Assessment of the probability of microbial contamination for sample return from Martian moons II: The fate of microbes on Martian moons

被引:16
|
作者
Kurosawa, Kosuke [1 ]
Genda, Hidenori [2 ]
Hyodo, Ryuki [2 ]
Yamagishi, Akihiko [3 ]
Mikouchi, Takashi [4 ]
Niihara, Takafumi [5 ]
Matsuyama, Shingo [6 ]
Fujita, Kazuhisa [7 ]
机构
[1] Chiba Inst Technol, Planetary Explorat Res Ctr, 2-17-1 Narashino, Tsudanuma, Chiba 2750016, Japan
[2] Tokyo Inst Technol, Earth Life Sci Inst, Meguro Ku, 2-12-1 Ookayama, Tokyo 1528550, Japan
[3] Tokyo Univ Pharm & Life Sci, Sch Life Sci, Dept Appl Life Sci, 1432-1 Horinouchi, Hachioji, Tokyo 1920392, Japan
[4] Univ Tokyo, Univ Museum, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan
[5] Univ Tokyo, Sch Engn, Dept Syst Innovat, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan
[6] Japan Aerosp Explorat Agcy, Aeronaut Technol Directorate, 7-44-1 Jindaijihigashi Machi, Chofu, Tokyo 1828522, Japan
[7] Japan Aerosp Explorat Agcy, Inst Space & Astron Sci, Chuo Ku, 3-1-1 Yoshinodai, Sagamihara, Kanagawa 2525210, Japan
关键词
Mars; Phobos and Deimos; Microbe transportation; Panspermia; Planetary exploration; Planetary protection; HYPERVELOCITY IMPACTS; EJECTA EMPLACEMENT; SCALING LAWS; CRATER; PHOBOS; SURVIVABILITY; BACTERIA; ORIGIN; SPORES; MARS;
D O I
10.1016/j.lssr.2019.07.006
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
This paper presents a case study of microbe transportation in the Mars-satellites system. We examined the spatial distribution of potential impact-transported microbes on the Martian moons using impact physics by following a companion study (Fujita et al., in this issue). We used sterilization data from the precede studies (Patel et al., 2018; Summers, 2017). We considered that the microbes came mainly from the Zunil crater on Mars, which was formed during 1.0-0.1 Ma. We found that 70-80% of the microbes are likely to be dispersed all over the moon surface and are rapidly sterilized due to solar and galactic cosmic radiation except for those microbes within a thick ejecta deposit produced by natural meteoroids. The other 20-30% might be shielded from radiation by thick regolith layers that formed at collapsed layers in craters produced by Mars rock impacts. The total number of potentially surviving microbes at the thick ejecta deposits is estimated to be 3-4 orders of magnitude lower than at the Mars rock craters. The microbe concentration is irregular in the horizontal direction due to Mars rock bombardment and is largely depth-dependent due to the radiation sterilization. The surviving fraction of transported microbes would be only similar to 1 ppm on Phobos and similar to 100 ppm on Deimos, suggesting that the transport processes and radiation severely affect microbe survival. The microbe sampling probability from the Martian moons was also investigatesd. We suggest that sample return missions from the Martian moons are classified into Unrestricted Earth-Return missions for 30 g samples and 10 cm depth sampling, even in our conservative scenario. We also conducted a full statistical analysis pertaining to sampling the regolith of Phobos to include the effects of uncertainties in input parameters on the sampling probability. The most likely probability of microbial contamination for return samples is estimated to be two orders of magnitude lower than the 10(-6) criterion defined by the planetary protection policy of the Committee on Space Research (COSPAR).
引用
收藏
页码:85 / 100
页数:16
相关论文
共 12 条
  • [1] Assessment of the probability of microbial contamination for sample return from Martian moons I: Departure of microbes from Martian surface
    Fujita, Kazuhisa
    Kurosawa, Kosuke
    Genda, Hidenori
    Hyodo, Ryuki
    Matsuyama, Shingo
    Yamagishi, Akihiko
    Mikouchi, Takashi
    Niihara, Takafumi
    [J]. LIFE SCIENCES IN SPACE RESEARCH, 2019, 23 : 73 - 84
  • [2] On the formation of the martian moons from a circum-martian accretion disk
    Rosenblatt, Pascal
    Charnoz, Sebastien
    [J]. ICARUS, 2012, 221 (02) : 806 - 815
  • [3] Curation protocol of Phobos sample returned by Martian Moons eXploration
    Fukai, Ryota
    Usui, Tomohiro
    Fujiya, Wataru
    Takano, Yoshinori
    Bajo, Ken-ichi
    Beck, Andrew
    Bonato, Enrica
    Chabot, Nancy L.
