characterized by ecological interactions and resource competition, may yield biosignatures independent of specific metabolic activities. Specifically, we propose the emergent stratification of chemical resources in order of decreasing energy content as a candidate new biosignature. While likely inaccessible to remote sensing, this signature could be relevant for sample return missions, or for detection of ancient signatures of life on Earth itself.
format Preprint
id arxiv_https___arxiv_org_abs_2403_18614
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Energy-ordered resource stratification as an agnostic signature of life
Goyal, Akshit
Tikhonov, Mikhail
Populations and Evolution
Biological Physics
The search for extraterrestrial life hinges on identifying biosignatures, often focusing on gaseous metabolic byproducts as indicators. However, most such biosignatures require assuming specific metabolic processes. It is widely recognized that life on other planets may not resemble that of Earth, but identifying biosignatures ``agnostic'' to such assumptions has remained a challenge. Here, we propose a novel approach by considering the generic outcome of life: the formation of competing ecosystems. We use a minimal model to argue that the presence of ecosystem-level dynamics, characterized by ecological interactions and resource competition, may yield biosignatures independent of specific metabolic activities. Specifically, we propose the emergent stratification of chemical resources in order of decreasing energy content as a candidate new biosignature. While likely inaccessible to remote sensing, this signature could be relevant for sample return missions, or for detection of ancient signatures of life on Earth itself.
title Energy-ordered resource stratification as an agnostic signature of life
topic Populations and Evolution
Biological Physics
url https://arxiv.org/abs/2403.18614