Pāriet uz galveno navigāciju Pāriet uz meklēšanu Pāriet uz galveno saturu

Astrobiology of life on Earth

  • John E. Hallsworth*
  • , Rocco L. Mancinelli
  • , Catharine A. Conley
  • , Tiffany D. Dallas
  • , Teresa Rinaldi
  • , Alfonso F. Davila
  • , Kathleen C. Benison
  • , Aleksandrs Rapoports
  • , Barbara Cavalazzi
  • , Laura Selbmann
  • , Hitesh Changela
  • , Frances Westall
  • , Michail M. Yakimov
  • , Ricardo Amils
  • , Michael T. Madigan
  • *Šī darba korespondējošais autors
  • Queen's University Belfast
  • NASA Ames Research Center
  • University of Rome La Sapienza
  • West Virginia University
  • University of Bologna
  • Italian Antarctic National Museum (MNA)
  • Tuscia University
  • Chinese Academy of Sciences
  • University of New Mexico
  • CNRS
  • IRBIM-CNR
  • Centro de Astrobiología (CSIC-INTA)
  • Universidad Autónoma de Madrid
  • Southern Illinois University

Zinātniskās darbības rezultāts: Devums žurnālamZinātniskais raksts (žurnālā)koleģiāli recenzēts

28 Atsauces (Scopus)

Kopsavilkums

Astrobiology is mistakenly regarded by some as a field confined to studies of life beyond Earth. Here, we consider life on Earth through an astrobiological lens. Whereas classical studies of microbiology historically focused on various anthropocentric sub-fields (such as fermented foods or commensals and pathogens of crop plants, livestock and humans), addressing key biological questions via astrobiological approaches can further our understanding of all life on Earth. We highlight potential implications of this approach through the articles in this Environmental Microbiology special issue ‘Ecophysiology of Extremophiles’. They report on the microbiology of places/processes including low-temperature environments and chemically diverse saline- and hypersaline habitats; aspects of sulphur metabolism in hypersaline lakes, dysoxic marine waters, and thermal acidic springs; biology of extremophile viruses; the survival of terrestrial extremophiles on the surface of Mars; biological soils crusts and rock-associated microbes of deserts; subsurface and deep biosphere, including a salticle formed within Triassic halite; and interactions of microbes with igneous and sedimentary rocks. These studies, some of which we highlight here, contribute to our understanding of the spatiotemporal reach of Earth'sfunctional biosphere, and the tenacity of terrestrial life. Their findings will help set the stage for future work focused on the constraints for life, and how organisms adapt and evolve to circumvent these constraints.

OriģinālvalodaAngļu
Lapas (no-līdz)3335-3344
ŽurnālsEnvironmental Microbiology
Sējums23
Izdevuma numurs7
DOIs
Publikācijas statussPublicēts - jūl. 2021

OECD Zinātnes nozare

  • 1.6 Bioloģija

Nospiedums

Uzziniet vairāk par pētniecības tēmām “Astrobiology of life on Earth”. Kopā tie veido unikālu nospiedumu.

Citēt šo