    Furukawa, Yoshihiro
    Genda, Hidenori
    Hibiya, Yuki
    Jourdan, Fred
    Kleine, Thorsten
    Koike, Mizuho
    Matsuoka, Moe
    Miura, Yayoi N.
    Moynier, Frederic
    Okazaki, Ryuji
    Russell, Sara S.
    Sumino, Hirochika
    Zolensky, Michael E.
    Sugahara, Haruna
    Tachibana, Shogo
    Sakamoto, Kanako
    Abe, Masanao
    Cho, Yuichiro
    Kuramoto, Kiyoshi
    [J]. METEORITICS & PLANETARY SCIENCE, 2024, 59 (02) : 321 - 337
  • [4] Martian moons exploration MMX: sample return mission to Phobos elucidating formation processes of habitable planets
    Kuramoto, Kiyoshi
    Kawakatsu, Yasuhiro
    Fujimoto, Masaki
    Araya, Akito
    Barucci, Maria Antonietta
    Genda, Hidenori
    Hirata, Naru
    Ikeda, Hitoshi
    Imamura, Takeshi
    Helbert, Joern
    Kameda, Shingo
    Kobayashi, Masanori
    Kusano, Hiroki
    Lawrence, David J.
    Matsumoto, Koji
    Michel, Patrick
    Miyamoto, Hideaki
    Morota, Tomokatsu
    Nakagawa, Hiromu
    Nakamura, Tomoki
    Ogawa, Kazunori
    Otake, Hisashi
    Ozaki, Masanobu
    Russel, Sara
    Sasaki, Sho
    Sawada, Hirotaka
    Senshu, Hiroki
    Tachibana, Shogo
    Terada, Naoki
    Ulamec, Stephan
    Usui, Tomohiro
    Wada, Koji
    Watababe, Sei-ichiro
    Yokota, Shoichiro
    [J]. EARTH PLANETS AND SPACE, 2022, 74 (01):
  • [5] Martian moons exploration MMX: sample return mission to Phobos elucidating formation processes of habitable planets
    Kiyoshi Kuramoto
    Yasuhiro Kawakatsu
    Masaki Fujimoto
    Akito Araya
    Maria Antonietta Barucci
    Hidenori Genda
    Naru Hirata
    Hitoshi Ikeda
    Takeshi Imamura
    Jörn Helbert
    Shingo Kameda
    Masanori Kobayashi
    Hiroki Kusano
    David J. Lawrence
    Koji Matsumoto
    Patrick Michel
    Hideaki Miyamoto
    Tomokatsu Morota
    Hiromu Nakagawa
    Tomoki Nakamura
    Kazunori Ogawa
    Hisashi Otake
    Masanobu Ozaki
    Sara Russell
    Sho Sasaki
    Hirotaka Sawada
    Hiroki Senshu
    Shogo Tachibana
    Naoki Terada
    Stephan Ulamec
    Tomohiro Usui
    Koji Wada
    Sei-ichiro Watanabe
    Shoichiro Yokota
    [J]. Earth, Planets and Space, 74
  • [6] Transport of impact ejecta from Mars to its moons as a means to reveal Martian history
    Hyodo, Ryuki
    Kurosawa, Kosuke
    Genda, Hidenori
    Usui, Tomohiro
    Fujita, Kazuhisa
    [J]. SCIENTIFIC REPORTS, 2019, 9 (1)
  • [7] Transport of impact ejecta from Mars to its moons as a means to reveal Martian history
    Ryuki Hyodo
    Kosuke Kurosawa
    Hidenori Genda
    Tomohiro Usui
    Kazuhisa Fujita
    [J]. Scientific Reports, 9
  • [8] Mars Sample Return: Insights from Martian Meteorites.
    Herd, C. D. K.
    [J]. METEORITICS & PLANETARY SCIENCE, 2012, 47 : A177 - A177
  • [9] Martian meteorites do not eliminate the need for back contamination precautions on sample return missions
    Clark, BC
    [J]. SPACE LIFE SCIENCES: EXTRATERRESTRIAL ORGANIC CHEMISTRY, UV RADIATION ON BIOLOGICAL EVOLUTION, AND PLANETARY PROTECTION, 2002, 30 (06): : 1593 - 1600
  • [10] Planetary protection classification of samples returned from the martian moons: Summary of a review by the European Science Foundation and the National Academies of Sciences, Engineering and Medicine
    Smith, David H.
    Detsis, Emmanouil
    [J]. LIFE SCIENCES IN SPACE RESEARCH, 2019, 23 : 135 - 140