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The use of biochemical methods in extraterrestrial life detection

机译:在外星生命检测中使用生化方法

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Instrument development for in situ extraterrestrial life detection focuses primarily on the ability to distinguish between biological and non-biological material, mostly through chemical analysis for potential biosignatures (e.g., biogenic minerals, enantiomeric excesses). In constrast, biochemical analysis techniques commonly applied to Earth life focus primarily on the exploration of cellular and molecular processes, not on the classification of a given system as biological or non-biological. This focus has developed because of the relatively large functional gap between life and non-life on Earth today. Life on Earth is very diverse from an environmental and physiological point of view, but is highly conserved from a molecular point of view. Biochemical analysis techniques take advantage of this similarity of all terrestrial life at the molecular level, particularly through the use of biologically-derived reagents (e.g., DNA polymerases, antibodies), to enable analytical methods with enormous sensitivity and selectivity. These capabilities encourage consideration of such reagents and methods for use in extraterrestrial life detection instruments. The utility of this approach depends in large part on the (unknown at this time) degree of molecular compositional differences between extraterrestrial and terrestrial life. The greater these differences, the less useful laboratory biochemical techniques will be without significant modification. Biochemistry and molecular biology methods may need to be "de-focused" in order to produce instruments capable of unambiguously detecting a sufficiently wide range of extraterrestrial biochemical systems. Modern biotechnology tools may make that possible in some cases.
机译:仪器开发用于原位外性寿命检测主要侧重于区分生物和非生物材料的能力,主要是通过潜在生物炎的化学分析(例如,生物矿物,对映体过量)。在约束中,通常适用于地球生化的生物化学分析技术主要针对细胞和分子过程的探索,而不是给定系统作为生物或非生物学的分类。这种重点是由于当今地球上的生活与非生命之间的功能差距相对较大。地球上的生命是从环境和生理学的观点来看,但从分子的角度来看,高度保守。生物化学分析技术利用在分子水平的所有陆地生活中的这种相似性,特别是通过使用生物学衍生的试剂(例如,DNA聚合酶,抗体)来实现具有巨大敏感性和选择性的分析方法。这些能力促进考虑这些试剂和用于外星生命检测仪器的方法。这种方法的效用在大部分(此时未知)的分子组成差异之间的大部分依赖于外星和陆地生命之间的分子组成差异。这些差异越大,有用的实验室生物化学技术越少,而且没有显着修改。生物化学和分子生物学方法可能需要“以焦点为中心”,以产生能够明确地检测到足够广泛的外星生化系统的仪器。在某些情况下,现代生物技术工具可能会产生这种可能。

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