Literature DB >> 26741054

Habitability: A Review.

C S Cockell1, T Bush1, C Bryce1, S Direito1, M Fox-Powell1, J P Harrison1, H Lammer2, H Landenmark1, J Martin-Torres3, N Nicholson1, L Noack4, J O'Malley-James5, S J Payler1, A Rushby6, T Samuels1, P Schwendner1, J Wadsworth1, M P Zorzano3,7.   

Abstract

Habitability is a widely used word in the geoscience, planetary science, and astrobiology literature, but what does it mean? In this review on habitability, we define it as the ability of an environment to support the activity of at least one known organism. We adopt a binary definition of "habitability" and a "habitable environment." An environment either can or cannot sustain a given organism. However, environments such as entire planets might be capable of supporting more or less species diversity or biomass compared with that of Earth. A clarity in understanding habitability can be obtained by defining instantaneous habitability as the conditions at any given time in a given environment required to sustain the activity of at least one known organism, and continuous planetary habitability as the capacity of a planetary body to sustain habitable conditions on some areas of its surface or within its interior over geological timescales. We also distinguish between surface liquid water worlds (such as Earth) that can sustain liquid water on their surfaces and interior liquid water worlds, such as icy moons and terrestrial-type rocky planets with liquid water only in their interiors. This distinction is important since, while the former can potentially sustain habitable conditions for oxygenic photosynthesis that leads to the rise of atmospheric oxygen and potentially complex multicellularity and intelligence over geological timescales, the latter are unlikely to. Habitable environments do not need to contain life. Although the decoupling of habitability and the presence of life may be rare on Earth, it may be important for understanding the habitability of other planetary bodies.

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Year:  2016        PMID: 26741054     DOI: 10.1089/ast.2015.1295

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  43 in total

1.  Habitability of Hydrothermal Systems at Jezero and Gusev Craters as Constrained by Hydrothermal Alteration of a Terrestrial Mafic Dike.

Authors:  Lacey J Costello; Justin Filiberto; Jake R Crandall; Sally L Potter-McIntyre; Susanne P Schwenzer; Michael A Miller; Daniel R Hummer; Karen Olsson-Francis; Scott Perl
Journal:  Chem Erde       Date:  2020-03-02       Impact factor: 3.133

2.  Astrobiology as a framework for investigating antibiotic susceptibility: a study of Halomonas hydrothermalis.

Authors:  Jesse P Harrison; Roey Angel; Charles S Cockell
Journal:  J R Soc Interface       Date:  2017-01       Impact factor: 4.118

3.  A bioenergetic model to predict habitability, biomass and biosignatures in astrobiology and extreme conditions.

Authors:  P M Higgins; C S Cockell
Journal:  J R Soc Interface       Date:  2020-10-21       Impact factor: 4.118

4.  Effect of environmental parameters on biodiversity of the fungal component in lithic Antarctic communities.

Authors:  Laura Selbmann; Silvano Onofri; Claudia Coleine; Pietro Buzzini; Fabiana Canini; Laura Zucconi
Journal:  Extremophiles       Date:  2017-10-09       Impact factor: 2.395

5.  Atmospheric escape from the TRAPPIST-1 planets and implications for habitability.

Authors:  Chuanfei Dong; Meng Jin; Manasvi Lingam; Vladimir S Airapetian; Yingjuan Ma; Bart van der Holst
Journal:  Proc Natl Acad Sci U S A       Date:  2017-12-28       Impact factor: 11.205

Review 6.  Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life.

Authors:  Edward W Schwieterman; Nancy Y Kiang; Mary N Parenteau; Chester E Harman; Shiladitya DasSarma; Theresa M Fisher; Giada N Arney; Hilairy E Hartnett; Christopher T Reinhard; Stephanie L Olson; Victoria S Meadows; Charles S Cockell; Sara I Walker; John Lee Grenfell; Siddharth Hegde; Sarah Rugheimer; Renyu Hu; Timothy W Lyons
Journal:  Astrobiology       Date:  2018-05-04       Impact factor: 4.335

7.  Habitability on Early Mars and the Search for Biosignatures with the ExoMars Rover.

Authors:  Jorge L Vago; Frances Westall; Andrew J Coates; Ralf Jaumann; Oleg Korablev; Valérie Ciarletti; Igor Mitrofanov; Jean-Luc Josset; Maria Cristina De Sanctis; Jean-Pierre Bibring; Fernando Rull; Fred Goesmann; Harald Steininger; Walter Goetz; William Brinckerhoff; Cyril Szopa; François Raulin; Frances Westall; Howell G M Edwards; Lyle G Whyte; Alberto G Fairén; Jean-Pierre Bibring; John Bridges; Ernst Hauber; Gian Gabriele Ori; Stephanie Werner; Damien Loizeau; Ruslan O Kuzmin; Rebecca M E Williams; Jessica Flahaut; François Forget; Jorge L Vago; Daniel Rodionov; Oleg Korablev; Håkan Svedhem; Elliot Sefton-Nash; Gerhard Kminek; Leila Lorenzoni; Luc Joudrier; Viktor Mikhailov; Alexander Zashchirinskiy; Sergei Alexashkin; Fabio Calantropio; Andrea Merlo; Pantelis Poulakis; Olivier Witasse; Olivier Bayle; Silvia Bayón; Uwe Meierhenrich; John Carter; Juan Manuel García-Ruiz; Pietro Baglioni; Albert Haldemann; Andrew J Ball; André Debus; Robert Lindner; Frédéric Haessig; David Monteiro; Roland Trautner; Christoph Voland; Pierre Rebeyre; Duncan Goulty; Frédéric Didot; Stephen Durrant; Eric Zekri; Detlef Koschny; Andrea Toni; Gianfranco Visentin; Martin Zwick; Michel van Winnendael; Martín Azkarate; Christophe Carreau
Journal:  Astrobiology       Date:  2017-07-01       Impact factor: 4.335

8.  Rocky Planet Rotation, Thermal Tide Resonances, and the Influence of Biological Activity.

Authors:  Caleb Scharf
Journal:  Astrobiology       Date:  2018-09       Impact factor: 4.335

9.  Exobiology of the Venusian Clouds: New Insights into Habitability through Terrestrial Models and Methods of Detection.

Authors:  Oleg R Kotsyurbenko; Jaime A Cordova; Andrey A Belov; Vladimir S Cheptsov; Denise Kölbl; Yuliya Y Khrunyk; Margarita O Kryuchkova; Tetyana Milojevic; Rakesh Mogul; Satoshi Sasaki; Grzegorz P Słowik; Valery Snytnikov; Elena A Vorobyova
Journal:  Astrobiology       Date:  2021-07-13       Impact factor: 4.045

10.  Use of NanoSIMS to Identify the Lower Limits of Metabolic Activity and Growth by Serratia liquefaciens Exposed to Sub-Zero Temperatures.

Authors:  Petra Schwendner; Ann N Nguyen; Andrew C Schuerger
Journal:  Life (Basel)       Date:  2021-05-20
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