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Astrobiology and Cuatro Ciénegas Basin as an Analog of Early Earth (Cuatro Ciénegas Basin: An Endangered Hyperdiverse Oasis)

معرفی کتاب «Astrobiology and Cuatro Ciénegas Basin as an Analog of Early Earth (Cuatro Ciénegas Basin: An Endangered Hyperdiverse Oasis)» نوشتهٔ Valeria Souza, Antígona Segura, Jamie S. Foster، منتشرشده توسط نشر Springer International Publishing : Imprint: Springer در سال 2020. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Astrobiology not only investigates how early life took hold of our planet but also life on other planets – both in our Solar System and beyond – and their potential for habitability. The book take readers from the scars on planetary surfaces made by space rocks to the history of the Solar System narrated by those space rocks as well as exoplanets in other planetary systems. But the true question is how life arose here or elsewhere. Modern comparative genomics has revealed that Darwin was correct; a set of highly conserved genes and cellular functions indicate that all life is related by common ancestry. The Last Universal Common Ancestor or LUCA sits at the base of the Tree of Life. However, once that life took hold, it started to diversify and form complex microbial communities that are known as microbial mats and stromatolites. Due to their long evolutionary history and abundance on modern Earth, research on the biological, chemical and geological processes of stromatolite formation has provided important insights into the field of astrobiology. Many of these microbialite-containing ecosystems have been used as models for astrobiology, and NASA mission analogs including Shark Bay, Pavilion and Kelly Lakes. Modern microbialites represent natural laboratories to study primordial ecosystems and provide proxies for how life could evolve on other planets. However, few viral metagenomic studies (i.e., viromes) have been conducted in microbialites, which are not only an important part of the community but also mirror its biodiversity. This book focuses on particularly interesting sites such as Andean lake microbialites, a proxy of early life since they are characterized by very high UV light, while Alchichica and Bacalar lakes are characterized by high-salt and oligotrophic waters that nurture stromatolites. However, it is only the oasis of Cuatro Ciénegas Basin in México that stored past life in its marine sediments of the Sierra de San Marcos. This particular Sierra has a magmatic pouch that moves the deep aquifer to the surface in a cycle of sun drenched life and back to the depths of the magmatic life in an ancient cycle that now is broken by the overexploitation of the surface water as well as the deep aquifer in order to irrigate alfalfa in the desert. The anthropocene, the era of human folly, is killing this unique time machine and with it the memory of the planet. Astrobiology not only investigates how early life took hold of our planet but also life on other planets -- both in our Solar System and beyond -- and their potential for habitability. The book take readers from the scars on planetary surfaces made by space rocks to the history of the Solar System narrated by those space rocks as well as exoplanets in other planetary systems. But the true question is how life arose here or elsewhere. Modern comparative genomics has revealed that Darwin was correct; a set of highly conserved genes and cellular functions indicate that all life is related by common ancestry. The Last Universal Common Ancestor or LUCA sits at the base of the Tree of Life. However, once that life took hold, it started to diversify and form complex microbial communities that are known as microbial mats and stromatolites. Due to their long evolutionary history and abundance on modern Earth, research on the biological, chemical and geological processes of stromatolite formation has provided important insights into the field of astrobiology. Many of these microbialite-containing ecosystems have been used as models for astrobiology, and NASA mission analogs including Shark Bay, Pavilion and Kelly Lakes. Modern microbialites represent natural laboratories to study primordial ecosystems and provide proxies for how life could evolve on other planets. However, few viral metagenomic studies (i.e., viromes) have been conducted in microbialites, which are not only an important part of the community but also mirror its biodiversity. This book focuses on particularly interesting sites such as Andean lake microbialites, a proxy of early life since they are characterized by very high UV light, while Alchichica and Bacalar lakes are characterized by high-salt and oligotrophic waters that nurture stromatolites. However, it is only the oasis of Cuatro Ciénegas Basin in México that stored past life in its marine sediments of the Sierra de San Marcos. This particular Sierra has a magmatic pouch that moves the deep aquifer to the surface in a cycle of sun drenched life and back to the depths of the magmatic life in an ancient cycle that now is broken by the overexploitation of the surface water as well as the deep aquifer in order to irrigate alfalfa in the desert. The anthropocene, the era of human folly, is killing this unique time machine and with it the memory of the planet.