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追寻天体生物学路线图:起源、可居住性与未来探索

Following the Astrobiology Roadmap: Origins, Habitability and Future Exploration.

机构信息

J. Craig Venter Institute, La Jolla, CA, USA.

Scripps Institution of Oceanography, La Jolla, CA, USA.

出版信息

Curr Issues Mol Biol. 2020;38:1-32. doi: 10.21775/cimb.038.001. Epub 2020 Jan 22.

Abstract

Astrobiology asks three fundamental questions as outlined by the NASA Astrobiology Roadmap: 1. How did Life begin and evolve?; Is there Life elsewhere in the Universe?; and, What is the future of Life on Earth? As we gain perspective on how Life on Earth arose and adapted to its many niches, we too gain insight into how a planet achieves habitability. Here on Earth, microbial Life has evolved to exist in a wide range of habitats from aquatic systems to deserts, the human body, and the International Space Station (ISS). Landers, rovers, and orbiter missions support the search for signatures of Life beyond Earth, by generating data on surface and subsurface conditions of other worlds. These have provided evidence for water activity, supporting the potential for extinct or extant Life. To investigate the putative ecologies of these systems, we study extreme environments on Earth. Several locations on our planet provide analog settings to those we have detected or expect to find on neighboring and distant worlds. Whereas, the field of space biology uses the ISS and low gravity analogs to gain insight on how transplanted Earth-evolved organisms will respond to extraterrestrial environments. Modern genomics allows us to chronicle the genetic makeup of such organisms and provides an understanding of how Life adapts to various extreme environments.

摘要

天体生物学提出了由美国宇航局天体生物学路线图概述的三个基本问题

  1. 生命是如何起源和进化的?; 宇宙中其他地方是否存在生命?; 以及,地球上生命的未来会怎样?随着我们对地球上生命是如何出现并适应其众多生态位的认识不断加深,我们也越来越了解一个行星是如何实现可居住性的。在地球上,微生物生命已经进化到可以在从水生系统到沙漠、人体和国际空间站 (ISS) 等各种栖息地中生存。着陆器、漫游车和轨道飞行器任务通过生成其他世界的表面和地下条件的数据,支持对地球以外生命迹象的搜索。这些证据表明了水的活动,支持了灭绝或现存生命的可能性。为了研究这些系统的假定生态,我们研究了地球上的极端环境。地球的几个地方提供了与我们在邻近和遥远世界探测到或预期会发现的环境类似的模拟环境。而太空生物学领域则利用国际空间站和低重力模拟来了解移植到地球的进化生物体会如何应对外星环境。现代基因组学使我们能够记录这些生物的基因组成,并了解生命如何适应各种极端环境。

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