Barosa da Silva, Bernardo (2025) Extremophilic microbial diversity in geothermal environments at the interface between the Biosphere and Geosphere. [Tesi di dottorato]
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| Tipologia del documento: | Tesi di dottorato |
|---|---|
| Lingua: | English |
| Titolo: | Extremophilic microbial diversity in geothermal environments at the interface between the Biosphere and Geosphere |
| Autori: | Autore Email Barosa da Silva, Bernardo bernardo.barosadasilva@unina.it |
| Data: | 10 Gennaio 2025 |
| Numero di pagine: | 190 |
| Istituzione: | Università degli Studi di Napoli Federico II |
| Dipartimento: | Biologia |
| Dottorato: | Biologia |
| Ciclo di dottorato: | 37 |
| Coordinatore del Corso di dottorato: | nome email Esposito, Sergio sergio.esposito@unina.it> |
| Tutor: | nome email Giovannelli, Donato [non definito] |
| Data: | 10 Gennaio 2025 |
| Numero di pagine: | 190 |
| Parole chiave: | biogeochemistry; coevolution; geosphere; biosphere |
| Settori scientifico-disciplinari del MIUR: | Area 05 - Scienze biologiche > BIO/19 - Microbiologia generale |
| Informazioni aggiuntive: | My PhD cycle was the 37 (not available in the next page) |
| Depositato il: | 20 Gen 2025 20:33 |
| Ultima modifica: | 12 Ago 2026 05:38 |
| URI: | https://www.fedoa.unina.it/id/eprint/16570 |
Abstract
The premise behind the present doctoral thesis follows the principles of biogeochemistry as defined in Shock and Boyd (2015), in which the emergence and evolution of life is contextualized as a planetary process. This view, therefore, implies an intricate relationship between living systems and other planetary processes, such as volcanism, tectonics, hydrothermalism, and climate change. There has been an increasing body of literature demonstrating the complex feedbacks between life and our own planet (extensively reviewed over the different chapters in the present thesis). One of the most important events in this shared trajectory, and often cited as a key example, was the oxygenation of our planet derived from the evolution of oxygenic photosynthesis by Cyanobacteria. The consequent Earth’s great oxidation event, in turn, allowed the diversification and expansion of the metabolic avenues of living organisms, and ultimately, the evolution of complex life. Notwithstanding, the interactions between the geosphere and the biosphere further need to be constrained and deconvolved at further detail and increased depth. This will allow us to gain a deeper understanding on the fundamental properties of living systems, the evolution of life on our own planet, their coevolution over time, and on the possibilities of finding life elsewhere in the cosmos.The main scope of the present PhD thesis is to address those unknowns.
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