habitability of the icy galilean satellites:

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HABITABILITY OF THE ICY GALILEAN SATELLITES: J. Chela-Flores The Abdus Salam International Centre for Theoretical Physics, Trieste, Italy and Instituto de Estudios Avanzados, Caracas, Republica Bolivariana de Venezuela. EVOLUTIONARY BIOMARKERS WITH EJSM AND PENETRATORS

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habitability of the icy galilean satellites:. J. Chela-Flores The Abdus Salam International Centre for Theoretical Physics, Trieste, Italy and Instituto de Estudios Avanzados , Caracas, Republica Bolivariana de Venezuela. evolutionary Biomarkers with EJSM and penetrators. - PowerPoint PPT Presentation

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Page 1: habitability of the icy  galilean  satellites:

HABITABILITY OF THE ICY GALILEAN SATELLITES:

J. Chela-FloresThe Abdus Salam International Centre for Theoretical Physics, Trieste,

Italy and Instituto de Estudios Avanzados, Caracas, Republica Bolivariana de Venezuela.

EVOLUTIONARY BIOMARKERS WITH EJSM AND PENETRATORS

Page 2: habitability of the icy  galilean  satellites:

Resurfacing on Europa: a key in the search for evolutionary

biomarkers

Page 3: habitability of the icy  galilean  satellites:

A first Earth analog of Europa’s icy surface:Ellesmere Island

Page 4: habitability of the icy  galilean  satellites:

Second and third Earth analogs of Europa’s icy surface

Page 5: habitability of the icy  galilean  satellites:

TaylorValley

H

Page 6: habitability of the icy  galilean  satellites:

Resurfacing on terrestrial lakes: How do microbial mats reach the bottom of the lake icy

surface?

Prostrate mats carrying a consortia of bacteria some not yet identified

Page 7: habitability of the icy  galilean  satellites:

Resurfacing on terrestrial lakes: How do microbes reach from the bottom to the top of the lake

icy surface?

Microbial mats on the surface of

Lake Hoare, Taylor Valley

Microbial mats

Microbial mat

Page 8: habitability of the icy  galilean  satellites:

Resurfacing on terrestrial lakes: Traffic of biogenic sulfur through the lake’s

icy cover

Quantity of chemical elements (in kgs per year)

Dry Valley lakes

Page 9: habitability of the icy  galilean  satellites:

Biogenic Sulfur in the Solar System

Lunar

-40

• Terrestrial sources (biogenic) in basins off California

Sulfate coexisting with seawater

The delta34S-parameter

• Sulfur is strongly fractionated exclusively by biogenic activity in the available samples of the Solar System

• We have shown how biogenic sulfur patches are produced by resurfacing of an Earth analog of Europa: Lake Hoare

Meteoritic

Page 10: habitability of the icy  galilean  satellites:

Resurfacing on Europa:A dust cloud has been released by micrometeroid

impacts

Credits: Miljković, K. and Taylor, E. A. (2007), The LAPLACE Consortium (Blanc et al, 2009) and McCord et al. (1998)

Page 11: habitability of the icy  galilean  satellites:

Possible sources of the stains

• External source: Ions may be implanted from the Jovian plasma.

• Internal source: Sulfur may be due to microbes living around hydrothermal vents, reaching the icy surface by cryovolcanism.

• Could the source of the patches be bacteria, or even eukaryotes or metazoans?

• What is the nature of biogenicity? One way to decide may be with penetrators.

Page 12: habitability of the icy  galilean  satellites:

Which eukaryotes, or metazoans, can live in extreme environments?

Expose-E was carried back to Earth by Space Shuttle Discovery. These experiments investigate to what extent terrestrial organisms are able to cope with extreme environmental conditions.

Expose-E experiment unit outside (18 months)

Europe’s Columbus ISS lab module.

Xanthoria Elegans, the elegant sunburst lichen, was outside the European Columbus laboratory. It is a macroscopic composite of a fungus and an alga.

The American elegant sunburst lichen

(deVere et al. 2003-2010)

Page 13: habitability of the icy  galilean  satellites:

Some extremophiles are more complex than single-celled eukaryotes

Animals with bilateral symmetry found in extreme environments include the Antarctic krill

Page 14: habitability of the icy  galilean  satellites:

Another extreme metazoan:Tardigrades (water bears)

(0.1-1.0mm in length, water-dwelling, segmented animals)

Scanning electron micrograph (SEM) of Echiniscus testudo, a marine species

Page 15: habitability of the icy  galilean  satellites:

Northern Rock Crawler Grylloblatta campodeiformis

For most of the year, these ice insects remain frozen

Page 16: habitability of the icy  galilean  satellites:

Simple aquatic metazoans in extreme conditions

• In the Antarctic analog of Europa there is an ecosystem with simple metazoans.

• Our ecosystem is underneath McMurdo Sound:

Page 17: habitability of the icy  galilean  satellites:

Metazoans living underneath the icy surface of McMurdo Sound

Page 18: habitability of the icy  galilean  satellites:

With currrent instrumentation, how could we test for eukaryotes or metazoans in the Europan ocean?

Credit: Richard Greenberg, “Europa”, Springer 2005

Page 19: habitability of the icy  galilean  satellites:

Credit: British Penetrator Consortium

Penetrator

Page 20: habitability of the icy  galilean  satellites:

Penetrators for the icy surface of Europa

Credit: UK British Consortium

For geochemical data:

Page 21: habitability of the icy  galilean  satellites:

Combined Raman/LIBS spectrometer (ExoMars)

The instrument design has a total mass smaller than 2kg

Page 22: habitability of the icy  galilean  satellites:

Instrument Implication ChallengesPenetrator • Can probe the

surficial sulfur for biogenicity in the presence of radiation

• Mass budget is restricted

Mass spectrometry •With geochemistry we can test for microbial life

• To guarantee accessibility in the mass budget of JEO

LIBS/Raman • Can identify single molecules in a multicellular ensemble

• The selection of molecules common to eukaryotes and simple metazoans, but absent in bacteria

• To develop protocols and to test them

Page 23: habitability of the icy  galilean  satellites:

Io

Europa

Ganymede

JEO

Callisto

The Europa Jupiter System Mission with penetrators

JGO