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Synthetic Eco-Evolutionary Dynamics in Simple Molecular Environment

Luca Casiraghi, View ORCID ProfileFrancesco Mambretti, Anna Tovo, Elvezia Maria Paraboschi, View ORCID ProfileSamir Suweis, Tommaso Bellini
doi: https://doi.org/10.1101/2023.07.21.549992
Luca Casiraghi
aDipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università degli Studi di Milano, Via Fratelli Cervi, 93 - L.I.T.A., Segrate, 20054, Italy
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Francesco Mambretti
bDipartimento di Fisica e Astronomia, Università degli Studi di Padova, Via Marzolo 8, Padova, 35131, Italy
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  • ORCID record for Francesco Mambretti
Anna Tovo
bDipartimento di Fisica e Astronomia, Università degli Studi di Padova, Via Marzolo 8, Padova, 35131, Italy
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Elvezia Maria Paraboschi
cDepartment of Biomedical Sciences, Humanitas University, Via Rita Levi Montalcini 4, Pieve Emanuele, 20072, Italy
dIRCCS, Humanitas Clinical and Research Center, Via Manzoni 56, Rozzano, 20089, Italy
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  • For correspondence: [email protected] [email protected] [email protected]
Samir Suweis
bDipartimento di Fisica e Astronomia, Università degli Studi di Padova, Via Marzolo 8, Padova, 35131, Italy
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Tommaso Bellini
aDipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università degli Studi di Milano, Via Fratelli Cervi, 93 - L.I.T.A., Segrate, 20054, Italy
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  • For correspondence: [email protected] [email protected] [email protected]
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Abstract

The understanding of eco-evolutionary dynamics, and in particular the mechanism of coexistence of species, is still fragmentary and in need of test bench model systems. To this aim we developed a variant of SELEX in-vitro selection to study the evolution of a population of ∼ 1015 single-strand DNA oligonucleotide ‘individuals’. We begin with a seed of random sequences which we select via affinity capture from ∼ 1012 DNA oligomers of fixed sequence (‘resources’) over which they compete. At each cycle (‘generation’), the ecosystem is replenished via PCR amplification of survivors. Massive parallel sequencing indicates that across generations the variety of sequences (‘species’) drastically decreases, while some of them become populous and dominate the ecosystem. The simplicity of our approach, in which survival is granted by hybridization, enables a quantitative investigation of fitness through a statistical analysis of binding energies. We find that the strength of individual-resource binding dominates the selection in the first generations, while inter and intra-individual interactions become important in later stages, in parallel with the emergence of prototypical forms of mutualism and parasitism.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • - Added two Fig. 2 supplements - Discussion revised - Control experiments performed - Appendix 1 expanded - More experimental details - Additional details about replica (pag. 2 and 3) - Minor clarifications

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC 4.0 International license.
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Posted January 17, 2024.
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Synthetic Eco-Evolutionary Dynamics in Simple Molecular Environment
Luca Casiraghi, Francesco Mambretti, Anna Tovo, Elvezia Maria Paraboschi, Samir Suweis, Tommaso Bellini
bioRxiv 2023.07.21.549992; doi: https://doi.org/10.1101/2023.07.21.549992
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Synthetic Eco-Evolutionary Dynamics in Simple Molecular Environment
Luca Casiraghi, Francesco Mambretti, Anna Tovo, Elvezia Maria Paraboschi, Samir Suweis, Tommaso Bellini
bioRxiv 2023.07.21.549992; doi: https://doi.org/10.1101/2023.07.21.549992

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