Extremophiles: Link between earth and astrobiology
Astrobiology studies the origin, evolution, distribution and future of life in the universe. The most promising worlds in Solar system, beyond Earth, which may harbor life are Mars and Jovian moon Europa. Extremophiles are organisms that thrive on the edge of temperature, hypersalinity, pH extremes,...
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Series: | Zbornik Matice Srpske za Prirodne Nauke |
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Online Access: | http://www.doiserbia.nb.rs/img/doi/0352-4906/2008/0352-49060814005S.pdf |
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doaj-ff87fc41ad0c4986938db014f8f12bd82021-01-02T06:46:09ZengMatica srpskaZbornik Matice Srpske za Prirodne Nauke0352-49062008-01-01200811451610.2298/ZMSPN0814005SExtremophiles: Link between earth and astrobiologyStojanović Dejan B.Fojkar OliverDrobac-Čik Aleksandra V.Čajko Kristina O.Dulić Tamara I.Svirčev Zorica B.Astrobiology studies the origin, evolution, distribution and future of life in the universe. The most promising worlds in Solar system, beyond Earth, which may harbor life are Mars and Jovian moon Europa. Extremophiles are organisms that thrive on the edge of temperature, hypersalinity, pH extremes, pressure, dryness and so on. In this paper, some extremophile cyanobacteria have been discussed as possible life forms in a scale of astrobiology. Samples were taken from solenetz and solonchak types of soil from the Vojvodina region. The main idea in this paper lies in the fact that high percentage of salt found in solonchak and solonetz gives the possibility of comparison these types of soil with 'soil' on Mars, which is also rich in salt. http://www.doiserbia.nb.rs/img/doi/0352-4906/2008/0352-49060814005S.pdfastrobiologyextremophilescyanobacteriahalophiles |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Stojanović Dejan B. Fojkar Oliver Drobac-Čik Aleksandra V. Čajko Kristina O. Dulić Tamara I. Svirčev Zorica B. |
spellingShingle |
Stojanović Dejan B. Fojkar Oliver Drobac-Čik Aleksandra V. Čajko Kristina O. Dulić Tamara I. Svirčev Zorica B. Extremophiles: Link between earth and astrobiology Zbornik Matice Srpske za Prirodne Nauke astrobiology extremophiles cyanobacteria halophiles |
author_facet |
Stojanović Dejan B. Fojkar Oliver Drobac-Čik Aleksandra V. Čajko Kristina O. Dulić Tamara I. Svirčev Zorica B. |
author_sort |
Stojanović Dejan B. |
title |
Extremophiles: Link between earth and astrobiology |
title_short |
Extremophiles: Link between earth and astrobiology |
title_full |
Extremophiles: Link between earth and astrobiology |
title_fullStr |
Extremophiles: Link between earth and astrobiology |
title_full_unstemmed |
Extremophiles: Link between earth and astrobiology |
title_sort |
extremophiles: link between earth and astrobiology |
publisher |
Matica srpska |
series |
Zbornik Matice Srpske za Prirodne Nauke |
issn |
0352-4906 |
publishDate |
2008-01-01 |
description |
Astrobiology studies the origin, evolution, distribution and future of life in the universe. The most promising worlds in Solar system, beyond Earth, which may harbor life are Mars and Jovian moon Europa. Extremophiles are organisms that thrive on the edge of temperature, hypersalinity, pH extremes, pressure, dryness and so on. In this paper, some extremophile cyanobacteria have been discussed as possible life forms in a scale of astrobiology. Samples were taken from solenetz and solonchak types of soil from the Vojvodina region. The main idea in this paper lies in the fact that high percentage of salt found in solonchak and solonetz gives the possibility of comparison these types of soil with 'soil' on Mars, which is also rich in salt. |
topic |
astrobiology extremophiles cyanobacteria halophiles |
url |
http://www.doiserbia.nb.rs/img/doi/0352-4906/2008/0352-49060814005S.pdf |
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