-- Provided by publisher Astrobiology not only investigates how early life took hold of our planet but also life on other planets - both in our Solar System and beyond - and their potential for habitability. The book take readers from the scars on planetary surfaces made by space rocks to the history of the Solar System narrated by those space rocks as well as exoplanets in other planetary systems. But the true question is how life arose here or elsewhere. Modern comparative genomics has revealed that Darwin was correct; a set of highly conserved genes and cellular functions indicate that all life is related by common ancestry. The Last Universal Common Ancestor or LUCA sits at the base of the Tree of Life. However, once that life took hold, it started to diversify and form complex microbial communities that are known as microbial mats and stromatolites. Due to their long evolutionary history and abundance on modern Earth, research on the biological, chemical and geological processes of stromatolite formation has provided important insights into the field of astrobiology. Many of these microbialite-containing ecosystems have been used as models for astrobiology, and NASA mission analogs including Shark Bay, Pavilion and Kelly Lakes. Modern microbialites represent natural laboratories to study primordial ecosystems and provide proxies for how life could evolve on other planets. However, few viral metagenomic studies (i.e., viromes) have been conducted in microbialites, which are not only an important part of the community but also mirror its biodiversity. This book focuses on particularly interesting sites such as Andean lake microbialites, a proxy of early life since they are characterized by very high UV light, while Alchichica and Bacalar lakes are characterized by high-salt and oligotrophic waters that nurture stromatolites. However, it is only the oasis of Cuatro Ciénegas Basin in México that stored past life in its marine sediments of the Sierra de San Marcos. This particular Sie rra has a magmatic pouch that moves the deep aquifer to the surface in a cycle of sun drenched life and back to the depths of the magmatic life in an ancient cycle that now is broken by the overexploitation of the surface water as well as the deep aquifer in order to irrigate alfalfa in the desert. The anthropocene, the era of human folly, is killing this unique time machine and with it the memory of the planet Front Matter ....Pages i-viii What Is Astrobiology? (Antígona Segura, Sandra Ignacia Ramírez Jiménez, Irma Lozada-Chávez)....Pages 1-30 Astrobiology and Planetary Sciences in Mexico (Karina Cervantes de la Cruz, Guadalupe Cordero-Tercero, Yilen Gómez Maqueo Chew, Irma Lozada-Chávez, Lilia Montoya, Sandra Ignacia Ramírez Jiménez et al.)....Pages 31-74 Was LUCA a Hyperthermophilic Prokaryote? The Impact-Bottleneck Hypothesis Revisited (Gilberto P. Morales, Luis Delaye)....Pages 75-88 Stromatolites, Biosignatures, and Astrobiological Implications (Jamie S. Foster, Joany Babilonia, Erica Parke-Suosaari, R. Pamela Reid)....Pages 89-105 The Global Distribution of Modern Microbialites: Not So Uncommon After All (Richard Allen White III)....Pages 107-134 The Importance of the Rare Biosphere for Astrobiological Studies and the Diversification and Resilience of Life on Earth (Jazmín Sánchez-Pérez, Juan Diego Villar, Nohely Alvarez-López, Bernardo Águila, Jhoselinne Buenrostro, Luis J. Chino-Palomo et al.)....Pages 135-148 Bacterial Communities from Deep Hydrothermal Systems: The Southern Gulf of California as an Example of Primeval Environments (Laura Espinosa-Asuar, Luis A. Soto, Diana L. Salcedo, Abril Hernández-Monroy, Luis E. Eguiarte, Valeria Souza et al.)....Pages 149-166 Andean Microbial Ecosystems: Traces in Hypersaline Lakes About Life Origin (Luis A. Saona, Mariana Soria, Patricio G. Villafañe, Agustina I. Lencina, Tatiana Stepanenko, María E. Farías)....Pages 167-181 Stromatolites in Crater-Lake Alchichica and Bacalar Lagoon (Luisa I. Falcón, Patricia M. Valdespino-Castillo, Rocio J. Alcántara-Hernández, Elizabeth S. Gómez-Acata, Alfredo Yanez-Montalvo, Bernardo Águila)....Pages 183-201 The Origin and Early Evolution of Life on Earth: A Laboratory in the School of Science (José Alberto Campillo-Balderas, Arturo Becerra)....Pages 203-217 Cuatro Ciénegas as an Archaean Astrobiology Park (Nahui Olin Medina-Chávez, Susana De la Torre-Zavala, Alejandra E. Arreola-Triana, Valeria Souza)....Pages 219-228 Back Matter ....Pages 229-232
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